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An electron accelerated under a p.d. Of ...

An electron accelerated under a `p.d`. Of `V` volt has a certain wavelength `lambda`. Mass of the proton is `2000` times the mass of an electron. If the proton has to have the same wavelength `lambda`, then it will have to be accelerated under `p.d`. of (volts)

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An electron accelerated under a potential difference of V volt has a certain wavelength lamda It is known that the mass of a proton is about 1800 times the mass of an electron . If a proton has to have the same wavelength lamda , then it will have to be accelerated under the potential difference of

An electron accelerated under a potential difference of V volt has a certain wavelength lamda It is known that the mass of a proton is about 1800 times the mass of an electron . If a proton has to have the same wavelength lamda , then it will have to be accelerated under the potential difference of

If a proton and electron have the same de-Broglie wavelength, then

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If a proton and electron have the same de Broglie wavelength, then

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For a proton accelerated through V volts , de Broglie wavelength is given as lambda =