A 0.2 m thick infinte black plate having a thermal conductivity of 3.96 W/mK is exposed to two infinite black surfaces at 300 K and 400 K as shown in figure. At steady stae the surface temperature of the plate facing the cold side is 350 K. The value of Stefan- Boltzman constant is 5.67 * 108 W/m2 K4. Assuming 1-D heat conduction. (A). Find magnitude of heat flux through the plate.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A 0.2 m thick infinte black plate having a thermal conductivity of 3.96 W/mK is exposed
to two infinite black surfaces at 300 K and 400 K as shown in figure. At steady stae the
surface temperature of the plate facing the cold side is 350 K. The value of Stefan-
Boltzman constant is 5.67 * 108 W/m2 K*. Assuming 1-D heat conduction.
(A). Find magnitude of heat flux through the plate.
-HIH
200K Vacum
Vaccum
400K
Transcribed Image Text:A 0.2 m thick infinte black plate having a thermal conductivity of 3.96 W/mK is exposed to two infinite black surfaces at 300 K and 400 K as shown in figure. At steady stae the surface temperature of the plate facing the cold side is 350 K. The value of Stefan- Boltzman constant is 5.67 * 108 W/m2 K*. Assuming 1-D heat conduction. (A). Find magnitude of heat flux through the plate. -HIH 200K Vacum Vaccum 400K
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