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IV. Numerical problems · Q12

Q.Calculate the de Broglie wavelength of a proton whose kinetic energy is equal to 81.9×10−1581.9 \times 10^{-15} J. (Given: mass of proton is 1836 times that of the electron).

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Step 1. The proton's mass is mp=1836 me=1836×(9.1×10−31)≈1.671×10−27 kgm_p=1836\,m_e=1836\times(9.1\times10^{-31})\approx1.671\times10^{-27}\ \text{kg}.

Step 2. The de Broglie wavelength in terms of kinetic energy is λ=h2mpK\lambda=\dfrac{h}{\sqrt{2m_pK}}. …

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