Which of the following has the largest de Broglie wavelength?

  • A
    $A$ bullet of mass $0.02 \ kg$ moving with speed $1 \ km/s$
  • B
    $A$ ball of mass $0.06 \ kg$ moving with speed $10 \ m/s$
  • C
    $A$ particle of mass $0.01 \ kg$ moving with speed $100 \ m/s$
  • D
    $A$ ball of mass $0.03 \ kg$ moving with speed $1 \ m/s$

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The $log-log$ graph between the energy $E$ of an electron and its de-Broglie wavelength $\lambda$ will be

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Which of the following particles has the shortest de-Broglie wavelength,assuming they have the same kinetic energy?

An electron of mass $m$ and a photon have the same energy $E$. The ratio of the de-Broglie wavelengths associated with them is ($c$ = velocity of light in air).

$(a)$ For what kinetic energy of a neutron will the associated de Broglie wavelength be $1.40 \times 10^{-10} \; m ?$
$(b)$ Also find the de Broglie wavelength of a neutron,in thermal equilibrium with matter,having an average kinetic energy of $\frac{3}{2} k T$ at $300 \; K$.

The de Broglie wavelengths associated with a proton and an electron are in the ratio $2: 1$. Their stopping potentials are approximately in the ratio of

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