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Calculate frequency and wave length of photon during the transition of electron in hydrogen from n = 6 to n = 2 orbit.

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Knowledge Check

  • Energy of an electron is given by Wavelength of light required to excite an electron in a hydrogen atom from level n = 1 to n = 2 will be…

    A
    `1.214xx10^(-7)` m
    B
    `2.186xx10^(-7)` m
    C
    `6.500 xx10^(-7)` m
    D
    `8.500 xx10^(-7)` m
  • The shortest wavelength of the spectrum line is that of electron being transits into atom to ion from n = 2 to n = 1 for .......

    A
    hydrogen atom
    B
    deuterium atom
    C
    singly ionized helium
    D
    doubly ionized lithium
  • An electron from various excited states of hydrogen atom emit radiation to come to the ground state. Let lamda_(n),lamda_(g) be the de Broglie wavelength of the electron in the n^(th) state and the ground state respectively. Let A_(n) be the wavelength of the emitted photon in the transition from the n^(th) state to the ground state. For large n, (A, B are constant)

    A
    `A_(n)~~A+(B)/(lamda_(n)^(2))`
    B
    `A_(n)~~A+Blamda_(n)`
    C
    `A_(n)^(2)~~A+Blamda_(n)^(2)`
    D
    `A_(n)^(2)~~lamda`
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    Calculate the frequency & energy of a photon of wave length 4000A .

    Calculate wavelength of emitted radiation when electron transition from n=3 to n=2 ? This radiation belong to which region.

    The ionization energy of hydrogen atom in the ground state is 1312 kJ "mol"^(-1) . Calculate the wavelength of radiation emitted when the electron in hydrogen atom makes a transition from n = 2 state to n = 1 state (Planck’s constant, h = 6.626 xx 10^(-34) Js , velocity of light, c = 3 xx 10^8 m s^(-1) , Avogadro’s constant, N_A = 6.0237 xx 10^23 "mol"^(-1) ).

    Calculate the wave number for the longest wavelength transition in the Balmer series of atomic hydrogen

    If electron transits from n=5 to n=2 it belong which series.?