1 package org.djunits.value.vdouble.scalar;
2
3 import java.util.regex.Matcher;
4
5 import org.djunits.unit.AccelerationUnit;
6 import org.djunits.unit.AngleSolidUnit;
7 import org.djunits.unit.AngleUnit;
8 import org.djunits.unit.AreaUnit;
9 import org.djunits.unit.DensityUnit;
10 import org.djunits.unit.DimensionlessUnit;
11 import org.djunits.unit.DurationUnit;
12 import org.djunits.unit.ElectricalChargeUnit;
13 import org.djunits.unit.ElectricalCurrentUnit;
14 import org.djunits.unit.ElectricalPotentialUnit;
15 import org.djunits.unit.ElectricalResistanceUnit;
16 import org.djunits.unit.EnergyUnit;
17 import org.djunits.unit.FlowMassUnit;
18 import org.djunits.unit.FlowVolumeUnit;
19 import org.djunits.unit.ForceUnit;
20 import org.djunits.unit.FrequencyUnit;
21 import org.djunits.unit.LengthUnit;
22 import org.djunits.unit.LinearDensityUnit;
23 import org.djunits.unit.MassUnit;
24 import org.djunits.unit.MoneyPerAreaUnit;
25 import org.djunits.unit.MoneyPerDurationUnit;
26 import org.djunits.unit.MoneyPerEnergyUnit;
27 import org.djunits.unit.MoneyPerLengthUnit;
28 import org.djunits.unit.MoneyPerMassUnit;
29 import org.djunits.unit.MoneyPerVolumeUnit;
30 import org.djunits.unit.MoneyUnit;
31 import org.djunits.unit.PowerUnit;
32 import org.djunits.unit.PressureUnit;
33 import org.djunits.unit.SpeedUnit;
34 import org.djunits.unit.TemperatureUnit;
35 import org.djunits.unit.TorqueUnit;
36 import org.djunits.unit.Unit;
37 import org.djunits.unit.VolumeUnit;
38 import org.djunits.value.MathFunctionsDimensionless;
39
40 /**
41 * Easy access methods for the Dimensionless DoubleScalar, which is relative by definition. Instead of:
42 *
43 * <pre>
44 * DoubleScalar.Rel<DimensionlessUnit> value = new DoubleScalar.Rel<DimensionlessUnit>(100.0, DimensionlessUnit.SI);
45 * </pre>
46 *
47 * we can now write:
48 *
49 * <pre>
50 * Dimensionless value = new Dimensionless(100.0, DimensionlessUnit.SI);
51 * </pre>
52 *
53 * The compiler will automatically recognize which units belong to which quantity, and whether the quantity type and the unit
54 * used are compatible.
55 * <p>
56 * Copyright (c) 2013-2019 Delft University of Technology, PO Box 5, 2600 AA, Delft, the Netherlands. All rights reserved. <br>
57 * BSD-style license. See <a href="http://djunits.org/docs/license.html">DJUNITS License</a>.
58 * <p>
59 * $LastChangedDate: 2019-03-03 00:53:50 +0100 (Sun, 03 Mar 2019) $, @version $Revision: 349 $, by $Author: averbraeck $,
60 * initial version Sep 5, 2015 <br>
61 * @author <a href="http://www.tbm.tudelft.nl/averbraeck">Alexander Verbraeck</a>
62 * @author <a href="http://www.tudelft.nl/pknoppers">Peter Knoppers</a>
63 */
64 public class Dimensionless extends AbstractDoubleScalarRel<DimensionlessUnit, Dimensionless>
65 implements MathFunctionsDimensionless<Dimensionless>
66 {
67 /** */
68 private static final long serialVersionUID = 20150905L;
69
70 /** constant with value zero. */
71 public static final Dimensionless ZERO = new Dimensionless(0.0, DimensionlessUnit.SI);
72
73 /** constant with value NaN. */
74 @SuppressWarnings("checkstyle:constantname")
75 public static final Dimensionless NaN = new Dimensionless(Double.NaN, DimensionlessUnit.SI);
76
77 /** constant with value POSITIVE_INFINITY. */
78 public static final Dimensionless POSITIVE_INFINITY = new Dimensionless(Double.POSITIVE_INFINITY, DimensionlessUnit.SI);
79
80 /** constant with value NEGATIVE_INFINITY. */
81 public static final Dimensionless NEGATIVE_INFINITY = new Dimensionless(Double.NEGATIVE_INFINITY, DimensionlessUnit.SI);
82
83 /** constant with value MAX_VALUE. */
84 public static final Dimensionless POS_MAXVALUE = new Dimensionless(Double.MAX_VALUE, DimensionlessUnit.SI);
85
86 /** constant with value -MAX_VALUE. */
87 public static final Dimensionless NEG_MAXVALUE = new Dimensionless(-Double.MAX_VALUE, DimensionlessUnit.SI);
88
89 /**
90 * Construct Dimensionless scalar.
91 * @param value double value
92 * @param unit unit for the double value
93 */
94 public Dimensionless(final double value, final DimensionlessUnit unit)
95 {
96 super(value, unit);
97 }
98
99 /**
100 * Construct Dimensionless scalar.
101 * @param value Scalar from which to construct this instance
102 */
103 public Dimensionless(final Dimensionless value)
104 {
105 super(value);
106 }
107
108 /** {@inheritDoc} */
109 @Override
110 public final Dimensionless instantiateRel(final double value, final DimensionlessUnit unit)
111 {
112 return new Dimensionless(value, unit);
113 }
114
115 /**
116 * Construct Dimensionless scalar.
117 * @param value double value in SI units
118 * @return the new scalar with the SI value
119 */
120 public static final Dimensionless createSI(final double value)
121 {
122 return new Dimensionless(value, DimensionlessUnit.SI);
123 }
124
125 /**
126 * Interpolate between two values.
127 * @param zero the low value
128 * @param one the high value
129 * @param ratio the ratio between 0 and 1, inclusive
130 * @return a Scalar at the ratio between
131 */
132 public static Dimensionless interpolate(final Dimensionless zero, final Dimensionless one, final double ratio)
133 {
134 return new Dimensionless(zero.getInUnit() * (1 - ratio) + one.getInUnit(zero.getUnit()) * ratio, zero.getUnit());
135 }
136
137 /**
138 * Return the maximum value of two relative scalars.
139 * @param r1 the first scalar
140 * @param r2 the second scalar
141 * @return the maximum value of two relative scalars
142 */
143 public static Dimensionless max(final Dimensionless r1, final Dimensionless r2)
144 {
145 return (r1.gt(r2)) ? r1 : r2;
146 }
147
148 /**
149 * Return the maximum value of more than two relative scalars.
150 * @param r1 the first scalar
151 * @param r2 the second scalar
152 * @param rn the other scalars
153 * @return the maximum value of more than two relative scalars
154 */
155 public static Dimensionless max(final Dimensionless r1, final Dimensionless r2, final Dimensionless... rn)
156 {
157 Dimensionless maxr = (r1.gt(r2)) ? r1 : r2;
158 for (Dimensionless r : rn)
159 {
160 if (r.gt(maxr))
161 {
162 maxr = r;
163 }
164 }
165 return maxr;
166 }
167
168 /**
169 * Return the minimum value of two relative scalars.
170 * @param r1 the first scalar
171 * @param r2 the second scalar
172 * @return the minimum value of two relative scalars
173 */
174 public static Dimensionless min(final Dimensionless r1, final Dimensionless r2)
175 {
176 return (r1.lt(r2)) ? r1 : r2;
177 }
178
179 /**
180 * Return the minimum value of more than two relative scalars.
181 * @param r1 the first scalar
182 * @param r2 the second scalar
183 * @param rn the other scalars
184 * @return the minimum value of more than two relative scalars
185 */
186 public static Dimensionless min(final Dimensionless r1, final Dimensionless r2, final Dimensionless... rn)
187 {
188 Dimensionless minr = (r1.lt(r2)) ? r1 : r2;
189 for (Dimensionless r : rn)
190 {
191 if (r.lt(minr))
192 {
193 minr = r;
194 }
195 }
196 return minr;
197 }
198
199 /**
200 * Returns a Dimensionless representation of a textual representation of a value with a unit. The String representation that
201 * can be parsed is the double value in the unit, followed by the official abbreviation of the unit. Spaces are allowed, but
202 * not necessary, between the value and the unit.
203 * @param text String; the textual representation to parse into a Dimensionless
204 * @return the String representation of the value in its unit, followed by the official abbreviation of the unit
205 * @throws IllegalArgumentException when the text cannot be parsed
206 */
207 public static Dimensionless valueOf(final String text) throws IllegalArgumentException
208 {
209 if (text == null || text.length() == 0)
210 {
211 throw new IllegalArgumentException("Error parsing Dimensionless -- null or empty argument");
212 }
213 Matcher matcher = NUMBER_PATTERN.matcher(text);
214 if (matcher.find())
215 {
216 int index = matcher.end();
217 try
218 {
219 String unitString = text.substring(index).trim();
220 String valueString = text.substring(0, index).trim();
221 for (DimensionlessUnit unit : Unit.getUnits(DimensionlessUnit.class))
222 {
223 if (unit.getDefaultLocaleTextualRepresentations().contains(unitString))
224 {
225 double d = Double.parseDouble(valueString);
226 return new Dimensionless(d, unit);
227 }
228 }
229 }
230 catch (Exception exception)
231 {
232 throw new IllegalArgumentException("Error parsing Dimensionless from " + text, exception);
233 }
234 }
235 throw new IllegalArgumentException("Error parsing Dimensionless from " + text);
236 }
237
238 /** {@inheritDoc} */
239 @Override
240 public final Dimensionless acos()
241 {
242 return instantiateRel(Math.acos(getInUnit()), getUnit());
243 }
244
245 /** {@inheritDoc} */
246 @Override
247 public final Dimensionless asin()
248 {
249 return instantiateRel(Math.asin(getInUnit()), getUnit());
250 }
251
252 /** {@inheritDoc} */
253 @Override
254 public final Dimensionless atan()
255 {
256 return instantiateRel(Math.atan(getInUnit()), getUnit());
257 }
258
259 /** {@inheritDoc} */
260 @Override
261 public final Dimensionless cbrt()
262 {
263 return instantiateRel(Math.cbrt(getInUnit()), getUnit());
264 }
265
266 /** {@inheritDoc} */
267 @Override
268 public final Dimensionless cos()
269 {
270 return instantiateRel(Math.cos(getInUnit()), getUnit());
271 }
272
273 /** {@inheritDoc} */
274 @Override
275 public final Dimensionless cosh()
276 {
277 return instantiateRel(Math.cosh(getInUnit()), getUnit());
278 }
279
280 /** {@inheritDoc} */
281 @Override
282 public final Dimensionless exp()
283 {
284 return instantiateRel(Math.exp(getInUnit()), getUnit());
285 }
286
287 /** {@inheritDoc} */
288 @Override
289 public final Dimensionless expm1()
290 {
291 return instantiateRel(Math.expm1(getInUnit()), getUnit());
292 }
293
294 /** {@inheritDoc} */
295 @Override
296 public final Dimensionless log()
297 {
298 return instantiateRel(Math.log(getInUnit()), getUnit());
299 }
300
301 /** {@inheritDoc} */
302 @Override
303 public final Dimensionless log10()
304 {
305 return instantiateRel(Math.log10(getInUnit()), getUnit());
306 }
307
308 /** {@inheritDoc} */
309 @Override
310 public final Dimensionless log1p()
311 {
312 return instantiateRel(Math.log1p(getInUnit()), getUnit());
313 }
314
315 /** {@inheritDoc} */
316 @Override
317 public final Dimensionless pow(final double x)
318 {
319 return instantiateRel(Math.pow(getInUnit(), x), getUnit());
320 }
321
322 /** {@inheritDoc} */
323 @Override
324 public final Dimensionless signum()
325 {
326 return instantiateRel(Math.signum(getInUnit()), getUnit());
327 }
328
329 /** {@inheritDoc} */
330 @Override
331 public final Dimensionless sin()
332 {
333 return instantiateRel(Math.sin(getInUnit()), getUnit());
334 }
335
336 /** {@inheritDoc} */
337 @Override
338 public final Dimensionless sinh()
339 {
340 return instantiateRel(Math.sinh(getInUnit()), getUnit());
341 }
342
343 /** {@inheritDoc} */
344 @Override
345 public final Dimensionless sqrt()
346 {
347 return instantiateRel(Math.sqrt(getInUnit()), getUnit());
348 }
349
350 /** {@inheritDoc} */
351 @Override
352 public final Dimensionless tan()
353 {
354 return instantiateRel(Math.tan(getInUnit()), getUnit());
355 }
356
357 /** {@inheritDoc} */
358 @Override
359 public final Dimensionless tanh()
360 {
361 return instantiateRel(Math.tanh(getInUnit()), getUnit());
362 }
363
364 /** {@inheritDoc} */
365 @Override
366 public final Dimensionless inv()
367 {
368 return instantiateRel(1.0 / getInUnit(), getUnit());
369 }
370
371 /**
372 * Calculate the division of Dimensionless and Dimensionless, which results in a Dimensionless scalar.
373 * @param v Dimensionless scalar
374 * @return Dimensionless scalar as a division of Dimensionless and Dimensionless
375 */
376 public final Dimensionless divideBy(final Dimensionless v)
377 {
378 return new Dimensionless(this.si / v.si, DimensionlessUnit.SI);
379 }
380
381 /**
382 * Calculate the multiplication of Dimensionless and Acceleration, which results in a Acceleration scalar.
383 * @param v Dimensionless scalar
384 * @return Acceleration scalar as a multiplication of Dimensionless and Acceleration
385 */
386 public final Acceleration multiplyBy(final Acceleration v)
387 {
388 return new Acceleration(this.si * v.si, AccelerationUnit.SI);
389 }
390
391 /**
392 * Calculate the multiplication of Dimensionless and Angle, which results in a Angle scalar.
393 * @param v Dimensionless scalar
394 * @return Angle scalar as a multiplication of Dimensionless and Angle
395 */
396 public final Angle multiplyBy(final Angle v)
397 {
398 return new Angle(this.si * v.si, AngleUnit.SI);
399 }
400
401 /**
402 * Calculate the multiplication of Dimensionless and AngleSolid, which results in a AngleSolid scalar.
403 * @param v Dimensionless scalar
404 * @return AngleSolid scalar as a multiplication of Dimensionless and AngleSolid
405 */
406 public final AngleSolid multiplyBy(final AngleSolid v)
407 {
408 return new AngleSolid(this.si * v.si, AngleSolidUnit.SI);
409 }
410
411 /**
412 * Calculate the multiplication of Dimensionless and Area, which results in a Area scalar.
413 * @param v Dimensionless scalar
414 * @return Area scalar as a multiplication of Dimensionless and Area
415 */
416 public final Area multiplyBy(final Area v)
417 {
418 return new Area(this.si * v.si, AreaUnit.SI);
419 }
420
421 /**
422 * Calculate the multiplication of Dimensionless and Density, which results in a Density scalar.
423 * @param v Dimensionless scalar
424 * @return Density scalar as a multiplication of Dimensionless and Density
425 */
426 public final Density multiplyBy(final Density v)
427 {
428 return new Density(this.si * v.si, DensityUnit.SI);
429 }
430
431 /**
432 * Calculate the multiplication of Dimensionless and Dimensionless, which results in a Dimensionless scalar.
433 * @param v Dimensionless scalar
434 * @return Dimensionless scalar as a multiplication of Dimensionless and Dimensionless
435 */
436 public final Dimensionless multiplyBy(final Dimensionless v)
437 {
438 return new Dimensionless(this.si * v.si, DimensionlessUnit.SI);
439 }
440
441 /**
442 * Calculate the multiplication of Dimensionless and ElectricalCharge, which results in a ElectricalCharge scalar.
443 * @param v Dimensionless scalar
444 * @return ElectricalCharge scalar as a multiplication of Dimensionless and ElectricalCharge
445 */
446 public final ElectricalCharge multiplyBy(final ElectricalCharge v)
447 {
448 return new ElectricalCharge(this.si * v.si, ElectricalChargeUnit.SI);
449 }
450
451 /**
452 * Calculate the multiplication of Dimensionless and ElectricalCurrent, which results in a ElectricalCurrent scalar.
453 * @param v Dimensionless scalar
454 * @return ElectricalCurrent scalar as a multiplication of Dimensionless and ElectricalCurrent
455 */
456 public final ElectricalCurrent multiplyBy(final ElectricalCurrent v)
457 {
458 return new ElectricalCurrent(this.si * v.si, ElectricalCurrentUnit.SI);
459 }
460
461 /**
462 * Calculate the multiplication of Dimensionless and ElectricalPotential, which results in a ElectricalPotential scalar.
463 * @param v Dimensionless scalar
464 * @return ElectricalPotential scalar as a multiplication of Dimensionless and ElectricalPotential
465 */
466 public final ElectricalPotential multiplyBy(final ElectricalPotential v)
467 {
468 return new ElectricalPotential(this.si * v.si, ElectricalPotentialUnit.SI);
469 }
470
471 /**
472 * Calculate the multiplication of Dimensionless and ElectricalResistance, which results in a ElectricalResistance scalar.
473 * @param v Dimensionless scalar
474 * @return ElectricalResistance scalar as a multiplication of Dimensionless and ElectricalResistance
475 */
476 public final ElectricalResistance multiplyBy(final ElectricalResistance v)
477 {
478 return new ElectricalResistance(this.si * v.si, ElectricalResistanceUnit.SI);
479 }
480
481 /**
482 * Calculate the multiplication of Dimensionless and Energy, which results in a Energy scalar.
483 * @param v Dimensionless scalar
484 * @return Energy scalar as a multiplication of Dimensionless and Energy
485 */
486 public final Energy multiplyBy(final Energy v)
487 {
488 return new Energy(this.si * v.si, EnergyUnit.SI);
489 }
490
491 /**
492 * Calculate the multiplication of Dimensionless and FlowMass, which results in a FlowMass scalar.
493 * @param v Dimensionless scalar
494 * @return FlowMass scalar as a multiplication of Dimensionless and FlowMass
495 */
496 public final FlowMass multiplyBy(final FlowMass v)
497 {
498 return new FlowMass(this.si * v.si, FlowMassUnit.SI);
499 }
500
501 /**
502 * Calculate the multiplication of Dimensionless and FlowVolume, which results in a FlowVolume scalar.
503 * @param v Dimensionless scalar
504 * @return FlowVolume scalar as a multiplication of Dimensionless and FlowVolume
505 */
506 public final FlowVolume multiplyBy(final FlowVolume v)
507 {
508 return new FlowVolume(this.si * v.si, FlowVolumeUnit.SI);
509 }
510
511 /**
512 * Calculate the multiplication of Dimensionless and Force, which results in a Force scalar.
513 * @param v Dimensionless scalar
514 * @return Force scalar as a multiplication of Dimensionless and Force
515 */
516 public final Force multiplyBy(final Force v)
517 {
518 return new Force(this.si * v.si, ForceUnit.SI);
519 }
520
521 /**
522 * Calculate the multiplication of Dimensionless and Frequency, which results in a Frequency scalar.
523 * @param v Dimensionless scalar
524 * @return Frequency scalar as a multiplication of Dimensionless and Frequency
525 */
526 public final Frequency multiplyBy(final Frequency v)
527 {
528 return new Frequency(this.si * v.si, FrequencyUnit.SI);
529 }
530
531 /**
532 * Calculate the multiplication of Dimensionless and Length, which results in a Length scalar.
533 * @param v Dimensionless scalar
534 * @return Length scalar as a multiplication of Dimensionless and Length
535 */
536 public final Length multiplyBy(final Length v)
537 {
538 return new Length(this.si * v.si, LengthUnit.SI);
539 }
540
541 /**
542 * Calculate the multiplication of Dimensionless and LinearDensity, which results in a LinearDensity scalar.
543 * @param v Dimensionless scalar
544 * @return LinearDensity scalar as a multiplication of Dimensionless and LinearDensity
545 */
546 public final LinearDensity multiplyBy(final LinearDensity v)
547 {
548 return new LinearDensity(this.si * v.si, LinearDensityUnit.SI);
549 }
550
551 /**
552 * Calculate the multiplication of Dimensionless and Mass, which results in a Mass scalar.
553 * @param v Dimensionless scalar
554 * @return Mass scalar as a multiplication of Dimensionless and Mass
555 */
556 public final Mass multiplyBy(final Mass v)
557 {
558 return new Mass(this.si * v.si, MassUnit.SI);
559 }
560
561 /**
562 * Calculate the multiplication of Dimensionless and Money, which results in a Money scalar.
563 * @param v Dimensionless scalar
564 * @return Money scalar as a multiplication of Dimensionless and Money
565 */
566 public final Money multiplyBy(final Money v)
567 {
568 return new Money(this.si * v.si, MoneyUnit.getStandardMoneyUnit());
569 }
570
571 /**
572 * Calculate the multiplication of Dimensionless and MoneyPerArea, which results in a MoneyPerArea scalar.
573 * @param v Dimensionless scalar
574 * @return MoneyPerArea scalar as a multiplication of Dimensionless and MoneyPerArea
575 */
576 public final MoneyPerArea multiplyBy(final MoneyPerArea v)
577 {
578 return new MoneyPerArea(this.si * v.si, MoneyPerAreaUnit.getStandardMoneyPerAreaUnit());
579 }
580
581 /**
582 * Calculate the multiplication of Dimensionless and MoneyPerEnergy, which results in a MoneyPerEnergy scalar.
583 * @param v Dimensionless scalar
584 * @return MoneyPerEnergy scalar as a multiplication of Dimensionless and MoneyPerEnergy
585 */
586 public final MoneyPerEnergy multiplyBy(final MoneyPerEnergy v)
587 {
588 return new MoneyPerEnergy(this.si * v.si, MoneyPerEnergyUnit.getStandardMoneyPerEnergyUnit());
589 }
590
591 /**
592 * Calculate the multiplication of Dimensionless and MoneyPerLength, which results in a MoneyPerLength scalar.
593 * @param v Dimensionless scalar
594 * @return MoneyPerLength scalar as a multiplication of Dimensionless and MoneyPerLength
595 */
596 public final MoneyPerLength multiplyBy(final MoneyPerLength v)
597 {
598 return new MoneyPerLength(this.si * v.si, MoneyPerLengthUnit.getStandardMoneyPerLengthUnit());
599 }
600
601 /**
602 * Calculate the multiplication of Dimensionless and MoneyPerMass, which results in a MoneyPerMass scalar.
603 * @param v Dimensionless scalar
604 * @return MoneyPerMass scalar as a multiplication of Dimensionless and MoneyPerMass
605 */
606 public final MoneyPerMass multiplyBy(final MoneyPerMass v)
607 {
608 return new MoneyPerMass(this.si * v.si, MoneyPerMassUnit.getStandardMoneyPerMassUnit());
609 }
610
611 /**
612 * Calculate the multiplication of Dimensionless and MoneyPerDuration, which results in a MoneyPerDuration scalar.
613 * @param v Dimensionless scalar
614 * @return MoneyPerDuration scalar as a multiplication of Dimensionless and MoneyPerDuration
615 */
616 public final MoneyPerDuration multiplyBy(final MoneyPerDuration v)
617 {
618 return new MoneyPerDuration(this.si * v.si, MoneyPerDurationUnit.getStandardMoneyPerDurationUnit());
619 }
620
621 /**
622 * Calculate the multiplication of Dimensionless and MoneyPerVolume, which results in a MoneyPerVolume scalar.
623 * @param v Dimensionless scalar
624 * @return MoneyPerVolume scalar as a multiplication of Dimensionless and MoneyPerVolume
625 */
626 public final MoneyPerVolume multiplyBy(final MoneyPerVolume v)
627 {
628 return new MoneyPerVolume(this.si * v.si, MoneyPerVolumeUnit.getStandardMoneyPerVolumeUnit());
629 }
630
631 /**
632 * Calculate the multiplication of Dimensionless and Power, which results in a Power scalar.
633 * @param v Dimensionless scalar
634 * @return Power scalar as a multiplication of Dimensionless and Power
635 */
636 public final Power multiplyBy(final Power v)
637 {
638 return new Power(this.si * v.si, PowerUnit.SI);
639 }
640
641 /**
642 * Calculate the multiplication of Dimensionless and Pressure, which results in a Pressure scalar.
643 * @param v Dimensionless scalar
644 * @return Pressure scalar as a multiplication of Dimensionless and Pressure
645 */
646 public final Pressure multiplyBy(final Pressure v)
647 {
648 return new Pressure(this.si * v.si, PressureUnit.SI);
649 }
650
651 /**
652 * Calculate the multiplication of Dimensionless and Speed, which results in a Speed scalar.
653 * @param v Dimensionless scalar
654 * @return Speed scalar as a multiplication of Dimensionless and Speed
655 */
656 public final Speed multiplyBy(final Speed v)
657 {
658 return new Speed(this.si * v.si, SpeedUnit.SI);
659 }
660
661 /**
662 * Calculate the multiplication of Dimensionless and Temperature, which results in a Temperature scalar.
663 * @param v Dimensionless scalar
664 * @return Temperature scalar as a multiplication of Dimensionless and Temperature
665 */
666 public final Temperature multiplyBy(final Temperature v)
667 {
668 return new Temperature(this.si * v.si, TemperatureUnit.SI);
669 }
670
671 /**
672 * Calculate the multiplication of Dimensionless and Duration, which results in a Duration scalar.
673 * @param v Dimensionless scalar
674 * @return Duration scalar as a multiplication of Dimensionless and Duration
675 */
676 public final Duration multiplyBy(final Duration v)
677 {
678 return new Duration(this.si * v.si, DurationUnit.SI);
679 }
680
681 /**
682 * Calculate the multiplication of Dimensionless and Torque, which results in a Torque scalar.
683 * @param v Dimensionless scalar
684 * @return Torque scalar as a multiplication of Dimensionless and Torque
685 */
686 public final Torque multiplyBy(final Torque v)
687 {
688 return new Torque(this.si * v.si, TorqueUnit.SI);
689 }
690
691 /**
692 * Calculate the multiplication of Dimensionless and Volume, which results in a Volume scalar.
693 * @param v Dimensionless scalar
694 * @return Volume scalar as a multiplication of Dimensionless and Volume
695 */
696 public final Volume multiplyBy(final Volume v)
697 {
698 return new Volume(this.si * v.si, VolumeUnit.SI);
699 }
700
701 /**
702 * Calculate the division of Dimensionless and Length, which results in a LinearDensity scalar.
703 * @param v Dimensionless scalar
704 * @return LinearDensity scalar as a division of Dimensionless and Length
705 */
706 public final LinearDensity divideBy(final Length v)
707 {
708 return new LinearDensity(this.si / v.si, LinearDensityUnit.SI);
709 }
710
711 /**
712 * Calculate the division of Dimensionless and LinearDensity, which results in a Length scalar.
713 * @param v Dimensionless scalar
714 * @return Length scalar as a division of Dimensionless and LinearDensity
715 */
716 public final Length divideBy(final LinearDensity v)
717 {
718 return new Length(this.si / v.si, LengthUnit.SI);
719 }
720
721 /**
722 * Calculate the division of Dimensionless and Duration, which results in a Frequency scalar.
723 * @param v Dimensionless scalar
724 * @return Frequency scalar as a division of Dimensionless and Duration
725 */
726 public final Frequency divideBy(final Duration v)
727 {
728 return new Frequency(this.si / v.si, FrequencyUnit.SI);
729 }
730
731 /**
732 * Calculate the division of Dimensionless and Frequency, which results in a Duration scalar.
733 * @param v Dimensionless scalar
734 * @return Duration scalar as a division of Dimensionless and Frequency
735 */
736 public final Duration divideBy(final Frequency v)
737 {
738 return new Duration(this.si / v.si, DurationUnit.SI);
739 }
740
741 }