The ratio of de Broglie wavelengths of a proton and an $\alpha$-particle having the same energy is ............

  • A
    $2 : 1$
  • B
    $1 : 2$
  • C
    $4 : 1$
  • D
    $1 : 4$

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Find the ratio of the de Broglie wavelengths of a proton and an $\alpha$-particle accelerated through the same potential difference.

An electron,an $\alpha$-particle,and a proton have the same kinetic energy. Which of these particles has the shortest de Broglie wavelength?

When the momentum of a proton is changed by an amount $p_0$,the corresponding change in the de-Broglie wavelength is found to be $0.25\%$. Then,the original momentum of the proton was

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The de-Broglie wavelength $(\lambda)$ of a particle

The de Broglie wavelength of a proton is twice the de Broglie wavelength of an alpha particle. The ratio of the kinetic energies of the proton and the alpha particle is

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