Uses of Class
org.djunits.quantity.ElectricPotential
Packages that use ElectricPotential
Package
Description
The quantity package stores information about quantities with their units.
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Uses of ElectricPotential in org.djunits.quantity
Fields in org.djunits.quantity declared as ElectricPotentialModifier and TypeFieldDescriptionstatic final ElectricPotentialElectricPotential.NaNConstant with value NaN.static final ElectricPotentialElectricPotential.NEG_MAXVALUEConstant with value -MAX_VALUE.static final ElectricPotentialElectricPotential.NEGATIVE_INFINITYConstant with value NEGATIVE_INFINITY.static final ElectricPotentialElectricPotential.ONEConstant with value one.static final ElectricPotentialElectricPotential.POS_MAXVALUEConstant with value MAX_VALUE.static final ElectricPotentialElectricPotential.POSITIVE_INFINITYConstant with value POSITIVE_INFINITY.static final ElectricPotentialElectricPotential.ZEROConstant with value zero.Methods in org.djunits.quantity that return ElectricPotentialModifier and TypeMethodDescriptionElectricCharge.divide(ElectricalCapacitance v) Calculate the division of ElectricCharge and ElectricalCapacitance, which results in a ElectricPotential scalar.ElectricCurrent.divide(ElectricalConductance v) Calculate the division of ElectricalCurrent and ElectricalConductance, which results in a ElectricalPotential scalar.Calculate the division of MagneticFlux and Duration, which results in a ElectricPotential scalar.Power.divide(ElectricCurrent v) Calculate the division of Power and ElectricCurrent, which results in a ElectricPotential scalar.ElectricPotential.instantiateSi(double siValue, UnitInterface<ElectricPotential> displayUnit) ElectricalResistance.multiply(ElectricCurrent v) Calculate the multiplication of ElectricalResistance and ElectricCurrent, which results in a ElectricPotential scalar.ElectricCurrent.multiply(ElectricalResistance v) Calculate the multiplication of ElectricalCurrent and ElectricalResistance, which results in a ElectricalPotential scalar.static ElectricPotentialReturns a ElectricPotential based on a value and the textual representation of the unit, which can be localized.static ElectricPotentialElectricPotential.of(double valueInUnit, ElectricPotential.Unit unit) Returns a ElectricPotential based on a value expressed in the unit.static ElectricPotentialElectricPotential.ofSi(double si) Return a ElectricPotential instance based on an SI value.static ElectricPotentialElectricPotential.ofSi(double siValue, ElectricPotential.Unit displayUnit) Instantiate a ElectricPotential quantity with an SI or base value and a display unit.ElectricPotential.Unit.ofSi(double si, UnitInterface<ElectricPotential> displayUnit) static ElectricPotentialReturns a ElectricPotential representation of a textual representation of a value with a unit.Methods in org.djunits.quantity with parameters of type ElectricPotentialModifier and TypeMethodDescriptionElectricCharge.divide(ElectricPotential v) Calculate the division of ElectricCharge and ElectricPotential, which results in a ElectricalCapacitance scalar.ElectricCurrent.divide(ElectricPotential v) Calculate the division of ElectricalCurrent and ElectricalPotential, which results in a ElectricalConductance scalar.ElectricPotential.divide(ElectricPotential v) Calculate the division of ElectricPotential and ElectricPotential, which results in a Dimensionless quantity.MagneticFlux.divide(ElectricPotential v) Calculate the division of MagneticFlux and ElectricPotential, which results in a Duration scalar.Power.divide(ElectricPotential v) Calculate the division of Power and ElectricPotential, which results in a ElectricCurrent scalar.Duration.multiply(ElectricPotential v) Calculate the multiplication of Duration and ElectricPotential, which results in a MagneticFlux scalar.ElectricalCapacitance.multiply(ElectricPotential v) Calculate the multiplication of ElectricalCapacitance and ElectricPotential, which results in a ElectricCharge scalar.ElectricalConductance.multiply(ElectricPotential v) Calculate the multiplication of ElectricalConductance and ElectricPotential, which results in a ElectricCurrent scalar.ElectricCurrent.multiply(ElectricPotential v) Calculate the multiplication of ElectricalCurrent and ElectricalPotential, which results in a Power scalar.Method parameters in org.djunits.quantity with type arguments of type ElectricPotentialModifier and TypeMethodDescriptionElectricPotential.instantiateSi(double siValue, UnitInterface<ElectricPotential> displayUnit) ElectricPotential.Unit.ofSi(double si, UnitInterface<ElectricPotential> displayUnit)