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Q.Find the energy equivalent of one atomic mass unit (amu) in joules and MeV.

Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2025Subjective· 2mImportance★★★★★
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Using E=mc2E=mc^2 with 1 u=1.6605×10−271\ \text{u}=1.6605\times10^{-27} kg gives the energy equivalent of one atomic mass unit.

Using Einstein's mass–energy relation E=mc2E = mc^2 with m=1 u=1.6605×10−27m = 1\ \text{u} = 1.6605\times10^{-27} kg and c=3×108c = 3\times10^{8} m/s (as given):

E=(1.6605×10−27)(3×108)2=1.6605×10−27×9×1016E = (1.6605\times10^{-27})(3\times10^{8})^2 = 1.6605\times10^{-27}\times9\times10^{16}

E=1.49445×10−10 JE = 1.49445\times10^{-10}\ \text{J}

Converting to electron-volts using e=1.6×10−19e = 1.6\times10^{-19} C (as given in the paper's constants):

E(eV)=1.49445×10−101.6×10−19=9.34×108 eV=934 MeVE(\text{eV}) = \frac{1.49445\times10^{-10}}{1.6\times10^{-19}} = 9.34\times10^{8}\ \text{eV} = 934\ \text{MeV} …

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