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  2. Electronvolt - Wikipedia

    en.wikipedia.org/wiki/Electronvolt

    One mole of particles given 1 eV of energy each has approximately 96.5 kJ of energy – this corresponds to the Faraday constant (F ≈ 96 485 C⋅mol1), where the energy in joules of n moles of particles each with energy E eV is equal to E·F·n.

  3. Joule per mole - Wikipedia

    en.wikipedia.org/wiki/Joule_per_mole

    Other units sometimes used to describe reaction energetics are kilocalories per mole (kcal·mol1), electron volts per particle (eV), and wavenumbers in inverse centimeters (cm −1). 1 kJ·mol1 is approximately equal to 1.04 × 10 −2 eV per particle, 0.239 kcal·mol1, or 83.6 cm −1.

  4. Orders of magnitude (energy) - Wikipedia

    en.wikipedia.org/wiki/Orders_of_magnitude_(energy)

    1 kJ/mol, converted to energy per molecule [9] 2.1×10 −21 J Thermal energy in each degree of freedom of a molecule at 25 °C ( k T /2) (0.01 eV ) [ 10 ]

  5. Hartree - Wikipedia

    en.wikipedia.org/wiki/Hartree

    The hartree (symbol: E h), also known as the Hartree energy, is the unit of energy in the atomic units system, named after the British physicist Douglas Hartree.Its CODATA recommended value is E h = 4.359 744 722 2060 (48) × 10 −18 J ‍ [1] = 27.211 386 245 981 (30) eV.

  6. Kilocalorie per mole - Wikipedia

    en.wikipedia.org/wiki/Kilocalorie_per_mole

    In SI units, one kilocalorie per mole is equal to 4.184 kilojoules per mole (kJ/mol), which comes to approximately 6.9477 × 10 −21 joules per molecule, or about 0.043 eV per molecule. At room temperature (25 °C, 77 °F, or 298.15 K), one kilocalorie per mole is approximately equal to 1.688 kT per molecule.

  7. Ionization energy - Wikipedia

    en.wikipedia.org/wiki/Ionization_energy

    In physics, ionization energy (IE) is usually expressed in electronvolts (eV) or joules (J). In chemistry, it is expressed as the energy to ionize a mole of atoms or molecules, usually as kilojoules per mole (kJ/mol) or kilocalories per mole (kcal/mol). [3]

  8. Photon energy - Wikipedia

    en.wikipedia.org/wiki/Photon_energy

    An FM radio station transmitting at 100 MHz emits photons with an energy of about 4.1357 × 10 −7 eV. This minuscule amount of energy is approximately 8 × 10 −13 times the electron's mass (via mass–energy equivalence). Very-high-energy gamma rays have photon energies of 100 GeV to over 1 PeV (10 11 to 10 15 electronvolts) or 16 nJ to 160 ...

  9. Template:Physical constants - Wikipedia

    en.wikipedia.org/wiki/Template:Physical_constants

    KJ: Josephson constant: ... E h = 27.211 386 245 981 (30) eV: u r (E h) = 1.1 ... (Si) = 1.205 883 199 (60) × 10 −5 m 3 ⋅mol1: u r (V m (Si)) = ...