public class Mass extends TypedDoubleScalarRel<MassUnit,Mass>
DoubleScalar.Rel<MassUnit> value = new DoubleScalar.Rel<MassUnit>(100.0, MassUnit.SI);we can now write:
Mass value = new Mass(100.0, MassUnit.SI);The compiler will automatically recognize which units belong to which quantity, and whether the quantity type and the unit used are compatible.
Copyright (c) 2013-2016 Delft University of Technology, PO Box 5, 2600 AA, Delft, the Netherlands. All rights reserved.
BSD-style license. See DJUNITS License.
$LastChangedDate: 2016-05-28 14:25:52 +0200 (Sat, 28 May 2016) $, @version $Revision: 202 $, by $Author: averbraeck $,
initial version Sep 5, 2015
DoubleScalar.Abs<U extends Unit<U>>, DoubleScalar.Rel<U extends Unit<U>>| Modifier and Type | Field and Description |
|---|---|
static Mass |
ZERO
constant with value zero.
|
si| Constructor and Description |
|---|
Mass(double value,
MassUnit unit)
Construct Mass scalar.
|
Mass(Mass value)
Construct Mass scalar.
|
| Modifier and Type | Method and Description |
|---|---|
Volume |
divideBy(Density v)
Calculate the division of Mass and Density, which results in a Volume scalar.
|
FlowMass |
divideBy(Duration v)
Calculate the division of Mass and Duration, which results in a FlowMass scalar.
|
Duration |
divideBy(FlowMass v)
Calculate the division of Mass and FlowMass, which results in a Duration scalar.
|
Dimensionless |
divideBy(Mass v)
Calculate the division of Mass and Mass, which results in a Dimensionless scalar.
|
Density |
divideBy(Volume v)
Calculate the division of Mass and Volume, which results in a Density scalar.
|
protected Mass |
instantiateTypeRel(double value,
MassUnit unit)
Construct a new Relative Immutable DoubleScalar of the right type.
|
static Mass |
interpolate(Mass zero,
Mass one,
double ratio)
Interpolate between two values.
|
static Mass |
max(Mass r1,
Mass r2)
Return the maximum value of two relative scalars.
|
static Mass |
max(Mass r1,
Mass r2,
Mass... rn)
Return the maximum value of more than two relative scalars.
|
static Mass |
min(Mass r1,
Mass r2)
Return the minimum value of two relative scalars.
|
static Mass |
min(Mass r1,
Mass r2,
Mass... rn)
Return the minimum value of more than two relative scalars.
|
Force |
multiplyBy(Acceleration v)
Calculate the multiplication of Mass and Acceleration, which results in a Force scalar.
|
FlowMass |
multiplyBy(Frequency v)
Calculate the multiplication of Mass and Frequency, which results in a FlowMass scalar.
|
Money |
multiplyBy(MoneyPerMass v)
Calculate the multiplication of Mass and MoneyPerMass, which results in a Money scalar.
|
abs, ceil, divideBy, floor, minus, multiplyBy, plus, rint, roundcompareTo, eq, ge, getSI, gt, le, lt, minus, ne, plusdivide, divide, doubleValue, equals, floatValue, getInUnit, getInUnit, hashCode, interpolate, interpolate, intValue, longValue, minus, minus, minus, multiply, multiply, plus, plus, plus, toString, toString, toString, toStringexpressAsSIUnit, expressAsSpecifiedUnit, getUnit, isAbsolute, isRelativebyteValue, shortValueclone, finalize, getClass, notify, notifyAll, wait, wait, waitDIV, MULT, POWpublic static final Mass ZERO
public Mass(double value,
MassUnit unit)
value - double valueunit - unit for the double valuepublic Mass(Mass value)
value - Scalar from which to construct this instanceprotected final Mass instantiateTypeRel(double value, MassUnit unit)
instantiateTypeRel in class TypedDoubleScalarRel<MassUnit,Mass>value - the double valueunit - the unitpublic static Mass interpolate(Mass zero, Mass one, double ratio)
zero - the low valueone - the high valueratio - the ratio between 0 and 1, inclusivepublic static Mass max(Mass r1, Mass r2)
r1 - the first scalarr2 - the second scalarpublic static Mass max(Mass r1, Mass r2, Mass... rn)
r1 - the first scalarr2 - the second scalarrn - the other scalarspublic static Mass min(Mass r1, Mass r2)
r1 - the first scalarr2 - the second scalarpublic static Mass min(Mass r1, Mass r2, Mass... rn)
r1 - the first scalarr2 - the second scalarrn - the other scalarspublic final Dimensionless divideBy(Mass v)
v - Mass scalarpublic final Duration divideBy(FlowMass v)
v - Mass scalarpublic final FlowMass divideBy(Duration v)
v - Mass scalarpublic final Force multiplyBy(Acceleration v)
v - Mass scalarpublic final FlowMass multiplyBy(Frequency v)
v - Mass scalarpublic final Volume divideBy(Density v)
v - Mass scalarpublic final Density divideBy(Volume v)
v - Mass scalarpublic final Money multiplyBy(MoneyPerMass v)
v - Mass scalarCopyright © 2015–2016 Delft University of Technology. All rights reserved.