If the radius of first Bohr orbit is \( \mathrm{x} \), then de Broglie wavelength of electron in...
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If the radius of first Bohr orbit is \( \mathrm{x} \), then de Broglie wavelength of electron in 3rd orbit is nearly:
(a) \( 2 \pi \mathrm{x} \)
(b) \( 6 \pi \mathrm{x} \)
- (c) \( 9 \mathrm{x} \)
(d) \( \mathrm{x} / 3 \)
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