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The circumference of the second Bohr orb...

The circumference of the second Bohr orbit of an electron in a hydrogen atom is `600 nm` Calculate the potential difference to which the electron has to be Broglie wavelength curresponding to this circumferance

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The circumference of the second Bohr orbit of electron in the hydrogen atom is 600nm. Calculate the potential difference to which the electron has to be subjected so that the electron stops. The electron had the de Broglie wavelength corresponding to the circumference.

The circumference of the second Bohr orbit of electron in hydrogen atom is 600nm . The potential difference that must be applied between the plates so that the electron have the de Broglie wavelength corresponding in this circumference is

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What is the circumference of the second orbit of hydrogen atom ?

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The radius of the second orbit of an electron in hydrogen atom is 2.116A . The de Broglie wavelength associated with this electron in this orbit would be

The radius of the second orbit of an electron in hydrogen atom is 2.116A . The de Broglie wavelength associated with this electron in this orbit would be