Package org.djunits.quantity
Class ElectricPotential
java.lang.Object
java.lang.Number
org.djunits.quantity.def.Quantity<ElectricPotential,ElectricPotential.Unit>
org.djunits.quantity.ElectricPotential
- All Implemented Interfaces:
Serializable,Comparable<ElectricPotential>,Additive<ElectricPotential>,Scalable<ElectricPotential>,Value<ElectricPotential.Unit,ElectricPotential>
ElectricPotential is the difference in electric potential energy per unit of electric charge between two points in a static
electric field.
Copyright (c) 2025-2026 Delft University of Technology, Jaffalaan 5, 2628 BX Delft, the Netherlands. All rights reserved. See for project information https://djunits.org. The DJUNITS project is distributed under a three-clause BSD-style license.
- Author:
- Alexander Verbraeck
- See Also:
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Nested Class Summary
Nested ClassesModifier and TypeClassDescriptionstatic classElectricPotential.Unit encodes the units of electric potential (difference) -
Field Summary
FieldsModifier and TypeFieldDescriptionstatic final ElectricPotentialConstant with value NaN.static final ElectricPotentialConstant with value -MAX_VALUE.static final ElectricPotentialConstant with value NEGATIVE_INFINITY.static final ElectricPotentialConstant with value one.static final ElectricPotentialConstant with value MAX_VALUE.static final ElectricPotentialConstant with value POSITIVE_INFINITY.static final ElectricPotentialConstant with value zero. -
Constructor Summary
ConstructorsConstructorDescriptionElectricPotential(double value, String abbreviation) Instantiate a ElectricPotential quantity with a unit, expressed as a String.ElectricPotential(double value, ElectricPotential.Unit unit) Instantiate a ElectricPotential quantity with a unit.Construct ElectricPotential quantity. -
Method Summary
Modifier and TypeMethodDescriptionfinal ElectricCurrentCalculate the division of ElectricPotential and ElectricalResistance, which results in a ElectricCurrent scalar.final ElectricalResistanceCalculate the division of ElectricPotential and ElectricCurrent, which results in a ElectricalResistance scalar.final DimensionlessCalculate the division of ElectricPotential and ElectricPotential, which results in a Dimensionless quantity.instantiate(double si) Instantiate a quantity with an SI or base value.final PowerCalculate the multiplication of ElectricPotential and ElectricCurrent, which results in a Power scalar.static ElectricPotentialReturns a ElectricPotential based on a value and the textual representation of the unit, which can be localized.static ElectricPotentialofSi(double si) Return a ElectricPotential instance based on an SI value.siUnit()Return the SI unit of this quantity.static ElectricPotentialReturns a ElectricPotential representation of a textual representation of a value with a unit.Methods inherited from class org.djunits.quantity.def.Quantity
abs, add, as, compareTo, divide, doubleValue, eq, eq0, equals, floatValue, format, format, ge, ge0, getDisplayUnit, getInUnit, getInUnit, getName, gt, gt0, hashCode, instantiate, interpolate, intValue, isRelative, le, le0, longValue, lt, lt0, max, mean, min, multiply, ne, ne0, negate, of, product, reciprocal, scaleBy, setDisplayUnit, si, subtract, sum, toDisplayString, toDisplayString, toString, toString, toString, toString, toStringSIPrefixed, toStringSIPrefixed, toTextualString, toTextualString, valueOfMethods inherited from class java.lang.Number
byteValue, shortValueMethods inherited from class java.lang.Object
clone, finalize, getClass, notify, notifyAll, wait, wait, waitMethods inherited from interface org.djunits.value.Value
isAbsolute, setDisplayUnit
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Field Details
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ZERO
Constant with value zero. -
ONE
Constant with value one. -
NaN
Constant with value NaN. -
POSITIVE_INFINITY
Constant with value POSITIVE_INFINITY. -
NEGATIVE_INFINITY
Constant with value NEGATIVE_INFINITY. -
POS_MAXVALUE
Constant with value MAX_VALUE. -
NEG_MAXVALUE
Constant with value -MAX_VALUE.
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Constructor Details
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ElectricPotential
Instantiate a ElectricPotential quantity with a unit.- Parameters:
value- the value, expressed in the unitunit- the unit in which the value is expressed
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ElectricPotential
Instantiate a ElectricPotential quantity with a unit, expressed as a String.- Parameters:
value- the value, expressed in the unitabbreviation- the String abbreviation of the unit in which the value is expressed
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ElectricPotential
Construct ElectricPotential quantity.- Parameters:
value- Scalar from which to construct this instance
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Method Details
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ofSi
Return a ElectricPotential instance based on an SI value.- Parameters:
si- the si value- Returns:
- the ElectricPotential instance based on an SI value
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instantiate
Description copied from class:QuantityInstantiate a quantity with an SI or base value.- Specified by:
instantiatein classQuantity<ElectricPotential,ElectricPotential.Unit> - Parameters:
si- the value expressed in the base (SI) unit- Returns:
- a quantity with the given SI-value and base (SI) unit
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siUnit
Description copied from class:QuantityReturn the SI unit of this quantity.- Overrides:
siUnitin classQuantity<ElectricPotential,ElectricPotential.Unit> - Returns:
- the SI unit of this quantity
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valueOf
Returns a ElectricPotential representation of a textual representation of a value with a unit. The String representation that can be parsed is the double value in the unit, followed by a localized or English abbreviation of the unit. Spaces are allowed, but not required, between the value and the unit.- Parameters:
text- the textual representation to parse into a ElectricPotential- Returns:
- the Scalar representation of the value in its unit
- Throws:
IllegalArgumentException- when the text cannot be parsedNullPointerException- when the text argument is null
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of
Returns a ElectricPotential based on a value and the textual representation of the unit, which can be localized.- Parameters:
value- the value to useunitString- the textual representation of the unit- Returns:
- the Scalar representation of the value in its unit
- Throws:
IllegalArgumentException- when the unit cannot be parsed or is incorrectNullPointerException- when the unitString argument is null
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divide
Calculate the division of ElectricPotential and ElectricPotential, which results in a Dimensionless quantity.- Parameters:
v- quantity- Returns:
- quantity as a division of ElectricPotential and ElectricPotential
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multiply
Calculate the multiplication of ElectricPotential and ElectricCurrent, which results in a Power scalar.- Parameters:
v- scalar- Returns:
- scalar as a multiplication of ElectricPotential and ElectricCurrent
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divide
Calculate the division of ElectricPotential and ElectricCurrent, which results in a ElectricalResistance scalar.- Parameters:
v- scalar- Returns:
- scalar as a division of ElectricPotential and ElectricCurrent
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divide
Calculate the division of ElectricPotential and ElectricalResistance, which results in a ElectricCurrent scalar.- Parameters:
v- scalar- Returns:
- scalar as a division of ElectricPotential and ElectricalResistance
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