<?xml version="1.0" encoding="utf-16"?>
<ECSchema schemaName="KindOfQuantity_Schema" nameSpacePrefix="koqschema" version="1.1" description="Units Framework KindOfQuantity descriptions schema" displayLabel="KindOfQuantity Schema" xmlns="http://www.bentley.com/schemas/Bentley.ECXML.2.0">
    <ECSchemaReference name="Unit_Attributes" version="01.00" prefix="units_attribs" />
    <ECClass typeName="ABSORBED_DOSE" description="For any ionising radiation, the mean energy imparted to an element of irradiated matter divided by the mass of this element" displayLabel="ABSORBED DOSE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ABSORBED DOSE</DisplayName>
                <Description>"For any ionising radiation, the mean energy imparted to an element of irradiated matter divided by the mass of this element"</Description>
                <Dimension>L2_PER_T2</Dimension>
                <DimensionDisplayName>AREA PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>m^2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ABSORBED_DOSE_RATE" description="D = dD/dt" displayLabel="ABSORBED DOSE RATE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ABSORBED DOSE RATE</DisplayName>
                <Description>D = dD/dt</Description>
                <Dimension>L2_PER_T3</Dimension>
                <DimensionDisplayName>AREA PER TIME CUBED</DimensionDisplayName>
                <DimensionalDescription>m^2*s^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ACOUSTIC_IMPEDANCE" description="At a surface, the complex representation of sound pressure divided by the complex representation of volume flow rate" displayLabel="ACOUSTIC IMPEDANCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ACOUSTIC IMPEDANCE</DisplayName>
                <Description>"At a surface, the complex representation of sound pressure divided by the complex representation of volume flow rate"</Description>
                <Dimension>M_PER_L4_T</Dimension>
                <DimensionDisplayName>MASS PER QUARTIC LENGTH TIME</DimensionDisplayName>
                <DimensionalDescription>kg*m^-4*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AIR_CHANGE_RATE" description="The frequency at which air within a room is being changed" displayLabel="Air Change Rate" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Air Change Rate</DisplayName>
                <Description>The frequency at which air within a room is being changed</Description>
                <Dimension>ONE_PER_T</Dimension>
                <DimensionDisplayName>RECIPROCAL TIME</DimensionDisplayName>
                <DimensionalDescription>s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FLOW" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>FLOW</DisplayName>
                <Description />
                <Dimension>L3_PER_T</Dimension>
                <DimensionDisplayName>VOLUME PER TIME</DimensionDisplayName>
                <DimensionalDescription>m^3*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FLOW_PER_CAPITA" isDomainClass="True">
        <BaseClass>FLOW</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>FLOW_PER_CAPITA</DisplayName>
                <Description />
                <Dimension>L3_PER_T</Dimension>
                <DimensionDisplayName>VOLUME PER TIME</DimensionDisplayName>
                <DimensionalDescription>m^3*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AIR_FLOW_PER_CAPITA" displayLabel="Air Flow per Capita" isDomainClass="True">
        <BaseClass>FLOW_PER_CAPITA</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Air flow per Capita</DisplayName>
                <Description>Volume of air over time per person</Description>
                <Dimension>L3_PER_T</Dimension>
                <DimensionDisplayName>VOLUME PER TIME</DimensionDisplayName>
                <DimensionalDescription>m^3*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FLOW_PER_AREA" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>FLOW_PER_AREA</DisplayName>
                <Description>l/(s*m^2)</Description>
                <Dimension>L_PER_T</Dimension>
                <DimensionDisplayName>LENGTH PER TIME</DimensionDisplayName>
                <DimensionalDescription>m*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FLOW_RATE" description="flow per area" displayLabel="Flow Rate" isDomainClass="True">
        <BaseClass>FLOW_PER_AREA</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Flow Rate</DisplayName>
                <Description>flow per area (l/(s*m^2))</Description>
                <DimensionalDescription>m*s^-1</DimensionalDescription>
                <Dimension>L_PER_T</Dimension>
                <DimensionDisplayName>LENGTH PER TIME</DimensionDisplayName>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AIR_FLOW_RATE" description="flow per area of air" displayLabel="Air Flow Rate" isDomainClass="True">
        <BaseClass>FLOW_RATE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Air Flow Rate</DisplayName>
                <Description>Air flow per area (l/s*m^2)</Description>
                <DimensionalDescription>m*s^-1</DimensionalDescription>
                <Dimension>L_PER_T</Dimension>
                <DimensionDisplayName>LENGTH PER TIME</DimensionDisplayName>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AMOUNT_OF_SUBSTANCE" displayLabel="AMOUNT OF SUBSTANCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>AMOUNT OF SUBSTANCE</DisplayName>
                <Description />
                <Dimension>MOL</Dimension>
                <DimensionDisplayName>AMOUNT OF SUBSTANCE</DimensionDisplayName>
                <DimensionalDescription>mol</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ANGLE_PER_TIME" description="An angular velocity that is the angular movement per a unit of time." displayLabel="ANGLE PER TIME" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ANGLE PER TIME</DisplayName>
                <Description>An angular velocity that is the angular movement per a unit of time.</Description>
                <Dimension>PA_PER_T</Dimension>
                <DimensionDisplayName>PLANE ANGLE PER TIME</DimensionDisplayName>
                <DimensionalDescription>s^-1*rad</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ANGULAR_ACCELERATION" description="Rate of change of angle with time" displayLabel="ANGULAR ACCELERATION" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ANGULAR ACCELERATION</DisplayName>
                <Description>Rate of change of angle with time</Description>
                <Dimension>PA_PER_T2</Dimension>
                <DimensionDisplayName>PLANE ANGLE PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>s^-2*rad</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ANGULAR_CROSS_SECTION" description="Cross-section for ejecting or scattering a particle into an element of solid angel, divided by this element.  sigma = integral (sigma,omega domega)" displayLabel="ANGULAR CROSS-SECTION" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ANGULAR CROSS-SECTION</DisplayName>
                <Description>"Cross-section for ejecting or scattering a particle into an element of solid angel, divided by this element.  sigma = integral (sigma,omega domega)"</Description>
                <Dimension>L2_PER_SA</Dimension>
                <DimensionDisplayName>ANGULAR AREA</DimensionDisplayName>
                <DimensionalDescription>m^2*sr^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ANGULAR_FREQUENCY" description="omega = 2.pi.f  where f is the frequency" displayLabel="ANGULAR FREQUENCY" isDomainClass="True">
        <BaseClass>ANGLE_PER_TIME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ANGULAR FREQUENCY</DisplayName>
                <Description>omega = 2.pi.f  where f is the frequency</Description>
                <Dimension>PA_PER_T</Dimension>
                <DimensionDisplayName>PLANE ANGLE PER TIME</DimensionDisplayName>
                <DimensionalDescription>s^-1*rad</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MOMENT_OF_MOMENTUM" description="The moment of momentum of a particle about a point is equal to the vector from this point to the particle and the momentum of the particle L = r x p" displayLabel="MOMENT OF MOMENTUM" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MOMENT OF MOMENTUM</DisplayName>
                <Description>The moment of momentum of a particle about a point is equal to the vector from this point to the particle and the momentum of the particle L = r x p</Description>
                <Dimension>M_L2_PER_T</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ANGULAR_IMPULSE" description="H = integral(M.dt)" displayLabel="ANGULAR IMPULSE" isDomainClass="True">
        <BaseClass>MOMENT_OF_MOMENTUM</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ANGULAR IMPULSE</DisplayName>
                <Description>H = integral(M.dt)</Description>
                <Dimension>M_L2_PER_T</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ANGULAR_REPETENCY" description="k = 2.pi/lambda  where lambda is the wavelength" displayLabel="ANGULAR REPETENCY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ANGULAR REPETENCY</DisplayName>
                <Description>k = 2.pi/lambda  where lambda is the wavelength</Description>
                <Dimension>PA_PER_L</Dimension>
                <DimensionDisplayName>PLANE ANGLE PER LENGTH</DimensionDisplayName>
                <DimensionalDescription>m^-1*rad</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="POWER" description="Rate of energy transfer" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>POWER</DisplayName>
                <Description>Rate of energy transfer</Description>
                <Dimension>M_L2_PER_T3</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME CUBED</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="APPARENT_POWER" description="S = U.I" displayLabel="APPARENT POWER" isDomainClass="True">
        <BaseClass>POWER</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>APPARENT POWER</DisplayName>
                <Description>S = U.I</Description>
                <Dimension>M_L2_PER_T3</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME CUBED</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AREA" description="A = double integral (dx.dy)  where x and y are cartesian coordinates" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>AREA</DisplayName>
                <Description>A = double integral (dx.dy)  where x and y are cartesian coordinates</Description>
                <Dimension>L2</Dimension>
                <DimensionDisplayName>AREA</DimensionDisplayName>
                <DimensionalDescription>m^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="STRESS" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>STRESS</DisplayName>
                <Description />
                <Dimension>M_PER_L_T2</Dimension>
                <DimensionDisplayName>MASS PER LENGTH TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AREA_FORCE" isDomainClass="True">
        <BaseClass>STRESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>AREA FORCE</DisplayName>
                <Description />
                <Dimension>M_PER_L_T2</Dimension>
                <DimensionDisplayName>MASS PER LENGTH TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1*s^-2 </DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AREA_LARGE" displayLabel="AREA LARGE" isDomainClass="True">
        <BaseClass>AREA</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>AREA LARGE</DisplayName>
                <Description />
                <Dimension>L2</Dimension>
                <DimensionDisplayName>AREA</DimensionDisplayName>
                <DimensionalDescription>m^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AREA_MEDIUM" displayLabel="AREA MEDIUM" isDomainClass="True">
        <BaseClass>AREA</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>AREA MEDIUM</DisplayName>
                <Description />
                <Dimension>L2</Dimension>
                <DimensionDisplayName>AREA</DimensionDisplayName>
                <DimensionalDescription>m^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AREA_MOMENT" displayLabel="AREA MOMENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>AREA MOMENT</DisplayName>
                <Description>Moment of force per unit area</Description>
                <Dimension>M_PER_T2</Dimension>
                <DimensionDisplayName>MASS PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SECOND_MOMENT_OF_AREA" description="The second axial moment of area of a plane area (section) about an axis in its plane is the sum (integral) of the products of its elements of area and the squares of their distance from the axis. (I =Integral(r*r)dA, where r is  the distance normal from the axis to the area element dA.)" displayLabel="SECOND MOMENT OF AREA" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SECOND MOMENT OF AREA</DisplayName>
                <Description>"The second axial moment of area of a plane area (section) about an axis in its plane is the sum (integral) of the products of its elements of area and the squares of their distance from the axis. (I =Integral(r*r)dA, where r is  the distance normal from the axis to the area element dA.)"</Description>
                <Dimension>L4</Dimension>
                <DimensionDisplayName>QUARTIC LENGTH</DimensionDisplayName>
                <DimensionalDescription>m^4</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AREA_MOMENT_OF_INERTIA" displayLabel="AREA MOMENT OF INERTIA" isDomainClass="True">
        <BaseClass>SECOND_MOMENT_OF_AREA</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>AREA MOMENT OF INERTIA</DisplayName>
                <Description />
                <Dimension>L4</Dimension>
                <DimensionDisplayName>QUARTIC LENGTH</DimensionDisplayName>
                <DimensionalDescription>m^4</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DIMENSIONLESS" description="A ratio that is a proportion between two rateable values." isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DIMENSIONLESS</DisplayName>
                <Description>A ratio that is a proportion between two rateable values.</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RATIO" description="A measure that is the relation between two similar magnitudes in respect to the number of times the first contains the second, integrally or fractionally." isDomainClass="True">
        <BaseClass>DIMENSIONLESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RATIO</DisplayName>
                <Description>"A measure that is the relation between two similar magnitudes in respect to the number of times the first contains the second, integrally or fractionally."</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AREA_PER_AREA" description="A ratio of an area concept to another area concept." displayLabel="AREA PER AREA" isDomainClass="True">
        <BaseClass>RATIO</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>AREA PER AREA</DisplayName>
                <Description>A ratio of an area concept to another area concept.</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AREA_SMALL" displayLabel="AREA SMALL" isDomainClass="True">
        <BaseClass>AREA</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>AREA SMALL</DisplayName>
                <Description />
                <Dimension>L2</Dimension>
                <DimensionDisplayName>AREA</DimensionDisplayName>
                <DimensionalDescription>m^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AREA_SPRING_CONSTANT" displayLabel="AREA SPRING CONSTANT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>AREA SPRING CONSTANT</DisplayName>
                <Description />
                <Dimension>M_PER_L2_T2</Dimension>
                <DimensionDisplayName>MASS PER AREA TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="AREIC_CHARGE" description="Charge divided by surface area" displayLabel="AREIC CHARGE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>AREIC CHARGE</DisplayName>
                <Description>Charge divided by surface area</Description>
                <Dimension>T_EC_PER_L2</Dimension>
                <DimensionDisplayName>ELECTRIC CHARGE PER LENGTH SQUARED</DimensionDisplayName>
                <DimensionalDescription>m^-2*s*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MASS" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MASS</DisplayName>
                <Description />
                <Dimension>M</Dimension>
                <DimensionDisplayName>MASS</DimensionDisplayName>
                <DimensionalDescription>kg</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ATOMIC_WEIGHT" description="Mass per atom of an element to 1/12 of the mass of an atom of the nuclide 12 C" displayLabel="ATOMIC WEIGHT" isDomainClass="True">
        <BaseClass>MASS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ATOMIC WEIGHT</DisplayName>
                <Description>Mass per atom of an element to 1/12 of the mass of an atom of the nuclide 12 C</Description>
                <Dimension>M</Dimension>
                <DimensionDisplayName>MASS</DimensionDisplayName>
                <DimensionalDescription>kg</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MOMENT_OF_FORCE" description="The moment of force about a point is equal to the vector product of any radius vector from this point to a point on the line of action of the force, and the force M = r x F" displayLabel="MOMENT OF FORCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MOMENT OF FORCE</DisplayName>
                <Description>"The moment of force about a point is equal to the vector product of any radius vector from this point to a point on the line of action of the force, and the force M = r x F"</Description>
                <Dimension>M_L2_PER_T2</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="BENDING_MOMENT" displayLabel="BENDING MOMENT" isDomainClass="True">
        <BaseClass>MOMENT_OF_FORCE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>BENDING MOMENT</DisplayName>
                <Description />
                <Dimension>M_L2_PER_T2</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="BUCKLING_RESISTANCE" description="Resistance against buckling." displayLabel="BUCKLING RESISTANCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>BUCKLING RESISTANCE</DisplayName>
                <Description>Resistance against buckling.</Description>
                <Dimension>L6</Dimension>
                <DimensionDisplayName>LENGTH TO THE SIXTH POWER</DimensionDisplayName>
                <DimensionalDescription>m^6</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CALORIFIC_VALUE_MASS_BASIS" description="The quantity of thermal energy in a standard mass of the material." displayLabel="CALORIFIC VALUE MASS BASIS" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CALORIFIC VALUE MASS BASIS</DisplayName>
                <Description>The quantity of thermal energy in a standard mass of the material.</Description>
                <Dimension>L2_PER_T2</Dimension>
                <DimensionDisplayName>AREA PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>m^2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CAPACITANCE" description="Charge divided by potential difference" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CAPACITANCE</DisplayName>
                <Description>Charge divided by potential difference</Description>
                <Dimension>T4_EC2_PER_M_L2</Dimension>
                <DimensionDisplayName>QUARTIC TIME ELECTRIC CURRENT SQUARED PER MASS AREA</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^-2*s^4*A^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CARBON_DIOXIDE_EMISSION" description="The mass of carbon dioxide emitted for a given amount of power" displayLabel="Carbon Dioxide Emission" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Carbon Dioxide Emission</DisplayName>
                <Description>The mass of carbon dioxide emitted for a given amount of power</Description>
                <Dimension>T2_PER_L2</Dimension>
                <DimensionDisplayName>TIME SQUARED PER LENGTH SQUARED</DimensionDisplayName>
                <DimensionalDescription>m^-2*s^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CHARACTERISTIC_IMPEDANCE_OF_A_MEDIUM" description="At a point in a medium and for a plane progressive wave, the complex representation of sound pressure divided by the complex representation of particle velocity" displayLabel="CHARACTERISTIC IMPEDANCE OF A MEDIUM" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CHARACTERISTIC IMPEDANCE OF A MEDIUM</DisplayName>
                <Description>"At a point in a medium and for a plane progressive wave, the complex representation of sound pressure divided by the complex representation of particle velocity"</Description>
                <Dimension>M_PER_L2_T</Dimension>
                <DimensionDisplayName>MASS PER AREA TIME</DimensionDisplayName>
                <DimensionalDescription>kg*m^-2*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CONCENTRATION_MASS_PER_VOLUME" displayLabel="CONCENTRATION MASS PER VOLUME" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CONCENTRATION MASS PER VOLUME</DisplayName>
                <Description />
                <Dimension>M_PER_L3</Dimension>
                <DimensionDisplayName>MASS PER VOLUME</DimensionDisplayName>
                <DimensionalDescription>kg*m^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CHLORIDE_CONTENT" description="The average amount of Chloride reported in a number of samples." displayLabel="CHLORIDE CONTENT" isDomainClass="True">
        <BaseClass>CONCENTRATION_MASS_PER_VOLUME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CHLORIDE CONTENT</DisplayName>
                <Description>The average amount of Chloride reported in a number of samples.</Description>
                <Dimension>M_PER_L3</Dimension>
                <DimensionDisplayName>MASS PER VOLUME</DimensionDisplayName>
                <DimensionalDescription>kg*m^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="COEFFICIENT" isDomainClass="True">
        <BaseClass>DIMENSIONLESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>COEFFICIENT</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="COEFFICIENT_OF_HEAT_TRANSFER" description="Areic heat flow rate divided by temperature difference" displayLabel="COEFFICIENT OF HEAT TRANSFER" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>COEFFICIENT OF HEAT TRANSFER</DisplayName>
                <Description>Areic heat flow rate divided by temperature difference</Description>
                <Dimension>M_PER_T3_K</Dimension>
                <DimensionDisplayName>MASS PER TIME CUBED TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>kg*s^-3*K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RECIPROCAL_TEMPERATURE" displayLabel="RECIPROCAL TEMPERATURE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RECIPROCAL TEMPERATURE</DisplayName>
                <Description />
                <Dimension>ONE_PER_K</Dimension>
                <DimensionDisplayName>RECIPROCAL TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="COEFFICIENT_OF_THERMAL_EXPANSION" displayLabel="COEFFICIENT OF THERMAL EXPANSION" isDomainClass="True">
        <BaseClass>RECIPROCAL_TEMPERATURE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>COEFFICIENT OF THERMAL EXPANSION</DisplayName>
                <Description />
                <Dimension>ONE_PER_K</Dimension>
                <DimensionDisplayName>RECIPROCAL TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="COEFFICIENT_SMALL" displayLabel="COEFFICIENT SMALL" isDomainClass="True">
        <BaseClass>COEFFICIENT</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>COEFFICIENT SMALL</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="COMPRESSIBILITY" description="kappa = -(1/V).dV/dP" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>COMPRESSIBILITY</DisplayName>
                <Description>kappa = -(1/V).dV/dP</Description>
                <Dimension>L_T2_PER_M</Dimension>
                <DimensionDisplayName>LENGTH TIME SQUARED PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m*s^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CONCENTRATION" description="A ratio (often given in percent) of one type of substance in relation to a different type of substance in the same mixture." isDomainClass="True">
        <BaseClass>RATIO</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CONCENTRATION</DisplayName>
                <Description>A ratio (often given in percent) of one type of substance in relation to a different type of substance in the same mixture.</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CONCENTRATION_MOLE_PER_VOLUME" description="A concentration given as moles per volume" displayLabel="CONCENTRATION MOLE PER VOLUME" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CONCENTRATION MOLE PER VOLUME</DisplayName>
                <Description>A concentration given as moles per volume</Description>
                <Dimension>MOL_PER_L3</Dimension>
                <DimensionDisplayName>MOLE PER VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^-3*mol</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CONDUCTANCE" description="A ratio that is the ratio of the current in the conductor to the potential difference between its ends. Reciprocal of resistance." isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CONDUCTANCE</DisplayName>
                <Description>A ratio that is the ratio of the current in the conductor to the potential difference between its ends. Reciprocal of resistance.</Description>
                <Dimension>T3_EC2_PER_M_L2</Dimension>
                <DimensionDisplayName>TIME CUBED ELECTRIC CURRENT SQUARED PER MASS AREA</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^-2*s^3*A^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CONDUCTIVITY" description="gamma = 1/rho" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CONDUCTIVITY</DisplayName>
                <Description>gamma = 1/rho</Description>
                <Dimension>T3_EC2_PER_M_L3</Dimension>
                <DimensionDisplayName>TIME CUBED ELECTRIC CURRENT SQUARED PER MASS VOLUME</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^-3*s^3*A^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="COUPLING_RATING" description="A ratio which is the ratio between the power (KW) and the rotational frequency (100rpm)" displayLabel="COUPLING RATING" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>COUPLING RATING</DisplayName>
                <Description>A ratio which is the ratio between the power (KW) and the rotational frequency (100rpm)</Description>
                <Dimension>M_L2_PER_T4</Dimension>
                <DimensionDisplayName>MASS AREA PER QUARTIC TIME</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-4</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CULVERT_COEFFICIENT" displayLabel="CULVERT COEFFICIENT" isDomainClass="True">
        <BaseClass>COEFFICIENT</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CULVERT COEFFICIENT</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CURRENCY" isDomainClass="True">
        <BaseClass>DIMENSIONLESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CURRENCY</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CURRENCY_PER_AREA" displayLabel="CURRENCY PER AREA" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CURRENCY PER AREA</DisplayName>
                <Description />
                <Dimension>ONE_PER_L2</Dimension>
                <DimensionDisplayName>RECIPROCAL AREA</DimensionDisplayName>
                <DimensionalDescription>m^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CURRENCY_PER_ENERGY" displayLabel="CURRENCY PER ENERGY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CURRENCY PER ENERGY</DisplayName>
                <Description />
                <Dimension>T2_PER_M_L2</Dimension>
                <DimensionDisplayName>TIME SQUARED PER MASS AREA</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^-2*s^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RECIPROCAL_LENGTH" description="The reciprocal value of length." displayLabel="RECIPROCAL LENGTH" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RECIPROCAL LENGTH</DisplayName>
                <Description>The reciprocal value of length.</Description>
                <Dimension>ONE_PER_L</Dimension>
                <DimensionDisplayName>RECIPROCAL LENGTH</DimensionDisplayName>
                <DimensionalDescription>m^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CURRENCY_PER_LENGTH" displayLabel="CURRENCY PER LENGTH" isDomainClass="True">
        <BaseClass>RECIPROCAL_LENGTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CURRENCY PER LENGTH</DisplayName>
                <Description />
                <Dimension>ONE_PER_L</Dimension>
                <DimensionDisplayName>RECIPROCAL LENGTH</DimensionDisplayName>
                <DimensionalDescription>m^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CURRENCY_PER_POWER" displayLabel="CURRENCY PER POWER" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CURRENCY PER POWER</DisplayName>
                <Description />
                <Dimension>T3_PER_M_L2</Dimension>
                <DimensionDisplayName>TIME CUBED PER MASS AREA</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^-2*s^3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CURRENCY_PER_VOLUME" displayLabel="CURRENCY PER VOLUME" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>CURRENCY PER VOLUME</DisplayName>
                <Description />
                <Dimension>ONE_PER_L3</Dimension>
                <DimensionDisplayName>RECIPROCAL VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="CURRENCY_RATE" description="Cost per Time" displayLabel="Currency Rate" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Currency Rate</DisplayName>
                <Description>Cost per Time</Description>
                <Dimension>ONE_PER_T</Dimension>
                <DimensionDisplayName>RECIPROCAL TIME</DimensionDisplayName>
                <DimensionalDescription>s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VOLUME" description="V  = triple integral (dx.dy.dz)  where x, y and z are Cartesian coordinates" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>VOLUME</DisplayName>
                <Description>"V  = triple integral (dx.dy.dz)  where x, y and z are Cartesian coordinates"</Description>
                <Dimension>L3</Dimension>
                <DimensionDisplayName>VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DAILY_FLARED_GAS_VOLUME___MSCF" description="A daily flared gas volume that is measured in thousand standard cubic feet." displayLabel="DAILY FLARED GAS VOLUME - MSCF" isDomainClass="True">
        <BaseClass>VOLUME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DAILY FLARED GAS VOLUME - MSCF</DisplayName>
                <Description>A daily flared gas volume that is measured in thousand standard cubic feet.</Description>
                <Dimension>L3</Dimension>
                <DimensionDisplayName>VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DAMPING_COEFFICIENT" description="If the quantity is a function of time given by F(t) = A.e^- (delta.t).cos[omega.(t - t0)] then delta is the damping coefficient" displayLabel="DAMPING COEFFICIENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DAMPING COEFFICIENT</DisplayName>
                <Description>If the quantity is a function of time given by F(t) = A.e^- (delta.t).cos[omega.(t - t0)] then delta is the damping coefficient</Description>
                <Dimension>M_PER_T</Dimension>
                <DimensionDisplayName>MASS PER TIME</DimensionDisplayName>
                <DimensionalDescription>kg*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DENSITY" description="Mass divided by volume." isDomainClass="True">
        <BaseClass>CONCENTRATION_MASS_PER_VOLUME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DENSITY</DisplayName>
                <Description>Mass divided by volume.</Description>
                <Dimension>M_PER_L3</Dimension>
                <DimensionDisplayName>MASS PER VOLUME</DimensionDisplayName>
                <DimensionalDescription>kg*m^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DENSITY_GAS" description="Mass per unit volume of a gas." displayLabel="DENSITY GAS" isDomainClass="True">
        <BaseClass>CONCENTRATION_MASS_PER_VOLUME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DENSITY GAS</DisplayName>
                <Description>Mass per unit volume of a gas.</Description>
                <Dimension>M_PER_L3</Dimension>
                <DimensionDisplayName>MASS PER VOLUME</DimensionDisplayName>
                <DimensionalDescription>kg*m^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DENSITY_OF_STATES" description="rho(E) = N,E(E) = dN(E)/dE  where n(E) is the total number of one-electron states with energy less than E, divided by volume" displayLabel="DENSITY OF STATES" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DENSITY OF STATES</DisplayName>
                <Description>"rho(E) = N,E(E) = dN(E)/dE  where n(E) is the total number of one-electron states with energy less than E, divided by volume"</Description>
                <Dimension>T2_PER_M_L5</Dimension>
                <DimensionDisplayName>TIME SQUARED PER MASS LENGTH TO THE FIFTH</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^-5*s^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LENGTH" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LENGTH</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DEPTH" isDomainClass="True">
        <BaseClass>LENGTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DEPTH</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DEPTH_LARGE" displayLabel="DEPTH LARGE" isDomainClass="True">
        <BaseClass>DEPTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DEPTH LARGE</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DEPTH_SMALL" displayLabel="DEPTH SMALL" isDomainClass="True">
        <BaseClass>DEPTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DEPTH SMALL</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DIAMETER" isDomainClass="True">
        <BaseClass>LENGTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DIAMETER</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DIAMETER_LARGE" displayLabel="DIAMETER LARGE" isDomainClass="True">
        <BaseClass>DIAMETER</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DIAMETER LARGE</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DIAMETER_LENGTH" description="The diameter of a pipe multiplied by its length.  Used to estimate the infiltration rate porportional to the product of it's diameter and length. " displayLabel="DIAMETER LENGTH" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DIAMETER LENGTH</DisplayName>
                <Description>The diameter of a pipe multiplied by its length.  Used to estimate the infiltration rate porportional to the product of it's diameter and length. </Description>
                <Dimension>L2</Dimension>
                <DimensionDisplayName>AREA</DimensionDisplayName>
                <DimensionalDescription>m^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DIAMETER_SMALL" displayLabel="DIAMETER SMALL" isDomainClass="True">
        <BaseClass>DIAMETER</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DIAMETER SMALL</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DIAMETER_VERY_SMALL" displayLabel="DIAMETER VERY SMALL" isDomainClass="True">
        <BaseClass>DIAMETER</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DIAMETER VERY SMALL</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DIFFUSIVITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DIFFUSIVITY</DisplayName>
                <Description />
                <Dimension>L2_PER_T</Dimension>
                <DimensionDisplayName>AREA PER TIME</DimensionDisplayName>
                <DimensionalDescription>m^2*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DISCHARGE_PER_PRESSURE_DROP" displayLabel="DISCHARGE PER PRESSURE DROP" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DISCHARGE PER PRESSURE DROP</DisplayName>
                <Description />
                <Dimension>SQRT_L7_PER_SQRT_M</Dimension>
                <DimensionDisplayName>SQUARE ROOT LENGTH TO THE SEVENTH POWER PER SQUARE ROOT MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-0.5*m^3.5</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DISPLACEMENT" isDomainClass="True">
        <BaseClass>VOLUME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DISPLACEMENT</DisplayName>
                <Description />
                <Dimension>L3</Dimension>
                <DimensionDisplayName>VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="DOSE_EQUIVALENT" description="Product of D, Q and N, at the point of interest in tissue, where D is the absorbed dose, Q is the quality factor and N is the product of any other modifying factors  H = D.Q.N" displayLabel="DOSE EQUIVALENT" isDomainClass="True">
        <BaseClass>ABSORBED_DOSE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>DOSE EQUIVALENT</DisplayName>
                <Description>"Product of D, Q and N, at the point of interest in tissue, where D is the absorbed dose, Q is the quality factor and N is the product of any other modifying factors  H = D.Q.N"</Description>
                <Dimension>L2_PER_T2</Dimension>
                <DimensionDisplayName>AREA PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>m^2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ELECTRIC_CHARGE" description="Integral of electric charge over time" displayLabel="ELECTRIC CHARGE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ELECTRIC CHARGE</DisplayName>
                <Description>Integral of electric charge over time</Description>
                <Dimension>T_EC</Dimension>
                <DimensionDisplayName>ELECTRIC CHARGE</DimensionDisplayName>
                <DimensionalDescription>s*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ELECTRIC_CURRENT" description="A measure for the flow rate of electrical energy. Electric current is one of the base quantities on which the SI system is based." displayLabel="ELECTRIC CURRENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ELECTRIC CURRENT</DisplayName>
                <Description>A measure for the flow rate of electrical energy. Electric current is one of the base quantities on which the SI system is based.</Description>
                <Dimension>EC</Dimension>
                <DimensionDisplayName>ELECTRIC CURRENT</DimensionDisplayName>
                <DimensionalDescription>A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ELECTRIC_CURRENT_DENSITY" description="Vector quantity, the integral of which over a given surface is equal to the electric current flowing through that surface" displayLabel="ELECTRIC CURRENT DENSITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ELECTRIC CURRENT DENSITY</DisplayName>
                <Description>"Vector quantity, the integral of which over a given surface is equal to the electric current flowing through that surface"</Description>
                <Dimension>EC_PER_L2</Dimension>
                <DimensionDisplayName>ELECTRIC CURRENT PER AREA</DimensionDisplayName>
                <DimensionalDescription>m^-2*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ELECTRIC_DIPOLE_MOMENT" description="Vector quantity, the vector product at which with the electric field strength of a homogenous field is equal to the torque pxE = T" displayLabel="ELECTRIC DIPOLE MOMENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ELECTRIC DIPOLE MOMENT</DisplayName>
                <Description>"Vector quantity, the vector product at which with the electric field strength of a homogenous field is equal to the torque pxE = T"</Description>
                <Dimension>L_T_EC</Dimension>
                <DimensionDisplayName>LENGTH ELECTRIC CHARGE</DimensionDisplayName>
                <DimensionalDescription>m*s*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ELECTRIC_FIELD_STRENGTH" description="Force, exerted by electric field on an electric point charge, divided by the electronic charge" displayLabel="ELECTRIC FIELD STRENGTH" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ELECTRIC FIELD STRENGTH</DisplayName>
                <Description>"Force, exerted by electric field on an electric point charge, divided by the electronic charge"</Description>
                <Dimension>M_L_PER_T3_EC</Dimension>
                <DimensionDisplayName>MASS LENGTH PER TIME CUBED ELECTRIC CURRENT</DimensionDisplayName>
                <DimensionalDescription>kg*m*s^-3*A^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ELECTRIC_POLARIZABILITY_OF_MOLECULE" description="Induced electric dipole moment divided by electric field strength" displayLabel="ELECTRIC POLARIZABILITY OF MOLECULE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ELECTRIC POLARIZABILITY OF MOLECULE</DisplayName>
                <Description>Induced electric dipole moment divided by electric field strength</Description>
                <Dimension>T4_EC2_PER_M</Dimension>
                <DimensionDisplayName>QUARTIC TIME ELECTRIC CURRENT SQUARED PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*s^4*A^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ELECTRIC_POTENTIAL" description="For electrostatic fields, a scalar quantity, the gradient of which, with reversed sign, is equal to the electric field strength E = - grad V" displayLabel="ELECTRIC POTENTIAL" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ELECTRIC POTENTIAL</DisplayName>
                <Description>"For electrostatic fields, a scalar quantity, the gradient of which, with reversed sign, is equal to the electric field strength E = - grad V"</Description>
                <Dimension>M_L2_PER_T3_EC</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME CUBED ELECTRIC CURRENT</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-3*A^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ELECTRICAL_RESISTANCE" description="In electrical and accoustical fields, the real part of the impedance characterised by the dissipation of energy as opposed to its storage. Electrical resistance may vary with temperature, polarity, field illumination, purity of materials etc. Reciprocal of conductance." displayLabel="ELECTRICAL RESISTANCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ELECTRICAL RESISTANCE</DisplayName>
                <Description>"In electrical and accoustical fields, the real part of the impedance characterised by the dissipation of energy as opposed to its storage. Electrical resistance may vary with temperature, polarity, field illumination, purity of materials etc. Reciprocal of conductance."</Description>
                <Dimension>M_L2_PER_T3_EC2</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME CUBED ELECTRIC CURRENT SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-3*A^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ELECTRICAL_RESISTANCE_PER_LENGTH" displayLabel="ELECTRICAL RESISTANCE PER LENGTH" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ELECTRICAL RESISTANCE PER LENGTH</DisplayName>
                <Description />
                <Dimension>M_L_PER_T3_EC2</Dimension>
                <DimensionDisplayName>MASS LENGTH PER TIME CUBED ELECTRIC CURRENT SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m*s^-3*A^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ELECTROMOTIVE_FORCE" description="Energy supplied by a source divided by the electrical charge transported through the source" displayLabel="ELECTROMOTIVE FORCE" isDomainClass="True">
        <BaseClass>ELECTRIC_POTENTIAL</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ELECTROMOTIVE FORCE</DisplayName>
                <Description>Energy supplied by a source divided by the electrical charge transported through the source</Description>
                <Dimension>M_L2_PER_T3_EC</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME CUBED ELECTRIC CURRENT</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-3*A^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ELEVATION" isDomainClass="True">
        <BaseClass>LENGTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ELEVATION</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ENERGY" description="Capacity to do work." isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ENERGY</DisplayName>
                <Description>Capacity to do work.</Description>
                <Dimension>M_L2_PER_T2</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ENERGY_FLUENCE" description="At a given point in space, the sum of the energies, exclusive of the rest energy, of all the particles incident on a small sphere, divided by the cross-sectional area of that sphere" displayLabel="ENERGY FLUENCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ENERGY FLUENCE</DisplayName>
                <Description>"At a given point in space, the sum of the energies, exclusive of the rest energy, of all the particles incident on a small sphere, divided by the cross-sectional area of that sphere"</Description>
                <Dimension>M_PER_T2</Dimension>
                <DimensionDisplayName>MASS PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="POWER_PER_AREA" description="A property expressing power per unit area." displayLabel="POWER PER AREA" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>POWER PER AREA</DisplayName>
                <Description>A property expressing power per unit area.</Description>
                <Dimension>M_PER_T3</Dimension>
                <DimensionDisplayName>MASS PER TIME CUBED</DimensionDisplayName>
                <DimensionalDescription>kg*s^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ENERGY_FLUENCE_RATE" description="psi = dPSI/dt" displayLabel="ENERGY FLUENCE RATE" isDomainClass="True">
        <BaseClass>POWER_PER_AREA</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ENERGY FLUENCE RATE</DisplayName>
                <Description>psi = dPSI/dt</Description>
                <Dimension>M_PER_T3</Dimension>
                <DimensionDisplayName>MASS PER TIME CUBED</DimensionDisplayName>
                <DimensionalDescription>kg*s^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ENERGY_PER_UNIT_VOLUME" displayLabel="ENERGY PER UNIT VOLUME" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ENERGY PER UNIT VOLUME</DisplayName>
                <Description />
                <Dimension>M_PER_L_T2</Dimension>
                <DimensionDisplayName>MASS PER LENGTH TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ENTHALPY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ENTHALPY</DisplayName>
                <Description />
                <Dimension>M_L2_PER_T2</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ENTROPY" description="When a small quantity of heat dQ is received by a system the thermodynamic temperature of which is T, the entropy of the system is increased by ddQ/dT, provided that no irreversible change takes place in the system" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ENTROPY</DisplayName>
                <Description>"When a small quantity of heat dQ is received by a system the thermodynamic temperature of which is T, the entropy of the system is increased by ddQ/dT, provided that no irreversible change takes place in the system"</Description>
                <Dimension>M_L2_PER_T2_K</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME SQUARED TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-2*K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="EQUIVALENT_PER_MASS" description="A concept of property that is an equivalent devided by mass." displayLabel="EQUIVALENT PER MASS" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>EQUIVALENT PER MASS</DisplayName>
                <Description>A concept of property that is an equivalent devided by mass.</Description>
                <Dimension>ONE_PER_M</Dimension>
                <DimensionDisplayName>RECIPROCAL MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="EXPOSURE" description="For X-gamma radiation, the total electric charge of the ions of the same sign produced when all the electrons (negative and positive) liberated by photons in an element of air are stopped in air, divided by the mass of that element" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>EXPOSURE</DisplayName>
                <Description>"For X-gamma radiation, the total electric charge of the ions of the same sign produced when all the electrons (negative and positive) liberated by photons in an element of air are stopped in air, divided by the mass of that element"</Description>
                <Dimension>T_EC_PER_M</Dimension>
                <DimensionDisplayName>TIME ELECTRIC CURRENT PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*s*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="EXPOSURE_RATE" description="Xr = dX/dt" displayLabel="EXPOSURE RATE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>EXPOSURE RATE</DisplayName>
                <Description>Xr = dX/dt</Description>
                <Dimension>EC_PER_M</Dimension>
                <DimensionDisplayName>ELECTRIC CURRENT PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FARADAY_CONSTANT" description="F = NA.e" displayLabel="FARADAY CONSTANT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>FARADAY CONSTANT</DisplayName>
                <Description>F = NA.e</Description>
                <Dimension>T_EC_PER_MOL</Dimension>
                <DimensionDisplayName>ELECTRIC CHARGE PER MOLE</DimensionDisplayName>
                <DimensionalDescription>s*A*mol^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FIRST_RADIATION_CONSTANT" description="The constant c1 and c2 in the expression for the spectral concentration of the radiant exitance of a full radiator (black body) at the thermodynamic temperature T    M = c1.f(lambda,T) = c1.lambda^5/(e^(c2/(lambda.T))-1)" displayLabel="FIRST RADIATION CONSTANT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>FIRST RADIATION CONSTANT</DisplayName>
                <Description>"The constant c1 and c2 in the expression for the spectral concentration of the radiant exitance of a full radiator (black body) at the thermodynamic temperature T    M = c1.f(lambda,T) = c1.lambda^5/(e^(c2/(lambda.T))-1)"</Description>
                <Dimension>M_L4_PER_T3</Dimension>
                <DimensionDisplayName>MASS QUARTIC LENGTH PER TIME CUBED</DimensionDisplayName>
                <DimensionalDescription>kg*m^4*s^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FLOW_DEPTH" displayLabel="FLOW DEPTH" isDomainClass="True">
        <BaseClass>DEPTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>FLOW DEPTH</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FLOW_TOLERANCE" displayLabel="FLOW TOLERANCE" isDomainClass="True">
        <BaseClass>FLOW</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>FLOW TOLERANCE</DisplayName>
                <Description />
                <Dimension>L3_PER_T</Dimension>
                <DimensionDisplayName>VOLUME PER TIME</DimensionDisplayName>
                <DimensionalDescription>m^3*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FORCE" description="The resultant force acting on a body is equal to the derivative with respect to time of the momentum of the body" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>FORCE</DisplayName>
                <Description>The resultant force acting on a body is equal to the derivative with respect to time of the momentum of the body</Description>
                <Dimension>M_L_PER_T2</Dimension>
                <DimensionDisplayName>MASS LENGTH PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FORCE_PER_VOLUME" description="Force acting on a thing by unit volume." displayLabel="FORCE PER VOLUME" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>FORCE PER VOLUME</DisplayName>
                <Description>Force acting on a thing by unit volume.</Description>
                <Dimension>M_PER_L2_T2</Dimension>
                <DimensionDisplayName>MASS PER AREA TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FRACTION" isDomainClass="True">
        <BaseClass>RATIO</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>FRACTION</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RECIPROCAL_TIME" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RECIPROCAL_TIME</DisplayName>
                <Description />
                <Dimension>ONE_PER_T</Dimension>
                <DimensionDisplayName>RECIPROCAL TIME</DimensionDisplayName>
                <DimensionalDescription>s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="FREQUENCY" description="f = 1/T  where T is a period    Number of cycles divided by time (ISO 31-5:1992(E))" isDomainClass="True">
        <BaseClass>RECIPROCAL_TIME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>FREQUENCY</DisplayName>
                <Description>f = 1/T  where T is a period    Number of cycles divided by time (ISO 31-5:1992(E))</Description>
                <Dimension>ONE_PER_T</Dimension>
                <DimensionDisplayName>RECIPROCAL TIME</DimensionDisplayName>
                <DimensionalDescription>s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="GYROMAGNETIC_COEFFICIENT" description="gamma = mu.2.pi/(J.h)  where J is the angular momentum quantum number" displayLabel="GYROMAGNETIC COEFFICIENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>GYROMAGNETIC COEFFICIENT</DisplayName>
                <Description>gamma = mu.2.pi/(J.h)  where J is the angular momentum quantum number</Description>
                <Dimension>T_EC_PER_M</Dimension>
                <DimensionDisplayName>TIME ELECTRIC CURRENT PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*s*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="HALL_COEFFICIENT" description="In an isotropic conductor, the relation between electric field strength E and the current density J is   E = rho.J + R(BxJ)  where rho is the resistivity and B is the magnetic flux density" displayLabel="HALL COEFFICIENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>HALL COEFFICIENT</DisplayName>
                <Description>"In an isotropic conductor, the relation between electric field strength E and the current density J is   E = rho.J + R(BxJ)  where rho is the resistivity and B is the magnetic flux density"</Description>
                <Dimension>L3_PER_T_EC</Dimension>
                <DimensionDisplayName>VOLUME PER ELECTRIC CHARGE</DimensionDisplayName>
                <DimensionalDescription>m^3*s^-1*A^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="HEADLOSS" isDomainClass="True">
        <BaseClass>DEPTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>HEADLOSS</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="HEAT_TRANSFER" description="The transition of thermal energy from an area of higher concentration to one of lower concentration" displayLabel="Heat Transfer" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Heat Transfer</DisplayName>
                <Description>The transition of thermal energy from an area of higher concentration to one of lower concentration</Description>
                <Dimension>M_L2_PER_T3_K</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME CUBED TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-3*K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="HEAT_TRANSFER_COEFFICIENT_AT_CLEAN_CONDITIONS" description="A heat transfer coefficient at clean conditions." displayLabel="HEAT TRANSFER COEFFICIENT AT CLEAN CONDITIONS" isDomainClass="True">
        <BaseClass>COEFFICIENT_OF_HEAT_TRANSFER</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>HEAT TRANSFER COEFFICIENT AT CLEAN CONDITIONS</DisplayName>
                <Description>A heat transfer coefficient at clean conditions.</Description>
                <Dimension>M_PER_T3_K</Dimension>
                <DimensionDisplayName>MASS PER TIME CUBED TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>kg*s^-3*K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="HEIGHT" displayLabel="Height" isDomainClass="True">
        <BaseClass>LENGTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Height</DisplayName>
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="HYDRAULIC_CONDUCTIVITY" displayLabel="HYDRAULIC CONDUCTIVITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>HYDRAULIC CONDUCTIVITY</DisplayName>
                <Description />
                <Dimension>L_PER_T</Dimension>
                <DimensionDisplayName>LENGTH PER TIME</DimensionDisplayName>
                <DimensionalDescription>m*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ILLUMINANCE" description="At a point on a surface, the luminous flux incident on an element of the surface, divided by the area of that element" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ILLUMINANCE</DisplayName>
                <Description>"At a point on a surface, the luminous flux incident on an element of the surface, divided by the area of that element"</Description>
                <Dimension>LF_PER_L2</Dimension>
                <DimensionDisplayName>LUMINOUS FLUX PER AREA</DimensionDisplayName>
                <DimensionalDescription>m^-2*cd*sr</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MOMENTUM" description="Product of mass and velocity." isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MOMENTUM</DisplayName>
                <Description>Product of mass and velocity.</Description>
                <Dimension>M_L_PER_T</Dimension>
                <DimensionDisplayName>MASS LENGTH PER TIME</DimensionDisplayName>
                <DimensionalDescription>kg*m*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="IMPULSE" description="I=integral F.dt" isDomainClass="True">
        <BaseClass>MOMENTUM</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>IMPULSE</DisplayName>
                <Description>I=integral F.dt</Description>
                <Dimension>M_L_PER_T</Dimension>
                <DimensionDisplayName>MASS LENGTH PER TIME</DimensionDisplayName>
                <DimensionalDescription>kg*m*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="INTRINSIC_NUMBER_DENSITY" description="n.p = ni^2  where n is the neutron number density and p the hole number density" displayLabel="INTRINSIC NUMBER DENSITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>INTRINSIC NUMBER DENSITY</DisplayName>
                <Description>n.p = ni^2  where n is the neutron number density and p the hole number density</Description>
                <Dimension>ONE_PER_L3</Dimension>
                <DimensionDisplayName>RECIPROCAL VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="IONIC_STRENGTH" description="The ionic strength of a solution is defined as  I = (1/2) .sum(zi2.mi)  where the sumation is carried out over all ions with molarities mi" displayLabel="IONIC STRENGTH" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>IONIC STRENGTH</DisplayName>
                <Description>The ionic strength of a solution is defined as  I = (1/2) .sum(zi2.mi)  where the sumation is carried out over all ions with molarities mi</Description>
                <Dimension>MOL_PER_M</Dimension>
                <DimensionDisplayName>MOLE PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*mol</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="KINEMATIC_VISCOSITY" displayLabel="KINEMATIC VISCOSITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>KINEMATIC VISCOSITY</DisplayName>
                <Description />
                <Dimension>L2_PER_T</Dimension>
                <DimensionDisplayName>AREA PER TIME</DimensionDisplayName>
                <DimensionalDescription>m^2*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LAND_AREA" displayLabel="LAND AREA" isDomainClass="True">
        <BaseClass>AREA</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LAND AREA</DisplayName>
                <Description />
                <Dimension>L2</Dimension>
                <DimensionDisplayName>AREA</DimensionDisplayName>
                <DimensionalDescription>m^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LENGTH_LONG" displayLabel="LENGTH LONG" isDomainClass="True">
        <BaseClass>LENGTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LENGTH LONG</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LENGTH_PER_LENGTH" description="A ratio of a length concept to another length concept." displayLabel="LENGTH PER LENGTH" isDomainClass="True">
        <BaseClass>RATIO</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LENGTH PER LENGTH</DisplayName>
                <Description>A ratio of a length concept to another length concept.</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LENGTH_PER_MASS" description="Length of an constant crossection shaped object per unit of mass; as profile, string etc." displayLabel="LENGTH PER MASS" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LENGTH PER MASS</DisplayName>
                <Description>"Length of an constant crossection shaped object per unit of mass; as profile, string etc."</Description>
                <Dimension>L_PER_M</Dimension>
                <DimensionDisplayName>LENGTH PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LENGTH_SHORT" displayLabel="LENGTH SHORT" isDomainClass="True">
        <BaseClass>LENGTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LENGTH SHORT</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LEVEL_OF_A_POWER_QUANTITY" description="Lp = ln (P/Po) where P and Po represent two powers, Po being a reference power" displayLabel="LEVEL OF A POWER QUANTITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LEVEL OF A POWER QUANTITY</DisplayName>
                <Description>"Lp = ln (P/Po) where P and Po represent two powers, Po being a reference power"</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LIGHT_EXPOSURE" description="H = integral (E dt) where E is the illuminance" displayLabel="LIGHT EXPOSURE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LIGHT EXPOSURE</DisplayName>
                <Description>H = integral (E dt) where E is the illuminance</Description>
                <Dimension>T_LF_PER_L2</Dimension>
                <DimensionDisplayName>QUANTITY OF LIGHT PER AREA</DimensionDisplayName>
                <DimensionalDescription>m^-2*s*cd*sr</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LIGHTING_HEAT_GAIN" description="The heat gained caused by room lighting" displayLabel="Lighting Heat Gain" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Lighting Heat Gain</DisplayName>
                <Dimension>M_PER_T3</Dimension>
                <DimensionDisplayName>MASS PER TIME CUBED</DimensionDisplayName>
                <DimensionalDescription>kg*s^-3</DimensionalDescription>
                <Description>The heat gained caused by room lighting</Description>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LINEAR_ACCELERATION" description="An acceleration which is the rate of change of velocity with respect to time, given in units of length per time squared." displayLabel="LINEAR ACCELERATION" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LINEAR ACCELERATION</DisplayName>
                <Description>"An acceleration which is the rate of change of velocity with respect to time, given in units of length per time squared."</Description>
                <Dimension>L_PER_T2</Dimension>
                <DimensionDisplayName>LENGTH PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>m*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LINEAR_ELECTRIC_CURRENT_DENSITY" description="Electric current in a conducting sheet divided by the width of the sheet" displayLabel="LINEAR ELECTRIC CURRENT DENSITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LINEAR ELECTRIC CURRENT DENSITY</DisplayName>
                <Description>Electric current in a conducting sheet divided by the width of the sheet</Description>
                <Dimension>EC_PER_L</Dimension>
                <DimensionDisplayName>ELECTRIC CURRENT PER LENGTH</DimensionDisplayName>
                <DimensionalDescription>m^-1*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LINEAR_ENERGY_TRANSFER" description="For an ionising charged particle, the energy imparted locally to matter in traversing a small distance through the matter, divided by that distance" displayLabel="LINEAR ENERGY TRANSFER" isDomainClass="True">
        <BaseClass>FORCE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LINEAR ENERGY TRANSFER</DisplayName>
                <Description>"For an ionising charged particle, the energy imparted locally to matter in traversing a small distance through the matter, divided by that distance"</Description>
                <Dimension>M_L_PER_T2</Dimension>
                <DimensionDisplayName>MASS LENGTH PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LINEAR_FORCE" displayLabel="LINEAR FORCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LINEAR FORCE</DisplayName>
                <Description />
                <Dimension>M_PER_T2</Dimension>
                <DimensionDisplayName>MASS PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LINEAR_MOMENT" displayLabel="LINEAR MOMENT" isDomainClass="True">
        <BaseClass>FORCE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LINEAR MOMENT</DisplayName>
                <Description />
                <Dimension>M_L_PER_T2</Dimension>
                <DimensionDisplayName>MASS LENGTH PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LINEAR_ROTATIONAL_SPRING_CONSTANT" displayLabel="LINEAR ROTATIONAL SPRING CONSTANT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LINEAR ROTATIONAL SPRING CONSTANT</DisplayName>
                <Description />
                <Dimension>M_L_PER_T2_PA</Dimension>
                <DimensionDisplayName>MASS LENGTH PER TIME SQUARED PLANE ANGLE</DimensionDisplayName>
                <DimensionalDescription>kg*m*s^-2*rad^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LINEAR_SPRING_CONSTANT" displayLabel="LINEAR SPRING CONSTANT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LINEAR SPRING CONSTANT</DisplayName>
                <Description />
                <Dimension>M_PER_L_T2</Dimension>
                <DimensionDisplayName>MASS PER LENGTH TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LINEIC_MASS" description="Mass divided by length." displayLabel="LINEIC MASS" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LINEIC MASS</DisplayName>
                <Description>Mass divided by length.</Description>
                <Dimension>M_PER_L</Dimension>
                <DimensionDisplayName>LENIC MASS</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LOGARITHMIC_MEASURE" displayLabel="LOGARITHMIC MEASURE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LOGARITHMIC MEASURE</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LORENZ_COEFFICIENT" description="L = lambda/(sigma.T) where lambda is the thermal conductivity, sigma the electrical conductivity and T is the thermodynamic temperature" displayLabel="LORENZ COEFFICIENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LORENZ COEFFICIENT</DisplayName>
                <Description>"L = lambda/(sigma.T) where lambda is the thermal conductivity, sigma the electrical conductivity and T is the thermodynamic temperature"</Description>
                <Dimension>M2_L4_PER_T6_EC2_K2</Dimension>
                <DimensionDisplayName>MASS SQUARED QUARTIC LENGTH PER TIME TO THE SIXTH ELECTRIC CURRENT SQUARED TEMPERATURE SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg^2*m^4*s^-6*A^-2*K^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TIME" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TIME</DisplayName>
                <Description />
                <Dimension>T</Dimension>
                <DimensionDisplayName>TIME</DimensionDisplayName>
                <DimensionalDescription>s</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LOWER_LIMIT_OF_OUTDOOR_STORAGE" description="A period of time which is the lower limit of outdoor storage." displayLabel="LOWER LIMIT OF OUTDOOR STORAGE" isDomainClass="True">
        <BaseClass>TIME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LOWER LIMIT OF OUTDOOR STORAGE</DisplayName>
                <Description>A period of time which is the lower limit of outdoor storage.</Description>
                <Dimension>T</Dimension>
                <DimensionDisplayName>TIME</DimensionDisplayName>
                <DimensionalDescription>s</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LUMINANCE" description="At a point on a surface and in a given direction, the luminous intensity of an element of the surface, divided by the area of the orthogonal projection of this element on a plane perpendicular to the given direction" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LUMINANCE</DisplayName>
                <Description>"At a point on a surface and in a given direction, the luminous intensity of an element of the surface, divided by the area of the orthogonal projection of this element on a plane perpendicular to the given direction"</Description>
                <Dimension>LI_PER_L2</Dimension>
                <DimensionDisplayName>LUMINOUS INTENSITY PER AREA</DimensionDisplayName>
                <DimensionalDescription>m^-2*cd</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LUMINOUS_EFFICACY" description="K = PHIv/PHIe" displayLabel="LUMINOUS EFFICACY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LUMINOUS EFFICACY</DisplayName>
                <Description>K = PHIv/PHIe</Description>
                <Dimension>T3_LF_PER_M_L2</Dimension>
                <DimensionDisplayName>TIME CUBED LUMINOUS FLUX PER MASS AREA</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^-2*s^3*cd*sr</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LUMINOUS_FLUX" description="The luminous flux d PHI of a source of luminous intensity I in an element of solid angle dOMEGA is given by   d(PHI) = I.d(OMEGA)" displayLabel="LUMINOUS FLUX" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LUMINOUS FLUX</DisplayName>
                <Description>The luminous flux d PHI of a source of luminous intensity I in an element of solid angle dOMEGA is given by   d(PHI) = I.d(OMEGA)</Description>
                <Dimension>LF</Dimension>
                <DimensionDisplayName>LUMINOUS FLUX</DimensionDisplayName>
                <DimensionalDescription>cd*sr</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="LUMINOUS_INTENSITY" displayLabel="LUMINOUS INTENSITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>LUMINOUS INTENSITY</DisplayName>
                <Description />
                <Dimension>LI</Dimension>
                <DimensionDisplayName>LUMINOUS INTENSITY</DimensionDisplayName>
                <DimensionalDescription>cd</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MAGNETIC_FIELD_STRENGTH" description="Vector quantity, the rotation (curl) of which is equal to the sum of the electric current density and the time derivative of the electric flux density" displayLabel="MAGNETIC FIELD STRENGTH" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MAGNETIC FIELD STRENGTH</DisplayName>
                <Description>"Vector quantity, the rotation (curl) of which is equal to the sum of the electric current density and the time derivative of the electric flux density"</Description>
                <Dimension>EC_PER_L</Dimension>
                <DimensionDisplayName>ELECTRIC CURRENT PER LENGTH</DimensionDisplayName>
                <DimensionalDescription>m^-1*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MAGNETIC_FLUX" description="Across a surface element, the scalar product of the magnetic flux density and the surface element" displayLabel="MAGNETIC FLUX" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MAGNETIC FLUX</DisplayName>
                <Description>"Across a surface element, the scalar product of the magnetic flux density and the surface element"</Description>
                <Dimension>M_L2_PER_T2_EC</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME SQUARED ELECTRIC CURRENT</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-2*A^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MAGNETIC_INDUCTION" description="Vector quantity such that the force exerted on an element of electric current is equal to the vector product of this element and the magnetic flux density" displayLabel="MAGNETIC INDUCTION" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MAGNETIC INDUCTION</DisplayName>
                <Description>Vector quantity such that the force exerted on an element of electric current is equal to the vector product of this element and the magnetic flux density</Description>
                <Dimension>M_PER_T2_EC</Dimension>
                <DimensionDisplayName>MASS PER TIME SQUARED ELECTRIC CURRENT</DimensionDisplayName>
                <DimensionalDescription>kg*s^-2*A^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MAGNETIC_MOMENT" description="Vector quantity, the vector product of which with the magnetic flux density of a homogenous field is equal to the torque mxB = T" displayLabel="MAGNETIC MOMENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MAGNETIC MOMENT</DisplayName>
                <Description>"Vector quantity, the vector product of which with the magnetic flux density of a homogenous field is equal to the torque mxB = T"</Description>
                <Dimension>EC_L2</Dimension>
                <DimensionDisplayName>ELECTRIC CURRENT AREA</DimensionDisplayName>
                <DimensionalDescription>m^2*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MAGNETIC_VECTOR_POTENTIAL" description="Vector quantity, the rotation (curl) of which is equal to the magnetic flux density.  B = rot A" displayLabel="MAGNETIC VECTOR POTENTIAL" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MAGNETIC VECTOR POTENTIAL</DisplayName>
                <Description>"Vector quantity, the rotation (curl) of which is equal to the magnetic flux density.  B = rot A"</Description>
                <Dimension>M_L_PER_T2_EC</Dimension>
                <DimensionDisplayName>MASS LENGTH PER TIME SQUARED ELECTRIC CURRENT</DimensionDisplayName>
                <DimensionalDescription>kg*m*s^-2*A^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MASS_ATTENUATION_COEFFICIENT" description="The linear attenuation coefficient divided by the volumetric mass of the substance mu, m = mu/rho" displayLabel="MASS ATTENUATION COEFFICIENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MASS ATTENUATION COEFFICIENT</DisplayName>
                <Description>"The linear attenuation coefficient divided by the volumetric mass of the substance mu, m = mu/rho"</Description>
                <Dimension>L2_PER_M</Dimension>
                <DimensionDisplayName>AREA PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MASS_RATE" displayLabel="MASS RATE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MASS RATE</DisplayName>
                <Description />
                <Dimension>M_PER_T</Dimension>
                <DimensionDisplayName>MASS PER TIME</DimensionDisplayName>
                <DimensionalDescription>kg*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MASS_FLOW_RATE" description="Mass of matter which crosses a given surface divided by time." displayLabel="MASS FLOW RATE" isDomainClass="True">
        <BaseClass>MASS_RATE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MASS FLOW RATE</DisplayName>
                <Description>Mass of matter which crosses a given surface divided by time.</Description>
                <Dimension>M_PER_T</Dimension>
                <DimensionDisplayName>MASS PER TIME</DimensionDisplayName>
                <DimensionalDescription>kg*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MASS_MOMENT_OF_INERTIA" description="Moment of inertia of a body about an axis is the sum (integral) of the product of its elements of mass and the square of their distances from the axis.  I = Integral (r*r*)dm; where r is the distance from the mass element 'm' to the axis." displayLabel="MASS MOMENT OF INERTIA" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MASS MOMENT OF INERTIA</DisplayName>
                <Description>Moment of inertia of a body about an axis is the sum (integral) of the product of its elements of mass and the square of their distances from the axis.  I = Integral (r*r*)dm; where r is the distance from the mass element 'm' to the axis.</Description>
                <Dimension>M_L2</Dimension>
                <DimensionDisplayName>MASS AREA</DimensionDisplayName>
                <DimensionalDescription>kg*m^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MASS_PER_AREA" displayLabel="MASS PER AREA" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MASS PER AREA</DisplayName>
                <Description />
                <Dimension>M_PER_L2</Dimension>
                <DimensionDisplayName>MASS PER AREA</DimensionDisplayName>
                <DimensionalDescription>kg*m^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MASSIC_ACTIVITY" description="Activity divided by the total mass of the sample" displayLabel="MASSIC ACTIVITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MASSIC ACTIVITY</DisplayName>
                <Description>Activity divided by the total mass of the sample</Description>
                <Dimension>ONE_PER_T_M</Dimension>
                <DimensionDisplayName>RECIPROCAL TIME MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MASSIC_OPTICAL_ROTATORY_POWER" description="alpha m = alpha.A/m  where m is the mass of the optically active component in the path of the linearly polarized light beam of cross-sectional area A" displayLabel="MASSIC OPTICAL ROTATORY POWER" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MASSIC OPTICAL ROTATORY POWER</DisplayName>
                <Description>alpha m = alpha.A/m  where m is the mass of the optically active component in the path of the linearly polarized light beam of cross-sectional area A</Description>
                <Dimension>L2_PA_PER_M</Dimension>
                <DimensionDisplayName>ANGULAR AREA PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^2*rad</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MECHANICAL_IMPEDANCE" description="at a surface (or at a point), the complex representation of total force divided by the complex  representation of average particle velocity at that surface (or of particle velocity at that point) in the direction of the force" displayLabel="MECHANICAL IMPEDANCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MECHANICAL IMPEDANCE</DisplayName>
                <Description>"at a surface (or at a point), the complex representation of total force divided by the complex  representation of average particle velocity at that surface (or of particle velocity at that point) in the direction of the force"</Description>
                <Dimension>M_PER_T</Dimension>
                <DimensionDisplayName>MASS PER TIME</DimensionDisplayName>
                <DimensionalDescription>kg*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MOBILITY" description="Average drift velocity imparted to a charged particle in a medium by an electric field, divided by the field strength" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MOBILITY</DisplayName>
                <Description>"Average drift velocity imparted to a charged particle in a medium by an electric field, divided by the field strength"</Description>
                <Dimension>T2_EC_PER_M</Dimension>
                <DimensionDisplayName>TIME SQUARED ELECTRIC CURRENT PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*s^2*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MOLAR_ATTENUATION_COEFFICIENT" description="mu,c = mu/rho  where c is the amount-of-substance concentration" displayLabel="MOLAR ATTENUATION COEFFICIENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MOLAR ATTENUATION COEFFICIENT</DisplayName>
                <Description>"mu,c = mu/rho  where c is the amount-of-substance concentration"</Description>
                <Dimension>L2_PER_MOL</Dimension>
                <DimensionDisplayName>AREA PER MOLE</DimensionDisplayName>
                <DimensionalDescription>m^2*mol^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MOLAR_CONDUCTIVITY" description="Conductivity divided by the amount-of-substance concentration" displayLabel="MOLAR CONDUCTIVITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MOLAR CONDUCTIVITY</DisplayName>
                <Description>Conductivity divided by the amount-of-substance concentration</Description>
                <Dimension>T3_EC2_PER_M_MOL</Dimension>
                <DimensionDisplayName>TIME CUBED ELECTRIC CURRENT SQUARED PER MASS MOLE</DimensionDisplayName>
                <DimensionalDescription>kg^-1*s^3*A^2*mol^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MOLAR_ENTROPY" description="Entropy divided by amount of substance" displayLabel="MOLAR ENTROPY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MOLAR ENTROPY</DisplayName>
                <Description>Entropy divided by amount of substance</Description>
                <Dimension>M_L2_PER_T2_K_MOL</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME SQUARED TEMPERATURE MOLE</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-2*K^-1*mol^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MOLAR_MASS" description="Mass divided by amount of substance M = m/n" displayLabel="MOLAR MASS" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MOLAR MASS</DisplayName>
                <Description>Mass divided by amount of substance M = m/n</Description>
                <Dimension>M_PER_MOL</Dimension>
                <DimensionDisplayName>MOLAR MASS</DimensionDisplayName>
                <DimensionalDescription>kg*mol^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MOLAR_OPTICAL_ROTATORY_POWER" description="alpha = alpha.A/n where n is the amount of substance of the optically active component in the path of a linearly polarized light beam of a cross-sectional area A" displayLabel="MOLAR OPTICAL ROTATORY POWER" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MOLAR OPTICAL ROTATORY POWER</DisplayName>
                <Description>alpha = alpha.A/n where n is the amount of substance of the optically active component in the path of a linearly polarized light beam of a cross-sectional area A</Description>
                <Dimension>L2_PA_PER_MOL</Dimension>
                <DimensionDisplayName>ANGULAR AREA PER MOLE</DimensionDisplayName>
                <DimensionalDescription>m^2*mol^-1*rad</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MOLAR_THERMODYNAMIC_ENERGY" description="Thermodynamic energy divided by amount of substance" displayLabel="MOLAR THERMODYNAMIC ENERGY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MOLAR THERMODYNAMIC ENERGY</DisplayName>
                <Description>Thermodynamic energy divided by amount of substance</Description>
                <Dimension>M_L2_PER_T2_MOL</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME SQUARED MOLE</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-2*mol^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="MOLAR_VOLUME" description="Volume divided by amount of substance Vm = V/n" displayLabel="MOLAR VOLUME" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>MOLAR VOLUME</DisplayName>
                <Description>Volume divided by amount of substance Vm = V/n</Description>
                <Dimension>L3_PER_MOL</Dimension>
                <DimensionDisplayName>MOLAR VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^3*mol^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="NEUTRON_SOURCE_DENSITY" description="Rate of production of neutrons in a volume element, divided by that element" displayLabel="NEUTRON SOURCE DENSITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>NEUTRON SOURCE DENSITY</DisplayName>
                <Description>"Rate of production of neutrons in a volume element, divided by that element"</Description>
                <Dimension>ONE_PER_L3_T</Dimension>
                <DimensionDisplayName>RECIPROCAL VOLUME TIME</DimensionDisplayName>
                <DimensionalDescription>m^-3*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="NONE" isDomainClass="True">
        <BaseClass>DIMENSIONLESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>NONE</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="NORMAL_MASS_FLOW_RATE" description="A mass flow rate that is the expected flow." displayLabel="NORMAL MASS FLOW RATE" isDomainClass="True">
        <BaseClass>MASS_RATE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>NORMAL MASS FLOW RATE</DisplayName>
                <Description>A mass flow rate that is the expected flow.</Description>
                <Dimension>M_PER_T</Dimension>
                <DimensionDisplayName>MASS PER TIME</DimensionDisplayName>
                <DimensionalDescription>kg*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="OXYGEN_CONTENT_IN_TREATED_PRODUCED_WATER___PPB" description="(PPB=??? Evnt: Skal OXYGEN-CONTENT IN TREATED PRODUCED WATER opprettes f rst??) A measure describing the content of oxygen in produced water that has been processed in the water cleaning system on the installation." displayLabel="OXYGEN-CONTENT IN TREATED PRODUCED WATER - PPB" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>OXYGEN-CONTENT IN TREATED PRODUCED WATER - PPB</DisplayName>
                <Description>(PPB=??? Evnt: Skal OXYGEN-CONTENT IN TREATED PRODUCED WATER opprettes f rst??) A measure describing the content of oxygen in produced water that has been processed in the water cleaning system on the installation.</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PARTICLE_FLUENCE" description="At a given point in space, the number of particles incident on a small sphere, divided by the cross-section area of that sphere" displayLabel="PARTICLE FLUENCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PARTICLE FLUENCE</DisplayName>
                <Description>"At a given point in space, the number of particles incident on a small sphere, divided by the cross-section area of that sphere"</Description>
                <Dimension>ONE_PER_L2</Dimension>
                <DimensionDisplayName>RECIPROCAL AREA</DimensionDisplayName>
                <DimensionalDescription>m^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PARTICLE_FLUENCE_RATE" description="phi = dPHI/dt" displayLabel="PARTICLE FLUENCE RATE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PARTICLE FLUENCE RATE</DisplayName>
                <Description>phi = dPHI/dt</Description>
                <Dimension>ONE_PER_L2_T</Dimension>
                <DimensionDisplayName>RECIPROCAL AREA TIME</DimensionDisplayName>
                <DimensionalDescription>m^-2*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PERCENT" isDomainClass="True">
        <BaseClass>RATIO</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PERCENT</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PERIOD" description="Time of one cycle" isDomainClass="True">
        <BaseClass>TIME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PERIOD</DisplayName>
                <Description>Time of one cycle</Description>
                <Dimension>T</Dimension>
                <DimensionDisplayName>TIME</DimensionDisplayName>
                <DimensionalDescription>s</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PERMEABILITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PERMEABILITY</DisplayName>
                <Description />
                <Dimension>M_L_PER_T2_EC2</Dimension>
                <DimensionDisplayName>MASS LENGTH PER TIME SQUARED ELECTRIC CURRENT SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m*s^-2*A^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PERMEANCE" description="LAMBDA = 1/Rm where Rm is the reluctance" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PERMEANCE</DisplayName>
                <Description>LAMBDA = 1/Rm where Rm is the reluctance</Description>
                <Dimension>M_L2_PER_T2_EC2</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME SQUARED ELECTRIC CURRENT SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-2*A^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PERMITTIVITY" description="D = epsilon.E  where D is the electric flux density and E is the electric field strength" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PERMITTIVITY</DisplayName>
                <Description>D = epsilon.E  where D is the electric flux density and E is the electric field strength</Description>
                <Dimension>T4_EC2_PER_M_L3</Dimension>
                <DimensionDisplayName>QUARTIC TIME ELECTRIC CURRENT SQUARED PER MASS VOLUME</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^-3*s^4*A^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PHOTON_INTENSITY" description="In a given direction from a source, the photon flux leaving the source, in an element of solid angle containing the given direction, divided by that element of solid angle" displayLabel="PHOTON INTENSITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PHOTON INTENSITY</DisplayName>
                <Description>"In a given direction from a source, the photon flux leaving the source, in an element of solid angle containing the given direction, divided by that element of solid angle"</Description>
                <Dimension>ONE_PER_T_SA</Dimension>
                <DimensionDisplayName>RECIPROCAL TIME SOLID ANGLE</DimensionDisplayName>
                <DimensionalDescription>s^-1*sr^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PHOTON_IRRADIANCE" description="At a point on a surface, the photon flux incident on an element of the surface, divided by the area of that element" displayLabel="PHOTON IRRADIANCE" isDomainClass="True">
        <BaseClass>PARTICLE_FLUENCE_RATE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PHOTON IRRADIANCE</DisplayName>
                <Description>"At a point on a surface, the photon flux incident on an element of the surface, divided by the area of that element"</Description>
                <Dimension>ONE_PER_L2_T</Dimension>
                <DimensionDisplayName>RECIPROCAL AREA TIME</DimensionDisplayName>
                <DimensionalDescription>m^-2*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PHOTON_LUMINANCE" description="At a point on a surface and in a given direction, the photon intensity of an element of the surface, divided by tha area of the orthogonal projection of this element on a plane perpendicular to the given direction" displayLabel="PHOTON LUMINANCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PHOTON LUMINANCE</DisplayName>
                <Description>"At a point on a surface and in a given direction, the photon intensity of an element of the surface, divided by tha area of the orthogonal projection of this element on a plane perpendicular to the given direction"</Description>
                <Dimension>ONE_PER_L2_T_SA</Dimension>
                <DimensionDisplayName>RECIPROCAL ANGULAR AREA TIME</DimensionDisplayName>
                <DimensionalDescription>m^-2*s^-1*sr^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SLOPE" isDomainClass="True">
        <BaseClass>DIMENSIONLESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SLOPE</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PIPE_SLOPE" displayLabel="PIPE SLOPE" isDomainClass="True">
        <BaseClass>SLOPE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PIPE SLOPE</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PLANE_ANGLE" description="An angle between two half-lines terminating at the same point is defined as the ratio of length of the included arc of the circle (with its centre at that point) to the radius of that circle" displayLabel="PLANE ANGLE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PLANE ANGLE</DisplayName>
                <Description>An angle between two half-lines terminating at the same point is defined as the ratio of length of the included arc of the circle (with its centre at that point) to the radius of that circle</Description>
                <Dimension>PA</Dimension>
                <DimensionDisplayName>PLANE ANGLE</DimensionDisplayName>
                <DimensionalDescription>m*m^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="POLYTROPIC_HEAD" description="A head that is used to calculate the horsepower." displayLabel="POLYTROPIC HEAD" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>POLYTROPIC HEAD</DisplayName>
                <Description>A head that is used to calculate the horsepower.</Description>
                <Dimension>L2_PER_T2</Dimension>
                <DimensionDisplayName>AREA PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>m^2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="POPULATION" isDomainClass="True">
        <BaseClass>DIMENSIONLESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>POPULATION</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="POPULATION_PER_AREA" displayLabel="POPULATION PER AREA" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>POPULATION PER AREA</DisplayName>
                <Description />
                <Dimension>ONE_PER_L2</Dimension>
                <DimensionDisplayName>RECIPROCAL AREA</DimensionDisplayName>
                <DimensionalDescription>m^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PRESSURE" description="Force perpendicular to the area divided by area. p = dF/dA where dF is the  perpendicular component of the force acting on the area element dA. The pressure is positive when the force is acting into the area." isDomainClass="True">
        <BaseClass>STRESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PRESSURE</DisplayName>
                <Description>Force perpendicular to the area divided by area. p = dF/dA where dF is the  perpendicular component of the force acting on the area element dA. The pressure is positive when the force is acting into the area.</Description>
                <Dimension>M_PER_L_T2</Dimension>
                <DimensionDisplayName>MASS PER LENGTH TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PRESSURE_COEFFICIENT" description="beta = dp/dT  where p is the pressure and T is the temperature" displayLabel="PRESSURE COEFFICIENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PRESSURE COEFFICIENT</DisplayName>
                <Description>beta = dp/dT  where p is the pressure and T is the temperature</Description>
                <Dimension>M_PER_L_T2_K</Dimension>
                <DimensionDisplayName>MASS PER LENGTH TIME SQUARED TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1*s^-2*K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PRESSURE_HEAD" displayLabel="PRESSURE HEAD" isDomainClass="True">
        <BaseClass>DEPTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PRESSURE HEAD</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PROFILE_SURFACE_AREA_PER_UNIT_OF_LENGTH" description="An area that is an outside area of a profile pr. unit of length." displayLabel="PROFILE SURFACE AREA PER UNIT OF LENGTH" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PROFILE SURFACE AREA PER UNIT OF LENGTH</DisplayName>
                <Description>An area that is an outside area of a profile pr. unit of length.</Description>
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="PROFILE_SURFACE_AREA_PER_UNIT_OF_MASS" description="An area which is an outside area of a profile pr. unit of  mass" displayLabel="PROFILE SURFACE AREA PER UNIT OF MASS" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>PROFILE SURFACE AREA PER UNIT OF MASS</DisplayName>
                <Description>An area which is an outside area of a profile pr. unit of  mass</Description>
                <Dimension>L2_PER_M</Dimension>
                <DimensionDisplayName>AREA PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="QUANTITY_OF_LIGHT" description="Time integral of luminous flux" displayLabel="QUANTITY OF LIGHT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>QUANTITY OF LIGHT</DisplayName>
                <Description>Time integral of luminous flux</Description>
                <Dimension>T_LF</Dimension>
                <DimensionDisplayName>QUANTITY OF LIGHT</DimensionDisplayName>
                <DimensionalDescription>s*cd*sr</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RADIANCE" description="At a point on a surface and in a given direction, the radiant intensity of an element of the surface, divided by the area of the orthogonal projection of this element on a plane perpendicular to the given direction" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RADIANCE</DisplayName>
                <Description>"At a point on a surface and in a given direction, the radiant intensity of an element of the surface, divided by the area of the orthogonal projection of this element on a plane perpendicular to the given direction"</Description>
                <Dimension>M_PER_T3_SA</Dimension>
                <DimensionDisplayName>MASS PER TIME CUBED SOLID ANGLE</DimensionDisplayName>
                <DimensionalDescription>kg*s^-3*sr^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RADIANT_ENERGY_DENSITY" description="Radiant energy in an element of volume; divided by that volume" displayLabel="RADIANT ENERGY DENSITY" isDomainClass="True">
        <BaseClass>ENERGY_PER_UNIT_VOLUME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RADIANT ENERGY DENSITY</DisplayName>
                <Description>Radiant energy in an element of volume; divided by that volume</Description>
                <Dimension>M_PER_L_T2</Dimension>
                <DimensionDisplayName>MASS PER LENGTH TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RADIANT_INTENSITY" description="in a given direction from a source, the radiant energy flux leaving the source, or an element of the source, in an element of the solid angle containing the given direction, divided by that element of solid angle" displayLabel="RADIANT INTENSITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RADIANT INTENSITY</DisplayName>
                <Description>"in a given direction from a source, the radiant energy flux leaving the source, or an element of the source, in an element of the solid angle containing the given direction, divided by that element of solid angle"</Description>
                <Dimension>M_L2_PER_T3_SA</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME CUBED SOLID ANGLE</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-3*sr^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RADIATION_ACTIVITY" description="Average number of spontaneous nuclear transitions from a particular energy state occuring in an amount of a radionuclide in a small time interval, divided by that interval" displayLabel="RADIATION ACTIVITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RADIATION ACTIVITY</DisplayName>
                <Description>"Average number of spontaneous nuclear transitions from a particular energy state occuring in an amount of a radionuclide in a small time interval, divided by that interval"</Description>
                <Dimension>ONE_PER_T</Dimension>
                <DimensionDisplayName>RECIPROCAL TIME</DimensionDisplayName>
                <DimensionalDescription>s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RECIPROCAL_AREA" displayLabel="RECIPROCAL AREA" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RECIPROCAL AREA</DisplayName>
                <Description />
                <Dimension>ONE_PER_L2</Dimension>
                <DimensionDisplayName>RECIPROCAL AREA</DimensionDisplayName>
                <DimensionalDescription>m^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RECIPROCAL_VOLUME" displayLabel="RECIPROCAL VOLUME" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RECIPROCAL VOLUME</DisplayName>
                <Description />
                <Dimension>ONE_PER_L3</Dimension>
                <DimensionDisplayName>RECIPROCAL VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^-3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RELATIVE_FLOW_CHANGE" displayLabel="RELATIVE FLOW CHANGE" isDomainClass="True">
        <BaseClass>RATIO</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RELATIVE FLOW CHANGE</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RELUCTANCE" description="Magnetic potential difference by magnetic flux" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RELUCTANCE</DisplayName>
                <Description>Magnetic potential difference by magnetic flux</Description>
                <Dimension>T2_EC2_PER_M_L2</Dimension>
                <DimensionDisplayName>TIME SQUARED ELECTRIC CURRENT SQUARED PER MASS AREA</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^-2*s^2*A^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RESISTIVITY" description="E = rho.J  Electrical resistance of a material multiplied by the ratio of cross sectional area to current path length." isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RESISTIVITY</DisplayName>
                <Description>E = rho.J  Electrical resistance of a material multiplied by the ratio of cross sectional area to current path length.</Description>
                <Dimension>M_L3_PER_T3_EC2</Dimension>
                <DimensionDisplayName>MASS VOLUME PER TIME CUBED ELECTRIC CURRENT SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^3*s^-3*A^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="RICHARDSON_CONSTANT" description="The thermionic emission current density J for a metal is   J = A.T^2.exp(-PHI/(k.T))  where T is the thermodynamic temperature, k is the Boltzmann constant and PHI is the work function" displayLabel="RICHARDSON CONSTANT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>RICHARDSON CONSTANT</DisplayName>
                <Description>"The thermionic emission current density J for a metal is   J = A.T^2.exp(-PHI/(k.T))  where T is the thermodynamic temperature, k is the Boltzmann constant and PHI is the work function"</Description>
                <Dimension>EC_PER_L2_K2</Dimension>
                <DimensionDisplayName>ELECTRIC CURRENT PER AREA TEMPERATURE SQUARED</DimensionDisplayName>
                <DimensionalDescription>m^-2*A*K^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ROTATIONAL_SPEED" description="The number of 360 degree revolutions of a shaft per unit time" displayLabel="ROTATIONAL SPEED" isDomainClass="True">
        <BaseClass>ANGLE_PER_TIME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ROTATIONAL SPEED</DisplayName>
                <Description>The number of 360 degree revolutions of a shaft per unit time</Description>
                <Dimension>PA_PER_T</Dimension>
                <DimensionDisplayName>PLANE ANGLE PER TIME</DimensionDisplayName>
                <DimensionalDescription>s^-1*rad</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ROTATIONAL_SPRING_CONSTANT" displayLabel="ROTATIONAL SPRING CONSTANT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ROTATIONAL SPRING CONSTANT</DisplayName>
                <Description />
                <Dimension>M_L2_PER_T2_PA</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME SQUARED PLANE ANGLE</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-2*rad^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ROUGHNESS" isDomainClass="True">
        <BaseClass>DEPTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ROUGHNESS</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ROUGHNESS_ABSOLUTE" displayLabel="ROUGHNESS ABSOLUTE" isDomainClass="True">
        <BaseClass>ROUGHNESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ROUGHNESS ABSOLUTE</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ROUGHNESS_DARCYWEISBACH" displayLabel="ROUGHNESS DARCYWEISBACH" isDomainClass="True">
        <BaseClass>ROUGHNESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ROUGHNESS DARCYWEISBACH</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ROUGHNESS_HAZENWILLIAMS" displayLabel="ROUGHNESS HAZENWILLIAMS" isDomainClass="True">
        <BaseClass>ROUGHNESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ROUGHNESS HAZENWILLIAMS</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ROUGHNESS_KUTTERS" displayLabel="ROUGHNESS KUTTERS" isDomainClass="True">
        <BaseClass>ROUGHNESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ROUGHNESS KUTTERS</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="ROUGHNESS_MANNINGS" displayLabel="ROUGHNESS MANNINGS" isDomainClass="True">
        <BaseClass>ROUGHNESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>ROUGHNESS MANNINGS</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SCALE" isDomainClass="True">
        <BaseClass>RATIO</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SCALE</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SECOND_RADIATION_CONSTANT" description="The constant c1 and c2 in the expression for the spectral concentration of the radiant exitance of a full radiator (black body) at the thermodynamic temperature T    M = c1.f(lambda,T) = c1.lambda^5/(e^(c2/(lambda.T))-1)" displayLabel="SECOND RADIATION CONSTANT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SECOND RADIATION CONSTANT</DisplayName>
                <Description>"The constant c1 and c2 in the expression for the spectral concentration of the radiant exitance of a full radiator (black body) at the thermodynamic temperature T    M = c1.f(lambda,T) = c1.lambda^5/(e^(c2/(lambda.T))-1)"</Description>
                <Dimension>L_K</Dimension>
                <DimensionDisplayName>LENGTH TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>m*K</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SIDE_SLOPE" displayLabel="SIDE SLOPE" isDomainClass="True">
        <BaseClass>SLOPE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SIDE SLOPE</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SLOWING_DOWN_DENSITY" description="Number density of neutrons slowing down past a given energy value in a small time interval, divided by that interval" displayLabel="SLOWING-DOWN DENSITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SLOWING-DOWN DENSITY</DisplayName>
                <Description>"Number density of neutrons slowing down past a given energy value in a small time interval, divided by that interval"</Description>
                <Dimension>ONE_PER_L3_T</Dimension>
                <DimensionDisplayName>RECIPROCAL VOLUME TIME</DimensionDisplayName>
                <DimensionalDescription>m^-3*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SOLID_ANGLE" description="A solid angle of a cone is defined as the ratio of the area cut out on a spherical surface (with its centre at the apex of that cone) to the square of the radius of the sphere" displayLabel="SOLID ANGLE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SOLID ANGLE</DisplayName>
                <Description>A solid angle of a cone is defined as the ratio of the area cut out on a spherical surface (with its centre at the apex of that cone) to the square of the radius of the sphere</Description>
                <Dimension>SA</Dimension>
                <DimensionDisplayName>SOLID ANGLE</DimensionDisplayName>
                <DimensionalDescription>m^2*m^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SOUND_PRESSURE_LEVEL" displayLabel="SOUND PRESSURE LEVEL" isDomainClass="True">
        <BaseClass>LOGARITHMIC_MEASURE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SOUND PRESSURE LEVEL</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SOUND_PRESSURE_LEVEL_ALLOWED" description="A sound pressure level that is the allowed sound pressure level." displayLabel="SOUND PRESSURE LEVEL ALLOWED" isDomainClass="True">
        <BaseClass>SOUND_PRESSURE_LEVEL</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SOUND PRESSURE LEVEL ALLOWED</DisplayName>
                <Description>A sound pressure level that is the allowed sound pressure level.</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SOUND_PRESSURE_LEVEL_AT_NOMINAL_LOAD" description="A sound pressure level that is the sound pressure level generated when operating at nominal load." displayLabel="SOUND PRESSURE LEVEL AT NOMINAL LOAD" isDomainClass="True">
        <BaseClass>SOUND_PRESSURE_LEVEL</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SOUND PRESSURE LEVEL AT NOMINAL LOAD</DisplayName>
                <Description>A sound pressure level that is the sound pressure level generated when operating at nominal load.</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SPECIFIC_ENERGY" description="Energy divided by mass" displayLabel="SPECIFIC ENERGY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SPECIFIC ENERGY</DisplayName>
                <Description>Energy divided by mass</Description>
                <Dimension>L2_PER_T2</Dimension>
                <DimensionDisplayName>AREA PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>m^2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SPECIFIC_ENTROPY" description="Entropy divided by mass" displayLabel="SPECIFIC ENTROPY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SPECIFIC ENTROPY</DisplayName>
                <Description>Entropy divided by mass</Description>
                <Dimension>L2_PER_T2_K</Dimension>
                <DimensionDisplayName>AREA PER TIME SQUARED TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>m^2*s^-2*K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SPECIFIC_GRAVITY" displayLabel="SPECIFIC GRAVITY" isDomainClass="True">
        <BaseClass>RATIO</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SPECIFIC GRAVITY</DisplayName>
                <Description />
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SPECIFIC_HEAT_CAPACITY" description="Heat capacity divided by mass" displayLabel="SPECIFIC HEAT CAPACITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SPECIFIC HEAT CAPACITY</DisplayName>
                <Description>Heat capacity divided by mass</Description>
                <Dimension>L2_PER_T2_K</Dimension>
                <DimensionDisplayName>AREA PER TIME SQUARED TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>m^2*s^-2*K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SPECIFIC_VOLUME" description="Volume divided by mass.  v=1/rho" displayLabel="SPECIFIC VOLUME" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SPECIFIC VOLUME</DisplayName>
                <Description>Volume divided by mass.  v=1/rho</Description>
                <Dimension>L3_PER_M</Dimension>
                <DimensionDisplayName>VOLUME PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SPECIFIC_WEIGHT" displayLabel="SPECIFIC WEIGHT" isDomainClass="True">
        <BaseClass>FORCE_PER_VOLUME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SPECIFIC WEIGHT</DisplayName>
                <Description />
                <Dimension>M_PER_L2_T2</Dimension>
                <DimensionDisplayName>MASS PER AREA TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SPECTRAL_ANGULAR_CROSS_SECTION" description="Cross-section for ejection or scattering a particle into an element of solid angle with energy in an element of energy, divided by the product of these two elements  sigma = double integral (sigma, OMEGA, E.dOMEGA.dE)" displayLabel="SPECTRAL ANGULAR CROSS-SECTION" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SPECTRAL ANGULAR CROSS-SECTION</DisplayName>
                <Description>"Cross-section for ejection or scattering a particle into an element of solid angle with energy in an element of energy, divided by the product of these two elements  sigma = double integral (sigma, OMEGA, E.dOMEGA.dE)"</Description>
                <Dimension>T2_PER_M_SA</Dimension>
                <DimensionDisplayName>TIME SQUARED PER MASS SOLID ANGLE</DimensionDisplayName>
                <DimensionalDescription>kg^-1*s^2*sr^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SPECTRAL_CONCENTRATION_OF_RADIANT_ENERGY_DENSITY" description="Radiant energy density in an infinitesimal wavelength interval, divided by the range of that interval" displayLabel="SPECTRAL CONCENTRATION OF RADIANT ENERGY DENSITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SPECTRAL CONCENTRATION OF RADIANT ENERGY DENSITY</DisplayName>
                <Description>"Radiant energy density in an infinitesimal wavelength interval, divided by the range of that interval"</Description>
                <Dimension>M_PER_L2_T2</Dimension>
                <DimensionDisplayName>MASS PER AREA TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SPECTRAL_CONCENTRATION_OF_VIBRATIONAL_MODES" description="Number of vibrational modes in an infinitesimal interval of angular frequency, divided by the size of that interval and by volume" displayLabel="SPECTRAL CONCENTRATION OF VIBRATIONAL MODES" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SPECTRAL CONCENTRATION OF VIBRATIONAL MODES</DisplayName>
                <Description>"Number of vibrational modes in an infinitesimal interval of angular frequency, divided by the size of that interval and by volume"</Description>
                <Dimension>T_PER_L3_PA</Dimension>
                <DimensionDisplayName>TIME PER ANGULAR VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^-3*s*rad^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SPECTRAL_CROSS_SECTION" description="Cross-section for a process in which the energy of the ejected or scattered particle is in an element of energy, divided by this element.  sigma = integral ( sigmaE.dE)" displayLabel="SPECTRAL CROSS-SECTION" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SPECTRAL CROSS-SECTION</DisplayName>
                <Description>"Cross-section for a process in which the energy of the ejected or scattered particle is in an element of energy, divided by this element.  sigma = integral ( sigmaE.dE)"</Description>
                <Dimension>T2_PER_M</Dimension>
                <DimensionDisplayName>TIME SQUARED PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*s^2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SPRING_CONSTANT" displayLabel="SPRING CONSTANT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SPRING CONSTANT</DisplayName>
                <Description />
                <Dimension>M_PER_T2</Dimension>
                <DimensionDisplayName>MASS PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="STRAIN" description="length per length" isDomainClass="True">
        <BaseClass>RATIO</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>STRAIN</DisplayName>
                <Description>length per length</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SURFACE_DENSITY" description="Mass divided by area" displayLabel="SURFACE DENSITY" isDomainClass="True">
        <BaseClass>MASS_PER_AREA</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SURFACE DENSITY</DisplayName>
                <Description>Mass divided by area</Description>
                <Dimension>M_PER_L2</Dimension>
                <DimensionDisplayName>MASS PER AREA</DimensionDisplayName>
                <DimensionalDescription>kg*m^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="SURFACE_TENSION" description="Force perpendicular to a line element in a surface divided by the length of the line element" displayLabel="SURFACE TENSION" isDomainClass="True">
        <BaseClass>LINEAR_FORCE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>SURFACE TENSION</DisplayName>
                <Description>Force perpendicular to a line element in a surface divided by the length of the line element</Description>
                <Dimension>M_PER_T2</Dimension>
                <DimensionDisplayName>MASS PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TANK_VOLUME" displayLabel="TANK VOLUME" isDomainClass="True">
        <BaseClass>VOLUME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TANK VOLUME</DisplayName>
                <Description />
                <Dimension>L3</Dimension>
                <DimensionDisplayName>VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TEMPERATURE" description="The degree or intensity of heat or cold as measured on a thermometric scale, and a measure of whether two systems are relatively hot or cold with respect to one another. Two systems brought into contact will, after sufficient time, be in thermal equilibrium and will have the same temperature." isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TEMPERATURE</DisplayName>
                <Description>The degree or intensity of heat or cold as measured on a thermometric scale, and a measure of whether two systems are relatively hot or cold with respect to one another. Two systems brought into contact will, after sufficient time, be in thermal equilibrium and will have the same temperature.</Description>
                <Dimension>K</Dimension>
                <DimensionDisplayName>TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>K</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TEMPERATURE_CHANGE" description="The change in the degree or intensity of heat or cold as measured on a thermometric scale." displayLabel="TEMPERATURE CHANGE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TEMPERATURE CHANGE</DisplayName>
                <Description>The change in the degree or intensity of heat or cold as measured on a thermometric scale.</Description>
                <Dimension>K</Dimension>
                <DimensionDisplayName>TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>K</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TEMPERATURE_GRADIENT" description="temperature change per length" displayLabel="TEMPERATURE GRADIENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TEMPERATURE GRADIENT</DisplayName>
                <Description>temperature change per length</Description>
                <Dimension>K_PER_L</Dimension>
                <DimensionDisplayName>TEMPERATURE PER LENGTH</DimensionDisplayName>
                <DimensionalDescription>m^-1*K</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="THERMAL_ADMITTANCE" description="Equal to the Coefficient of Heat Transfer" displayLabel="Thermal Admittance" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Thermal Admittance</DisplayName>
                <Description>Equal to the Coefficient of heat transfer</Description>
                <Dimension>M_PER_T3_K</Dimension>
                <DimensionDisplayName>MASS PER TIME CUBED TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>kg*s^-3*K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="THERMAL_CONDUCTANCE" description="G = 1/R  where R is the thermal resistance" displayLabel="THERMAL CONDUCTANCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>THERMAL CONDUCTANCE</DisplayName>
                <Description>G = 1/R  where R is the thermal resistance</Description>
                <Dimension>M_L2_PER_T3_K</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME CUBED TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-3*K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="THERMAL_CONDUCTIVITY" description="Areic heat flow rate divided by temperature gradient" displayLabel="THERMAL CONDUCTIVITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>THERMAL CONDUCTIVITY</DisplayName>
                <Description>Areic heat flow rate divided by temperature gradient</Description>
                <Dimension>M_L_PER_T3_K</Dimension>
                <DimensionDisplayName>MASS LENGTH PER TIME CUBED TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>kg*m*s^-3*K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="THERMAL_INSULANCE" description="Temperature difference divided by areic heat flow rate   M = 1/K" displayLabel="THERMAL INSULANCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>THERMAL INSULANCE</DisplayName>
                <Description>Temperature difference divided by areic heat flow rate   M = 1/K</Description>
                <Dimension>T3_K_PER_M</Dimension>
                <DimensionDisplayName>TIME CUBED TEMPERATURE PER MASS</DimensionDisplayName>
                <DimensionalDescription>kg^-1*s^3*K</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="THERMAL_RESISTANCE" description="Temperature difference divided by heat flow rate." displayLabel="THERMAL RESISTANCE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>THERMAL RESISTANCE</DisplayName>
                <Description>Temperature difference divided by heat flow rate.</Description>
                <Dimension>T3_K_PER_M_L2</Dimension>
                <DimensionDisplayName>TIME CUBED TEMPERATURE PER MASS AREA</DimensionDisplayName>
                <DimensionalDescription>kg^-1*m^-2*s^3*K</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="THERMAL_TRANSMITTANCE" description="The rate of heat transfer through one square meter of structure divided by the difference in temperature across the structure" displayLabel="Thermal Transmittance" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Thermal Transmittance</DisplayName>
                <Description>The rate of heat transfer through one square meter of material divided by the difference in temperature across the material</Description>
                <DimensionDisplayName>MASS PER TIME CUBED TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>kg*s^-3*K^-1</DimensionalDescription>
                <Dimension>M_PER_T3_K</Dimension>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="THOMSON_COEFFICIENT" description="Thomson heat power developed divided by the electric current and temperature difference" displayLabel="THOMSON COEFFICIENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>THOMSON COEFFICIENT</DisplayName>
                <Description>Thomson heat power developed divided by the electric current and temperature difference</Description>
                <Dimension>M_L2_PER_T3_EC_K</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME CUBED ELECTRIC CURRENT TEMPERATURE</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-3*A^-1*K^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TIME_EXTENDED" displayLabel="TIME EXTENDED" isDomainClass="True">
        <BaseClass>TIME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TIME EXTENDED</DisplayName>
                <Description />
                <Dimension>T</Dimension>
                <DimensionDisplayName>TIME</DimensionDisplayName>
                <DimensionalDescription>s</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TIME_FLOW" displayLabel="TIME FLOW" isDomainClass="True">
        <BaseClass>TIME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TIME FLOW</DisplayName>
                <Description />
                <Dimension>T</Dimension>
                <DimensionDisplayName>TIME</DimensionDisplayName>
                <DimensionalDescription>s</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TIME_LONG" displayLabel="TIME LONG" isDomainClass="True">
        <BaseClass>TIME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TIME LONG</DisplayName>
                <Description />
                <Dimension>T</Dimension>
                <DimensionDisplayName>TIME</DimensionDisplayName>
                <DimensionalDescription>s</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TIME_SHORT" displayLabel="TIME SHORT" isDomainClass="True">
        <BaseClass>TIME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TIME SHORT</DisplayName>
                <Description />
                <Dimension>T</Dimension>
                <DimensionDisplayName>TIME</DimensionDisplayName>
                <DimensionalDescription>s</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TIME_VERY_SHORT" displayLabel="TIME VERY SHORT" isDomainClass="True">
        <BaseClass>TIME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TIME VERY SHORT</DisplayName>
                <Description />
                <Dimension>T</Dimension>
                <DimensionDisplayName>TIME</DimensionDisplayName>
                <DimensionalDescription>s</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TORQUE" isDomainClass="True">
        <BaseClass>MOMENT_OF_FORCE</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TORQUE</DisplayName>
                <Description />
                <Dimension>M_L2_PER_T2</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TOTAL_ATOMIC_STOPPING_POWER" description="Sa = S/n  where n is the number density of the atoms in the substance" displayLabel="TOTAL ATOMIC STOPPING POWER" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TOTAL ATOMIC STOPPING POWER</DisplayName>
                <Description>Sa = S/n  where n is the number density of the atoms in the substance</Description>
                <Dimension>M_L4_PER_T2</Dimension>
                <DimensionDisplayName>MASS QUARTIC LENGTH PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^4*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="TOTAL_MASS_STOPPING_POWER" description="Total linear stopping power divided by the volumetric mass of the substance  Sm = S/rho" displayLabel="TOTAL MASS STOPPING POWER" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>TOTAL MASS STOPPING POWER</DisplayName>
                <Description>Total linear stopping power divided by the volumetric mass of the substance  Sm = S/rho</Description>
                <Dimension>L4_PER_T2</Dimension>
                <DimensionDisplayName>QUARTIC LENGTH PER TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>m^4*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VAPOR_RESISTANCE" displayLabel="Vapor Resistance" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Vapor Resistance</DisplayName>
                <Description>The vapor pressure difference per unit times rate of water vapor steady-state flow through a unit area, normal to specific parallel surfaces.  Often measured in GNs/kg.</Description>
                <Dimension>L_PER_T</Dimension>
                <DimensionDisplayName>LENGTH PER TIME</DimensionDisplayName>
                <DimensionalDescription>m*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VAPOR_RESISTIVITY" displayLabel="Vapor Resistivity" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>Vapor Resistivity</DisplayName>
                <Dimension>ONE_PER_T</Dimension>
                <DimensionDisplayName>RECIPROCAL TIME</DimensionDisplayName>
                <DimensionalDescription>s^-1</DimensionalDescription>
                <Description>Resistance per unit thickness to water vapor.  Often measured in GNs/(kg*m).</Description>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VELOCITY" description="v = ds/dt where s is the displacement and t is the time" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>VELOCITY</DisplayName>
                <Description>v = ds/dt where s is the displacement and t is the time</Description>
                <Dimension>L_PER_T</Dimension>
                <DimensionDisplayName>LENGTH PER TIME</DimensionDisplayName>
                <DimensionalDescription>m*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VISCOSITY" description="Dynamic Viscosity. tau xz= eta (delta(vx)/delta(z)) where tau xz is the shear stress (shear force pr. unit area) in a fluid moving with a velocity gradient dvx/dz perpendicular to the plane of shear." isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>VISCOSITY</DisplayName>
                <Description>Dynamic Viscosity. tau xz= eta (delta(vx)/delta(z)) where tau xz is the shear stress (shear force pr. unit area) in a fluid moving with a velocity gradient dvx/dz perpendicular to the plane of shear.</Description>
                <Dimension>M_PER_L_T</Dimension>
                <DimensionDisplayName>MASS PER LENGTH TIME</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VOLTAGE" isDomainClass="True">
        <BaseClass>ELECTRIC_POTENTIAL</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>VOLTAGE</DisplayName>
                <Description />
                <Dimension>M_L2_PER_T3_EC</Dimension>
                <DimensionDisplayName>MASS AREA PER TIME CUBED ELECTRIC CURRENT</DimensionDisplayName>
                <DimensionalDescription>kg*m^2*s^-3*A^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VOLUME_FLOW_RATE" description="A flow rate which is the volume of matter that crosses a given surface divided by time.    (instantaneous rate of volume flow due to a sound wave, ISO 31-7:1992(E))" displayLabel="VOLUME FLOW RATE" isDomainClass="True">
        <BaseClass>FLOW</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>VOLUME FLOW RATE</DisplayName>
                <Description>"A flow rate which is the volume of matter that crosses a given surface divided by time.    (instantaneous rate of volume flow due to a sound wave, ISO 31-7:1992(E))"</Description>
                <Dimension>L3_PER_T</Dimension>
                <DimensionDisplayName>VOLUME PER TIME</DimensionDisplayName>
                <DimensionalDescription>m^3*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VOLUME_LARGE" displayLabel="VOLUME LARGE" isDomainClass="True">
        <BaseClass>VOLUME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>VOLUME LARGE</DisplayName>
                <Description />
                <Dimension>L3</Dimension>
                <DimensionDisplayName>VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VOLUME_PER_VOLUME" description="A ratio of a volume concept to another volume concept." displayLabel="VOLUME PER VOLUME" isDomainClass="True">
        <BaseClass>RATIO</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>VOLUME PER VOLUME</DisplayName>
                <Description>A ratio of a volume concept to another volume concept.</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VOLUME_PERCENTAGE" description="A percentage of the volume occupied by a component to the total volume of the system." displayLabel="VOLUME PERCENTAGE" isDomainClass="True">
        <BaseClass>PERCENT</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>VOLUME PERCENTAGE</DisplayName>
                <Description>A percentage of the volume occupied by a component to the total volume of the system.</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VOLUME_SMALL" displayLabel="VOLUME SMALL" isDomainClass="True">
        <BaseClass>VOLUME</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>VOLUME SMALL</DisplayName>
                <Description />
                <Dimension>L3</Dimension>
                <DimensionDisplayName>VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VOLUMIC_ACTIVITY" description="Activity divided by the total volume of the sample" displayLabel="VOLUMIC ACTIVITY" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>VOLUMIC ACTIVITY</DisplayName>
                <Description>Activity divided by the total volume of the sample</Description>
                <Dimension>ONE_PER_L3_T</Dimension>
                <DimensionDisplayName>RECIPROCAL VOLUME TIME</DimensionDisplayName>
                <DimensionalDescription>m^-3*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="VOLUMIC_CHARGE" description="Charge divided by volume" displayLabel="VOLUMIC CHARGE" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>VOLUMIC CHARGE</DisplayName>
                <Description>Charge divided by volume</Description>
                <Dimension>T_EC_PER_L3</Dimension>
                <DimensionDisplayName>ELECTRIC CHARGE PER VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^-3*s*A</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="WATER_VOLUME_FLOW_RATE" description="A water volume flow rate measured in standard cubic metre per day." displayLabel="WATER VOLUME FLOW RATE" isDomainClass="True">
        <BaseClass>FLOW</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>WATER VOLUME FLOW RATE</DisplayName>
                <Description>A water volume flow rate measured in standard cubic metre per day.</Description>
                <Dimension>L3_PER_T</Dimension>
                <DimensionDisplayName>VOLUME PER TIME</DimensionDisplayName>
                <DimensionalDescription>m^3*s^-1</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="WEIGHT_PERCENTAGE" description="A percentage where the calculation is based on a ratio between weights." displayLabel="WEIGHT PERCENTAGE" isDomainClass="True">
        <BaseClass>PERCENT</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>WEIGHT PERCENTAGE</DisplayName>
                <Description>A percentage where the calculation is based on a ratio between weights.</Description>
                <Dimension>ONE</Dimension>
                <DimensionDisplayName>DIMENSIONLESS</DimensionDisplayName>
                <DimensionalDescription>one</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="WEIR_COEFFICIENT" displayLabel="WEIR COEFFICIENT" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>WEIR COEFFICIENT</DisplayName>
                <Description />
                <Dimension>L3</Dimension>
                <DimensionDisplayName>VOLUME</DimensionDisplayName>
                <DimensionalDescription>m^3</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="WIDTH" isDomainClass="True">
        <BaseClass>LENGTH</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>WIDTH</DisplayName>
                <Description />
                <Dimension>L</Dimension>
                <DimensionDisplayName>LENGTH</DimensionDisplayName>
                <DimensionalDescription>m</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="WOBBE_INDEX" description="The Wobbe Index is a number indicating the interchangeability of fuel gases. The value is obtained by dividing the heating value of a gas by the square root of its specific gravity." displayLabel="WOBBE INDEX" isDomainClass="True">
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>WOBBE INDEX</DisplayName>
                <Description>The Wobbe Index is a number indicating the interchangeability of fuel gases. The value is obtained by dividing the heating value of a gas by the square root of its specific gravity.</Description>
                <Dimension>M_PER_L_T2</Dimension>
                <DimensionDisplayName>MASS PER LENGTH TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="YIELD_STRENGTH" displayLabel="YIELD STRENGTH" isDomainClass="True">
        <BaseClass>STRESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>YIELD STRENGTH</DisplayName>
                <Description />
                <Dimension>M_PER_L_T2</Dimension>
                <DimensionDisplayName>MASS PER LENGTH TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
    <ECClass typeName="YOUNGS_MODULUS" displayLabel="YOUNGS MODULUS" isDomainClass="True">
        <BaseClass>STRESS</BaseClass>
        <ECCustomAttributes>
            <KindOfQuantity_Attributes xmlns="Unit_Attributes.01.00">
                <DisplayName>YOUNGS MODULUS</DisplayName>
                <Description />
                <Dimension>M_PER_L_T2</Dimension>
                <DimensionDisplayName>MASS PER LENGTH TIME SQUARED</DimensionDisplayName>
                <DimensionalDescription>kg*m^-1*s^-2</DimensionalDescription>
            </KindOfQuantity_Attributes>
        </ECCustomAttributes>
    </ECClass>
</ECSchema>