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Numericals · Q24

Q.What is the speed of a proton having de Broglie wavelength of 0.08 Å?

Maharashtra MsbshseTextbookSubjectiveImportance★★★★★
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The de Broglie wavelength relates a particle's speed to its wavelength via λ=hp=hmpv\lambda=\dfrac{h}{p}=\dfrac{h}{m_pv}, so rearranging for speed:\n\nv=hmpλv = \frac{h}{m_p\lambda}\n\nWith λ=0.08\lambda=0.08 Å =0.08×10−10=0.08\times10^{-10} m =8×10−12=8\times10^{-12} m and proton mass mp≈1.67×10−27m_p\approx1.67\times10^{-27} kg:\n\nv=6.63×10−34(1.67×10−27)(8×10−12)=6.63×10−341.336×10−38≈4.963×104 m/s=49.63×103 m/sv = \frac{6.63\times10^{-34}}{(1.67\times10^{-27})(8\times10^{-12})} = \frac{6.63\times10^{-34}}{1.336\times10^{-38}} \approx 4.963\times10^{4}\text{ m/s} = 49.63\times10^{3}\text{ m/s}\n\nThis is close to the book's printed 49.623×10349.623\times10^3 m/s (the small difference comes from the precise value used for the proton mass, e.g. 1.6726×10−271.6726\times10^{-27} kg vs the rounded 1.67×10−271.67\times10^{-27} kg used here). So a proton with a d …

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