1 package org.djunits.value.vfloat.scalar;
2
3 import java.util.Locale;
4
5 import org.djunits.unit.DimensionlessUnit;
6 import org.djunits.unit.DurationUnit;
7 import org.djunits.unit.ElectricalCapacitanceUnit;
8 import org.djunits.unit.ElectricalChargeUnit;
9 import org.djunits.unit.ElectricalConductanceUnit;
10 import org.djunits.value.vfloat.scalar.base.FloatScalarRel;
11 import org.djutils.base.NumberParser;
12 import org.djutils.exceptions.Throw;
13
14 import jakarta.annotation.Generated;
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25 @Generated(value = "org.djunits.generator.GenerateDJUNIT", date = "2025-09-06T15:16:28.380798Z")
26 public class FloatElectricalCapacitance extends FloatScalarRel<ElectricalCapacitanceUnit, FloatElectricalCapacitance>
27 {
28
29 private static final long serialVersionUID = 20150901L;
30
31
32 public static final FloatElectricalCapacitance ZERO = new FloatElectricalCapacitance(0.0f, ElectricalCapacitanceUnit.SI);
33
34
35 public static final FloatElectricalCapacitance ONE = new FloatElectricalCapacitance(1.0f, ElectricalCapacitanceUnit.SI);
36
37
38 @SuppressWarnings("checkstyle:constantname")
39 public static final FloatElectricalCapacitance NaN =
40 new FloatElectricalCapacitance(Float.NaN, ElectricalCapacitanceUnit.SI);
41
42
43 public static final FloatElectricalCapacitance POSITIVE_INFINITY =
44 new FloatElectricalCapacitance(Float.POSITIVE_INFINITY, ElectricalCapacitanceUnit.SI);
45
46
47 public static final FloatElectricalCapacitance NEGATIVE_INFINITY =
48 new FloatElectricalCapacitance(Float.NEGATIVE_INFINITY, ElectricalCapacitanceUnit.SI);
49
50
51 public static final FloatElectricalCapacitance POS_MAXVALUE =
52 new FloatElectricalCapacitance(Float.MAX_VALUE, ElectricalCapacitanceUnit.SI);
53
54
55 public static final FloatElectricalCapacitance NEG_MAXVALUE =
56 new FloatElectricalCapacitance(-Float.MAX_VALUE, ElectricalCapacitanceUnit.SI);
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63 public FloatElectricalCapacitance(final float value, final ElectricalCapacitanceUnit unit)
64 {
65 super(value, unit);
66 }
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70
71
72 public FloatElectricalCapacitance(final FloatElectricalCapacitance value)
73 {
74 super(value);
75 }
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81
82 public FloatElectricalCapacitance(final double value, final ElectricalCapacitanceUnit unit)
83 {
84 super((float) value, unit);
85 }
86
87 @Override
88 public final FloatElectricalCapacitance instantiateRel(final float value, final ElectricalCapacitanceUnit unit)
89 {
90 return new FloatElectricalCapacitance(value, unit);
91 }
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98 public static final FloatElectricalCapacitance ofSI(final float value)
99 {
100 return new FloatElectricalCapacitance(value, ElectricalCapacitanceUnit.SI);
101 }
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110 public static FloatElectricalCapacitance interpolate(final FloatElectricalCapacitance zero,
111 final FloatElectricalCapacitance one, final float ratio)
112 {
113 Throw.when(ratio < 0.0 || ratio > 1.0, IllegalArgumentException.class,
114 "ratio for interpolation should be between 0 and 1, but is %f", ratio);
115 return new FloatElectricalCapacitance(zero.getInUnit() * (1 - ratio) + one.getInUnit(zero.getDisplayUnit()) * ratio,
116 zero.getDisplayUnit());
117 }
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125 public static FloatElectricalCapacitance max(final FloatElectricalCapacitance r1, final FloatElectricalCapacitance r2)
126 {
127 return r1.gt(r2) ? r1 : r2;
128 }
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137 public static FloatElectricalCapacitance max(final FloatElectricalCapacitance r1, final FloatElectricalCapacitance r2,
138 final FloatElectricalCapacitance... rn)
139 {
140 FloatElectricalCapacitance maxr = r1.gt(r2) ? r1 : r2;
141 for (FloatElectricalCapacitance r : rn)
142 {
143 if (r.gt(maxr))
144 {
145 maxr = r;
146 }
147 }
148 return maxr;
149 }
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157 public static FloatElectricalCapacitance min(final FloatElectricalCapacitance r1, final FloatElectricalCapacitance r2)
158 {
159 return r1.lt(r2) ? r1 : r2;
160 }
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169 public static FloatElectricalCapacitance min(final FloatElectricalCapacitance r1, final FloatElectricalCapacitance r2,
170 final FloatElectricalCapacitance... rn)
171 {
172 FloatElectricalCapacitance minr = r1.lt(r2) ? r1 : r2;
173 for (FloatElectricalCapacitance r : rn)
174 {
175 if (r.lt(minr))
176 {
177 minr = r;
178 }
179 }
180 return minr;
181 }
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191
192 public static FloatElectricalCapacitance valueOf(final String text)
193 {
194 Throw.whenNull(text, "Error parsing FloatElectricalCapacitance: text to parse is null");
195 Throw.when(text.length() == 0, IllegalArgumentException.class,
196 "Error parsing FloatElectricalCapacitance: empty text to parse");
197 try
198 {
199 NumberParser numberParser = new NumberParser().lenient().trailing();
200 float f = numberParser.parseFloat(text);
201 String unitString = text.substring(numberParser.getTrailingPosition()).trim();
202 ElectricalCapacitanceUnit unit = ElectricalCapacitanceUnit.BASE.getUnitByAbbreviation(unitString);
203 Throw.when(unit == null, IllegalArgumentException.class, "Unit %s not found for quantity ElectricalCapacitance",
204 unitString);
205 return new FloatElectricalCapacitance(f, unit);
206 }
207 catch (Exception exception)
208 {
209 throw new IllegalArgumentException("Error parsing FloatElectricalCapacitance from " + text + " using Locale "
210 + Locale.getDefault(Locale.Category.FORMAT), exception);
211 }
212 }
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222 public static FloatElectricalCapacitance of(final float value, final String unitString)
223 {
224 Throw.whenNull(unitString, "Error parsing FloatElectricalCapacitance: unitString is null");
225 Throw.when(unitString.length() == 0, IllegalArgumentException.class,
226 "Error parsing FloatElectricalCapacitance: empty unitString");
227 ElectricalCapacitanceUnit unit = ElectricalCapacitanceUnit.BASE.getUnitByAbbreviation(unitString);
228 Throw.when(unit == null, IllegalArgumentException.class, "Error parsing FloatElectricalCapacitance with unit %s",
229 unitString);
230 return new FloatElectricalCapacitance(value, unit);
231 }
232
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238
239 public final FloatDimensionless divide(final FloatElectricalCapacitance v)
240 {
241 return new FloatDimensionless(this.si / v.si, DimensionlessUnit.SI);
242 }
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250 public final FloatElectricalCharge times(final FloatElectricalPotential v)
251 {
252 return new FloatElectricalCharge(this.si * v.si, ElectricalChargeUnit.SI);
253 }
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261 public final FloatElectricalConductance divide(final FloatDuration v)
262 {
263 return new FloatElectricalConductance(this.si / v.si, ElectricalConductanceUnit.SI);
264 }
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271
272 public final FloatDuration divide(final FloatElectricalConductance v)
273 {
274 return new FloatDuration(this.si / v.si, DurationUnit.SI);
275 }
276
277 @Override
278 public FloatSIScalar reciprocal()
279 {
280 return FloatSIScalar.divide(FloatDimensionless.ONE, this);
281 }
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288
289 public static FloatElectricalCapacitance multiply(final FloatScalarRel<?, ?> scalar1, final FloatScalarRel<?, ?> scalar2)
290 {
291 Throw.whenNull(scalar1, "scalar1 cannot be null");
292 Throw.whenNull(scalar2, "scalar2 cannot be null");
293 Throw.when(
294 !scalar1.getDisplayUnit().getQuantity().getSiDimensions()
295 .plus(scalar2.getDisplayUnit().getQuantity().getSiDimensions())
296 .equals(ElectricalCapacitanceUnit.BASE.getSiDimensions()),
297 IllegalArgumentException.class,
298 "Multiplying %s by %s does not result in instance of type FloatElectricalCapacitance",
299 scalar1.toDisplayString(), scalar2.toDisplayString());
300 return new FloatElectricalCapacitance(scalar1.si * scalar2.si, ElectricalCapacitanceUnit.SI);
301 }
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308
309 public static FloatElectricalCapacitance divide(final FloatScalarRel<?, ?> scalar1, final FloatScalarRel<?, ?> scalar2)
310 {
311 Throw.whenNull(scalar1, "scalar1 cannot be null");
312 Throw.whenNull(scalar2, "scalar2 cannot be null");
313 Throw.when(
314 !scalar1.getDisplayUnit().getQuantity().getSiDimensions()
315 .minus(scalar2.getDisplayUnit().getQuantity().getSiDimensions())
316 .equals(ElectricalCapacitanceUnit.BASE.getSiDimensions()),
317 IllegalArgumentException.class,
318 "Dividing %s by %s does not result in an instance of type FloatElectricalCapacitance",
319 scalar1.toDisplayString(), scalar2.toDisplayString());
320 return new FloatElectricalCapacitance(scalar1.si / scalar2.si, ElectricalCapacitanceUnit.SI);
321 }
322
323 }