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A 1.00 -MT bomb exploded a few kilometers above the ground deposits 25.0$\%$ of its energy into radiant heat.(a) Find the calories per $\mathrm{cm}^{2}$ at a distance of 10.0 $\mathrm{km}$ by assuming a uniform distribution over a spherical surface of that radiurs(b) If this heat falls on a person's body, what temperature increase does it cause in the affected tissue, assuming it is absorbed in a layer 1.00-cm deep?

a. 20.0 $\mathrm{cal} / \mathrm{cm}^{2}$b. $24^{\circ} \mathrm{C}$

Physics 103

Chapter 32

Medical Applications of Nuclear Physics

Nuclear Physics

University of Michigan - Ann Arbor

University of Washington

McMaster University

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