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mXparser is a super easy, rich, fast and highly flexible math expression parser library (parser and evaluator of mathematical expressions / formulas provided as plain text / string). Software delivers easy to use API for JAVA, Android and C# .NET/MONO (Common Language Specification compliant: F#, Visual Basic, C++/CLI). *** If you find the software useful donation is something you might consider: https://mathparser.org/donate/ *** Scalar Scientific Calculator, Charts and Scripts, Scalar Lite: https://play.google.com/store/apps/details?id=org.mathparser.scalar.lite *** Scalar Pro: https://play.google.com/store/apps/details?id=org.mathparser.scalar.pro *** ScalarMath.org: https://scalarmath.org/ *** MathSpace.pl: https://mathspace.pl/ ***

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/*
 * @(#)PhysicalConstants.java        4.4.3    2022-05-28
 *
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package org.mariuszgromada.math.mxparser.mathcollection;

/**
 * PhysicalConstants - class representing the most important physical constants.
 *
 * @author         Mariusz Gromada
* [email protected]
* MathSpace.pl
* MathParser.org - mXparser project page
* mXparser on GitHub
* mXparser on SourceForge
* mXparser on Bitbucket
* mXparser on CodePlex
* Janet Sudoku - project web page
* Janet Sudoku on GitHub
* Janet Sudoku on CodePlex
* Janet Sudoku on SourceForge
* Janet Sudoku on BitBucket
* Scalar Free
* Scalar Pro
* ScalarMath.org
* * @version 4.2.0 */ public final class PhysicalConstants { /** * Light speed */ public static final double LIGHT_SPEED = 299792458.0 * Units.METRE_PER_SECOND; /** * Gravitational constant */ public static final double GRAVITATIONAL_CONSTANT = 6.67408E-11 * Units.METRE3 * (1.0 / Units.KILOGRAM) * (1.0 / (Units.SECOND * Units.SECOND)) ; /** * Gravitational acceleration - Earth (normal) */ public static final double GRAVIT_ACC_EARTH = 9.80665 * Units.METRE_PER_SECOND2; /** * Planck constant */ public static final double PLANCK_CONSTANT = 6.626070040E-34 * Units.METRE2 * Units.KILOGRAM / Units.SECOND; /** * Reduced Planck constant */ public static final double PLANCK_CONSTANT_REDUCED = PLANCK_CONSTANT / (2 * MathConstants.PI); /** * Planck length */ public static final double PLANCK_LENGTH = 1.616229E-35 * Units.METRE; /** * Planck mass */ public static final double PLANCK_MASS = 2.176470E-8 * Units.KILOGRAM; /** * Planck time */ public static final double PLANCK_TIME = 5.39116E-44 * Units.SECOND; /** * Avagadro's constant */ public static final double N_A = 6.022140857E23 / Units.MOLE; /** * Gas constant */ public static final double R = 8.3144598 * Units.JOULE / (Units.KELVIN * Units.MOLE); /** * Boltzmann constant */ public static final double BOLTZMANN_CONSTANT = R / N_A; /** * Neutron rest mass */ public static final double NEUTRON_REST_MASS = 1.674927471E-27 * Units.KILOGRAM; /** * Neutron equivalent rest mass */ public static final double NEUTRON_EQUIVALENT_REST_MASS = 939.5654133 * Units.MEGA_ELECTRONO_VOLT / (LIGHT_SPEED * LIGHT_SPEED); /** * Proton rest mass */ public static final double PROTON_REST_MASS = 1.672621898E-27 * Units.KILOGRAM; /** * Proton equivalent rest mass */ public static final double PROTON_EQUIVALENT_REST_MASS = 938.2720813 * Units.MEGA_ELECTRONO_VOLT / (LIGHT_SPEED * LIGHT_SPEED); /** * Elementary charge */ public static final double ELEMENTARY_CHARGE = 1.6021766208E-19*Units.COULOMB; /** * Electron rest mass */ public static final double ELECTRON_REST_MASS = 9.10938356E-31 * Units.KILOGRAM; /** * Electron equivalent rest mass */ public static final double ELECTRON_EQUIVALENT_REST_MASS = 0.5109989461 * Units.MEGA_ELECTRONO_VOLT / (LIGHT_SPEED * LIGHT_SPEED); /** * Vacuum permittivity */ public static final double VACUUM_PERMITTIVITY = 8.854187817E-12 * Units.AMPERE * Units.AMPERE * Units.SECOND * Units.SECOND * Units.SECOND * Units.SECOND / (Units.METRE3 * Units.KILOGRAM); /** * Vacuum permeability */ public static final double VACUUM_PERMEABILITY = 4.0E-7 * Math.PI * Units.KILOGRAM * Units.METRE / (Units.SECOND * Units.SECOND * Units.AMPERE * Units.AMPERE); }




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