If the velocity of a free electron is doubled,the change in its de Broglie wavelength will be ...

  • A
    Increase by $\lambda/2$
  • B
    Decrease by $\lambda/2$
  • C
    Increase by $2\lambda$
  • D
    Decrease by $2\lambda$

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Similar Questions

According to the de-Broglie hypothesis,the wavelength associated with a moving electron of mass $m$ is $\lambda_e$. Using the mass-energy relation and Planck's quantum theory,the wavelength associated with a photon is $\lambda_p$. If the energy $(E)$ of the electron and the photon is the same,then the relation between $\lambda_e$ and $\lambda_p$ is:

What is the de Broglie wavelength of an electron accelerated through a potential difference of $ 100 \ V $ (in $\text{Å}$)?

$A$ subatomic particle of mass $10^{-30} \ kg$ is moving with a velocity $2.21 \times 10^6 \ m/s$. Under the matter wave consideration,the particle will behave closely like . . . . . . . $(h = 6.63 \times 10^{-34} \ J \cdot s)$

If particles move with the same velocity,the de Broglie wavelength is maximum for .........

When the kinetic energy of an electron is increased,the wavelength of the associated wave will:

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