Home
Class 11
CHEMISTRY
The angular momentum of an electron in a...

The angular momentum of an electron in a Bohr's orbit of `He^+` is `3.1652 xx 10^-34 kg-m^2//sec`. What is the wave number in terms of Rydberg constant `(R )` of the spectral line emitted when an electron falls this level to the first excited state.
`["Use" h = 6.626 xx 10^-34 Js]`.

Promotional Banner

Similar Questions

Explore conceptually related problems

The angular momentum of an electron in a Bohr's orbit of He^(+) is 3.1652xx10^(-34) kg- m^(2) /sec. What is the wave number in terms of Rydberg constant (R ) of the spectral line emitted when an electron falls from this level to the first excited state.l [ Use h =6.626xx10^(-34) Js]

The angular momentum of an electron in a Bohr's orbit of He^(+) is 3.1652xx10^(-34) kg- m^(2) /sec. What is the wave number in terms of Rydberg constant (R ) of the sepectral line emitted when an electron falls from this level to the first excited state.l [ Use h =6.626xx10^9-34) Js]

The angular momentum of an electron in a Bohr's orbit of He^(+) is 3.1652xx10^(-34) kg- m^(2) /sec. What is the wave number in terms of Rydberg constant (R ) of the sepectral line emitted when an electron falls from this level to the first excited state.l [ Use h =6.626xx10^9-34) Js]

The angular momentum of an electron in a Bohr's orbit of He+ is 3.1652xx10^-34 kg-m^2/sec what is the wavenumber in terms of Rydberg constant of the spectral line emitted when an electrons falls from this level to the first excited state [h= 6.626xx10^-34 Js]

The angular momentum of an electron in a Bohr's orbit of hydrogen atom is 3.1655xx10^(-34)kg*m^(2)*s^(-1) . Calculate the wavelength of the spectral line emitted when an electron falls from this level to the next lower level.

The angular momentum of electron in a Bohr orbit of "H" atom is (3h/ pi) What is the wave number in multiples of rydberg constant , R_(H) of the spectral line when an electron jumps from this orbit to 2^(nd) orbit?

The angular momentum of electron in 3rd Bohr orbit of Hydrogen atom is 3.165 xx 10^(-34)kg m^2 /s. Calculate Plank’s constant h.

The angular momentum of an electron in Bohr's orbit of H-atom is 3.02 xx 10^(-34) kg m^2 s^(-1) . Calculate the wavelength of the spectral line emitted when the electron jumps this level to the next lower level.