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A solid copper sphere of diameter 10 mm is cooled to 150 K and then placed in an enclosure at 290 K. Treating the sphere as a black body and assuming heat exchange is only by radiation, find the initial rate of rise of its temperature. (rho_copper = 8.93e3 kg/m³, specific heat s = 3.7e2 J/kg/K, sigma = 5.7e-8 W/m²/K⁴.)
- 0.68 K/s
- 0.068 K/s
- 0.34 K/s
- 0.034 K/s
Correct answer: 0.068 K/s
Solution
Using A/m = 3/(rho*r), dT/dt = 3*sigma*(290⁴ - 150⁴)/(rho*r*s) ~ 0.068 K/s.
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