**34. A small sphere (emissivity = 0.90, radius = r) is located at the cen- ter of a spherical asbestos shell (thickness = 1.0 cm, outer radius = r2). The thickness of the shell is small compared to the inner and outer radii of the shell. The temperature of the small sphere is 800.0 °C, while the temperature of the inner surface of the shell is 600.0 °C, both temperatures remaining constant. Assuming that r/r = 10.0 and ignoring any air inside the shell, find the temperature of the outer surface of the shell.

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**34. A small sphere (emissivity = 0.90, radius = r) is located at the cen-
ter of a spherical asbestos shell (thickness = 1.0 cm, outer radius = r2).
The thickness of the shell is small compared to the inner and outer radii
of the shell. The temperature of the small sphere is 800.0 °C, while the
temperature of the inner surface of the shell is 600.0 °C, both temperatures
remaining constant. Assuming that r/r = 10.0 and ignoring any air inside
the shell, find the temperature of the outer surface of the shell.
Transcribed Image Text:**34. A small sphere (emissivity = 0.90, radius = r) is located at the cen- ter of a spherical asbestos shell (thickness = 1.0 cm, outer radius = r2). The thickness of the shell is small compared to the inner and outer radii of the shell. The temperature of the small sphere is 800.0 °C, while the temperature of the inner surface of the shell is 600.0 °C, both temperatures remaining constant. Assuming that r/r = 10.0 and ignoring any air inside the shell, find the temperature of the outer surface of the shell.
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