An infinite wall that has a thickness of L = 0.22 m has a uniform heat generation of = 1250 W/m³ and a ég = 90 W/m2 and the eg thermal conductivity of k = 20 W/m-°C. At x = 0 the heat flux going into the wall is temperature of the surface at x = L is T̟ = 42 °C. Find an equation for the steady state temperature distribution in this wall as a function of the position x. Also find the value of the temperature at x = 0. ég k do TL. x= 0 x = L

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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1250 W/m and a
= 90 W/m2 and the
ég
An infinite wall that has a thickness of L = 0.22 m has a uniform heat generation of
thermal conductivity of k = 20 W/m-°C. At x = 0 the heat flux going into the wall is
temperature of the surface at x = L is T = 42 °C. Find an equation for the steady state temperature
distribution in this wall as a function of the position x. Also find the value of the temperature at x = 0.
ég
k
do
x= 0
x = L
Transcribed Image Text:1250 W/m and a = 90 W/m2 and the ég An infinite wall that has a thickness of L = 0.22 m has a uniform heat generation of thermal conductivity of k = 20 W/m-°C. At x = 0 the heat flux going into the wall is temperature of the surface at x = L is T = 42 °C. Find an equation for the steady state temperature distribution in this wall as a function of the position x. Also find the value of the temperature at x = 0. ég k do x= 0 x = L
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