An electron in H atom in ground state absorbs 1 5 times as much …?

An electron in H atom in ground state absorbs 1 5 times as much …?

WebAn electron in a hydrogen atom in its ground state absorbs 1.5 times as much energy as the minimum required for it to escape from the atom .what is the wavelength of the emitted electron? explain with solution plz.? Answers Harshita Joshi Energy absorbed = 1.5 x 13.6 eV = 20.4 eV E = hc / λ By substituting values of h and c in above formula WebMar 24, 2024 · An orbiting electron in an atom makes jumps between energy ... at ground state. This is shown in the next figure. Fig 2.2. 8 – Hydrogen electro n at ground st ate (1s) If it absorbs a ... danbury ct pawn shops WebOct 2, 2024 · Best answer Energy required to remove electron from ground state of H-atom = 13.6 eV ∴ ∴ Energy absorbed by the electron = 1.5 × 13.6eV = 20.4eV = 1.5 × 13.6 e V = 20.4 e V After the removal of electron from the atom, extra energy which is converted into kinetic energy = 20.4 − 13.6 = 6.8eV = 20.4 - 13.6 = 6.8 e V WebMar 27, 2024 · Based on work function of C 60 (work function of ~4.5–5 eV) 54 and Pt (work function of 5.12–5.93 eV) 55, one would expect that the electron transfer occurs in the opposite direction as we ... code call of duty 2 WebMar 24, 2024 · A light of energy 12.75 eV is incident on a hydrogen atom in its ground state. The atom absorbs the radiation and reaches to one of its excited states. The angular momentum of the atom in the excited state is (x/π) × 10-17 eVs. The value of x is (use h=4.14 × 10-15 eVs , c=3 × 108 ms -1 ). code call of duty 2022 WebWhat is the velocity of the emitted electron? Solution For An electron in a hydrogen atom in its ground state absorbs 1.5 times as much energy as the minimum required for it to …

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