Uses of Class
org.djunits.value.vdouble.scalar.base.DoubleScalarRel
Packages that use DoubleScalarRel
Package
Description
Interfaces, abstract classes and utilities for DoubleMatrix.
Double Scalar storage and calculations with units, absolute/relative.Note: All code in this package is generated.
Interfaces, abstract classes and utilities for DoubleScalar.
Interfaces, abstract classes and utilities for DoubleVector.
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Uses of DoubleScalarRel in org.djunits.value.vdouble.matrix.base
Classes in org.djunits.value.vdouble.matrix.base with type parameters of type DoubleScalarRelModifier and TypeClassDescriptionclassDoubleMatrixRel<U extends Unit<U>,S extends DoubleScalarRel<U, S>, RV extends DoubleVectorRel<U, S, RV>, RM extends DoubleMatrixRel<U, S, RV, RM>> DoubleMatrixRel.java. -
Uses of DoubleScalarRel in org.djunits.value.vdouble.scalar
Subclasses of DoubleScalarRel in org.djunits.value.vdouble.scalarModifier and TypeClassDescriptionclassEasy access methods for the AbsorbedDose DoubleScalar, which is relative by definition.classEasy access methods for the Acceleration DoubleScalar, which is relative by definition.classEasy access methods for the AmountOfSubstance DoubleScalar, which is relative by definition.classEasy access methods for the Relative Angle DoubleScalar.classEasy access methods for the AngularAcceleration DoubleScalar, which is relative by definition.classEasy access methods for the AngularVelocity DoubleScalar, which is relative by definition.classEasy access methods for the Area DoubleScalar, which is relative by definition.classEasy access methods for the CatalyticActivity DoubleScalar, which is relative by definition.classEasy access methods for the Density DoubleScalar, which is relative by definition.classEasy access methods for the Dimensionless DoubleScalar, which is relative by definition.classEasy access methods for the Relative Duration DoubleScalar.classEasy access methods for the ElectricalCapacitance DoubleScalar, which is relative by definition.classEasy access methods for the ElectricalCharge DoubleScalar, which is relative by definition.classEasy access methods for the ElectricalConductance DoubleScalar, which is relative by definition.classEasy access methods for the ElectricalCurrent DoubleScalar, which is relative by definition.classEasy access methods for the ElectricalInductance DoubleScalar, which is relative by definition.classEasy access methods for the ElectricalPotential DoubleScalar, which is relative by definition.classEasy access methods for the ElectricalResistance DoubleScalar, which is relative by definition.classEasy access methods for the Energy DoubleScalar, which is relative by definition.classEasy access methods for the EquivalentDose DoubleScalar, which is relative by definition.classEasy access methods for the FlowMass DoubleScalar, which is relative by definition.classEasy access methods for the FlowVolume DoubleScalar, which is relative by definition.classEasy access methods for the Force DoubleScalar, which is relative by definition.classEasy access methods for the Frequency DoubleScalar, which is relative by definition.classEasy access methods for the Illuminance DoubleScalar, which is relative by definition.classEasy access methods for the Relative Length DoubleScalar.classEasy access methods for the LinearDensity DoubleScalar, which is relative by definition.classEasy access methods for the LuminousFlux DoubleScalar, which is relative by definition.classEasy access methods for the LuminousIntensity DoubleScalar, which is relative by definition.classEasy access methods for the MagneticFlux DoubleScalar, which is relative by definition.classEasy access methods for the MagneticFluxDensity DoubleScalar, which is relative by definition.classEasy access methods for the Mass DoubleScalar, which is relative by definition.classEasy access methods for the Momentum DoubleScalar, which is relative by definition.classEasy access methods for the Power DoubleScalar, which is relative by definition.classEasy access methods for the Pressure DoubleScalar, which is relative by definition.classEasy access methods for the RadioActivity DoubleScalar, which is relative by definition.classEasy access methods for the generic Relative SI DoubleScalar.classEasy access methods for the SolidAngle DoubleScalar, which is relative by definition.classEasy access methods for the Speed DoubleScalar, which is relative by definition.classEasy access methods for the Relative Temperature DoubleScalar.classEasy access methods for the Torque DoubleScalar, which is relative by definition.classEasy access methods for the Volume DoubleScalar, which is relative by definition.Methods in org.djunits.value.vdouble.scalar with type parameters of type DoubleScalarRelModifier and TypeMethodDescriptionfinal <U extends Unit<U>,S extends DoubleScalarRel<U, S>>
SSIScalar.as(U displayUnit) Return the current scalar transformed to a scalar in the given unit.Methods in org.djunits.value.vdouble.scalar with parameters of type DoubleScalarRelModifier and TypeMethodDescriptionstatic AbsorbedDoseAbsorbedDose.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type AbsorbedDose.static AccelerationAcceleration.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Acceleration.static AmountOfSubstanceAmountOfSubstance.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type AmountOfSubstance.static AngleAngle.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Angle.static AngularAccelerationAngularAcceleration.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type AngularAcceleration.static AngularVelocityAngularVelocity.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type AngularVelocity.static AreaArea.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Area.static CatalyticActivityCatalyticActivity.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type CatalyticActivity.static DensityDensity.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Density.static DimensionlessDimensionless.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Dimensionless.static DurationDuration.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Duration.static ElectricalCapacitanceElectricalCapacitance.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type ElectricalCapacitance.static ElectricalChargeElectricalCharge.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type ElectricalCharge.static ElectricalConductanceElectricalConductance.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type ElectricalConductance.static ElectricalCurrentElectricalCurrent.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type ElectricalCurrent.static ElectricalInductanceElectricalInductance.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type ElectricalInductance.static ElectricalPotentialElectricalPotential.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type ElectricalPotential.static ElectricalResistanceElectricalResistance.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type ElectricalResistance.static EnergyEnergy.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Energy.static EquivalentDoseEquivalentDose.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type EquivalentDose.static FlowMassFlowMass.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type FlowMass.static FlowVolumeFlowVolume.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type FlowVolume.static ForceForce.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Force.static FrequencyFrequency.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Frequency.static IlluminanceIlluminance.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Illuminance.static LengthLength.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Length.static LinearDensityLinearDensity.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type LinearDensity.static LuminousFluxLuminousFlux.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type LuminousFlux.static LuminousIntensityLuminousIntensity.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type LuminousIntensity.static MagneticFluxMagneticFlux.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type MagneticFlux.static MagneticFluxDensityMagneticFluxDensity.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type MagneticFluxDensity.static MassMass.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Mass.static MomentumMomentum.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Momentum.static PowerPower.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Power.static PressurePressure.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Pressure.static RadioActivityRadioActivity.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type RadioActivity.static SIScalarSIScalar.divide(DoubleScalarRel<?, ?> left, DoubleScalarRel<?, ?> right) Divide two values; the result is a new instance with a different (existing or generated) SI unit.static SolidAngleSolidAngle.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type SolidAngle.static SpeedSpeed.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Speed.static TemperatureTemperature.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Temperature.static TorqueTorque.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Torque.static VolumeVolume.divide(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Divide two scalars that result in a scalar of type Volume.static AbsorbedDoseAbsorbedDose.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type AbsorbedDose.static AccelerationAcceleration.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Acceleration.static AmountOfSubstanceAmountOfSubstance.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type AmountOfSubstance.static AngleAngle.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Angle.static AngularAccelerationAngularAcceleration.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type AngularAcceleration.static AngularVelocityAngularVelocity.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type AngularVelocity.static AreaArea.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Area.static CatalyticActivityCatalyticActivity.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type CatalyticActivity.static DensityDensity.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Density.static DimensionlessDimensionless.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Dimensionless.static DurationDuration.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Duration.static ElectricalCapacitanceElectricalCapacitance.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type ElectricalCapacitance.static ElectricalChargeElectricalCharge.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type ElectricalCharge.static ElectricalConductanceElectricalConductance.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type ElectricalConductance.static ElectricalCurrentElectricalCurrent.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type ElectricalCurrent.static ElectricalInductanceElectricalInductance.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type ElectricalInductance.static ElectricalPotentialElectricalPotential.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type ElectricalPotential.static ElectricalResistanceElectricalResistance.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type ElectricalResistance.static EnergyEnergy.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Energy.static EquivalentDoseEquivalentDose.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type EquivalentDose.static FlowMassFlowMass.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type FlowMass.static FlowVolumeFlowVolume.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type FlowVolume.static ForceForce.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Force.static FrequencyFrequency.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Frequency.static IlluminanceIlluminance.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Illuminance.static LengthLength.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Length.static LinearDensityLinearDensity.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type LinearDensity.static LuminousFluxLuminousFlux.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type LuminousFlux.static LuminousIntensityLuminousIntensity.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type LuminousIntensity.static MagneticFluxMagneticFlux.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type MagneticFlux.static MagneticFluxDensityMagneticFluxDensity.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type MagneticFluxDensity.static MassMass.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Mass.static MomentumMomentum.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Momentum.static PowerPower.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Power.static PressurePressure.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Pressure.static RadioActivityRadioActivity.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type RadioActivity.static SIScalarSIScalar.multiply(DoubleScalarRel<?, ?> left, DoubleScalarRel<?, ?> right) Multiply two values; the result is a new instance with a different (existing or generated) SI unit.static SolidAngleSolidAngle.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type SolidAngle.static SpeedSpeed.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Speed.static TemperatureTemperature.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Temperature.static TorqueTorque.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Torque.static VolumeVolume.multiply(DoubleScalarRel<?, ?> scalar1, DoubleScalarRel<?, ?> scalar2) Multiply two scalars that result in a scalar of type Volume. -
Uses of DoubleScalarRel in org.djunits.value.vdouble.scalar.base
Classes in org.djunits.value.vdouble.scalar.base with type parameters of type DoubleScalarRelModifier and TypeClassDescriptionclassDoubleScalarRel<U extends Unit<U>,R extends DoubleScalarRel<U, R>> The typed, abstract DoubleScalarRel class that forms the basis of all DoubleScalar definitions and extensions.
Note: A relative scalar class can implement the toAbs() method if it has an absolute equivalent.Subclasses of DoubleScalarRel in org.djunits.value.vdouble.scalar.baseModifier and TypeClassDescriptionclassDoubleScalarRelWithAbs<AU extends AbsoluteLinearUnit<AU,RU>, A extends DoubleScalarAbs<AU, A, RU, R>, RU extends Unit<RU>, R extends DoubleScalarRelWithAbs<AU, A, RU, R>> The typed, abstract DoubleScalarRelWithAbs class that forms the basis of the relative DoubleScalars suck as Duration that have an absolute equivalent such as Time.Methods in org.djunits.value.vdouble.scalar.base that return DoubleScalarRelModifier and TypeMethodDescriptionDoubleScalarRel<?,?> DoubleScalarRel.reciprocal()Create the reciprocal of this scalar with the correct dimensions.Methods in org.djunits.value.vdouble.scalar.base with parameters of type DoubleScalarRelModifier and TypeMethodDescriptionDoubleScalarRel.divide(DoubleScalarRel<?, ?> otherScalar) Divide this scalar by another scalar and create a new scalar.DoubleScalarRel.times(DoubleScalarRel<?, ?> otherScalar) Multiply this scalar by another scalar and create a new scalar. -
Uses of DoubleScalarRel in org.djunits.value.vdouble.vector.base
Classes in org.djunits.value.vdouble.vector.base with type parameters of type DoubleScalarRelModifier and TypeClassDescriptionclassDoubleVectorRel<U extends Unit<U>,S extends DoubleScalarRel<U, S>, RV extends DoubleVectorRel<U, S, RV>> AbstractMutableDoubleVectorRel.java.Methods in org.djunits.value.vdouble.vector.base with type parameters of type DoubleScalarRelModifier and TypeMethodDescriptionfinal <UT extends Unit<UT>,ST extends DoubleScalarRel<UT, ST>, VT extends DoubleVectorRel<UT, ST, VT>>
SIVectorDoubleVectorRel.divide(VT rel) Divide this Relative value by a Relative value for a vector or matrix.final <UT extends Unit<UT>,ST extends DoubleScalarRel<UT, ST>, VT extends DoubleVectorRel<UT, ST, VT> & Relative<UT, VT>>
SIVectorDoubleVectorRel.times(VT rel) Multiply a Relative value with this Relative value for a vector or matrix.