Two concentric spheres of diameters d1 = 0.8 m and d2 = 1.2 m, have surface temperatures T1 = 450 K and T2 = 300 K
respectively. If the surface emissivities are 0.5 and 0.05 respectively, determine the net radiation heat exchange between
the two spheres.
net radiation heat exchange between the two spheres.
"\\dot Q=\\frac{\\sigma A_1(T_1^{4}-T_2^{4})}{\\frac{1-\\epsilon_1 }{\\epsilon_1}+\\frac{1}{F_{12}}+\\frac{A_1}{A_2}+\\frac{1-\\epsilon_2 }{\\epsilon_2}}"
Here, "\\sigma = 5.67\\times10^{-8}\\frac{W}{m^2K^4}" and F12=1
"\\dot Q=\\frac{5.67\\times10^{-8} \\times 8.04\\times (450^{4}-300^{4})}{\\frac{1-0.5 }{0.5}+\\frac{1}{1}+\\frac{8.04}{0.0314}+\\frac{1-0.05 }{0.05}}=51.14" W
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