A burning stove with a large flat rectangular surface on top has enough space for cooking, if desired. The thickness of the rectangular surface is /= 48.4 cm and the stove is made of steel with a thermal conductivity constant k= 50.2 W m K . In the figure below, you can see what happens through the rectangular surface with a greater detail. The arrow shows the direction of the heat flow and Tout represents the temperature of the room, whereas Tn stands for temperature inside the stove. If the cross sectional area of the rectangular surface is A = 3700 cm2, find the rate of heat transfer through the rectangular surface for the case when Tin =171 C and T = 30.5 C. H= %3D Tout A Tin

Physics for Scientists and Engineers, Technology Update (No access codes included)
9th Edition
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Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter20: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 20.43P: A glass windowpane in a home is 0.620 cm thick and has dimensions of 1.00 in 2.00 in. On a certain...
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A burning stove with a large flat rectangular surface on top has enough space for cooking, if desired. The thickness of the
rectangular surface is /= 48.4 cm and the stove is made of steel with a thermal conductivity constant k 50.2 W m1 K1
.In the figure below, you can see what happens through the rectangular surface with a greater detail. The arrow shows the direction
of the heat flow and Tout represents the temperature of the room, whereas T, stands for temperature inside the stove. If the cross
sectional area of the rectangular surface is A = 3700 cm2, find the rate of heat transfer through the rectangular surface for the
case when T= 171 C and T= 30.5°C. H=
W
%3D
out
Tout
A
Tin
Transcribed Image Text:A burning stove with a large flat rectangular surface on top has enough space for cooking, if desired. The thickness of the rectangular surface is /= 48.4 cm and the stove is made of steel with a thermal conductivity constant k 50.2 W m1 K1 .In the figure below, you can see what happens through the rectangular surface with a greater detail. The arrow shows the direction of the heat flow and Tout represents the temperature of the room, whereas T, stands for temperature inside the stove. If the cross sectional area of the rectangular surface is A = 3700 cm2, find the rate of heat transfer through the rectangular surface for the case when T= 171 C and T= 30.5°C. H= W %3D out Tout A Tin
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