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  2. Avogadro constant - Wikipedia

    en.wikipedia.org/wiki/Avogadro_constant

    The Avogadro constant, commonly denoted NA[1] or L, [2] is an SI defining constant with an exact value of 6.022 140 76 × 1023 mol−1 (reciprocal moles). [3][4] It is defined as the number of constituent particles (usually molecules, atoms, ions, or ion pairs) per mole (SI unit) and used as a normalization factor in the amount of substance in ...

  3. Avogadro's law - Wikipedia

    en.wikipedia.org/wiki/Avogadro's_Law

    Avogadro's law states that "equal volumes of all gases, at the same temperature and pressure, have the same number of molecules." [1] For a given mass of an ideal gas, the volume and amount (moles) of the gas are directly proportional if the temperature and pressure are constant. The law is named after Amedeo Avogadro who, in 1812, [2][3 ...

  4. Mole (unit) - Wikipedia

    en.wikipedia.org/wiki/Mole_(unit)

    Historically, N 0 approximates the number of nucleons (protons or neutrons) in one gram of ordinary matter. The Avogadro constant (symbol N A = N 0 /mol) has numerical multiplier given by the Avogadro number with the unit reciprocal mole (mol −1). [2] The ratio n = N/N A is a measure of the amount of substance (with the unit mole). [2] [3] [4]

  5. Ideal gas law - Wikipedia

    en.wikipedia.org/wiki/Ideal_gas_law

    is the amount of substance of gas (also known as number of moles), is the ideal, or universal, gas constant, equal to the product of the Boltzmann constant and the Avogadro constant, is the Boltzmann constant, is the Avogadro constant,

  6. Gas laws - Wikipedia

    en.wikipedia.org/wiki/Gas_laws

    Combined with Avogadro's law (i.e. since equal volumes have an equal number of molecules) this is the same as being inversely proportional to the root of the molecular weight. Dalton's law of partial pressures This law states that the pressure of a mixture of gases simply is the sum of the partial pressures of the individual components. Dalton ...

  7. Coulomb - Wikipedia

    en.wikipedia.org/wiki/Coulomb

    The coulomb (symbol: C) is the unit of electric charge in the International System of Units (SI). [1][2] It is equal to the electric charge delivered by a 1 ampere current in 1 second and is defined in terms of the elementary charge e, at about 6.241 509 × 1018 e. [2][1]

  8. Elementary charge - Wikipedia

    en.wikipedia.org/wiki/Elementary_charge

    The elementary charge, usually denoted by e, is a fundamental physical constant, defined as the electric charge carried by a single proton or, equivalently, the magnitude of the negative electric charge carried by a single electron, which has charge −1 e. [ 2 ][ a ] In the SI system of units, the value of the elementary charge is exactly ...

  9. Faraday constant - Wikipedia

    en.wikipedia.org/wiki/Faraday_constant

    Since the 2019 revision of the SI, [1] the Faraday constant has an exactly defined value, the product of the elementary charge (e, in coulombs) and the Avogadro constant (N A, in reciprocal moles): F = e × N A = 1.602 176 634 × 10 −19 C × 6.022 140 76 × 10 23 mol −1 = 9.648 533 212 331 001 84 × 10 4 C⋅mol −1.