3-The temperature distribution across a wall 0.3 m thick at a certain instant of time is as T(x) = a + bx + cx² where T is in degrees Celsius and x is in meters, while = 200 °C, b = -200 °C/m and c = 30 °C/m². The wall has a thermal conductivity of k = 1 W/m. K. On a unit surface area basis, determine the rate of heat transfer into and out of the wall and the rate of change of energy stored by the wall. %3D

Elements Of Electromagnetics
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(3-The temperature distribution across a wall 0.3 m thick at a certain instant of time is as
T(x) = a + bx + cx2 where T is in degrees Celsius and x is in meters, while = 200 °C,
b = -200 °C/m and c 30 °C/m2. The wall has a thermal conductivity of k =
1 W/m. K. On a unit surface area basis, determine the rate of heat transfer into and out of
%3D
%3D
the wall and the rate of change of energy stored by the wall.
Transcribed Image Text:(3-The temperature distribution across a wall 0.3 m thick at a certain instant of time is as T(x) = a + bx + cx2 where T is in degrees Celsius and x is in meters, while = 200 °C, b = -200 °C/m and c 30 °C/m2. The wall has a thermal conductivity of k = 1 W/m. K. On a unit surface area basis, determine the rate of heat transfer into and out of %3D %3D the wall and the rate of change of energy stored by the wall.
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