A composite wall layer consists of layer A covered by layer B. The thermal resistance of layer A is 0.75 °C/W and the thermal resistance of layer B is 2.50 °C/W. The exposed surface of layer A is at a temperature of 60°C. If the heat transfer per unit area across the composite wall is 30 W/m?, what is the temperature at the interface between layer A and layer B? Express your answer in °C.

Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
8th Edition
ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
Publisher:Kreith, Frank; Manglik, Raj M.
Chapter3: Transient Heat Conduction
Section: Chapter Questions
Problem 3.16P: 3.16 A large, 2.54-cm.-thick copper plate is placed between two air streams. The heat transfer...
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A composite wall layer consists of layer A covered by layer B. The thermal resistance of layer A is
0.75 °C/W and the thermal resistance of layer B is 2.50 °C/W. The exposed surface of layer A is at a
temperature of 60°C. If the heat transfer per unit area across the composite wall is 30 W/m?, what is the
temperature at the interface between layer A and layer B? Express your answer in °C.
Transcribed Image Text:A composite wall layer consists of layer A covered by layer B. The thermal resistance of layer A is 0.75 °C/W and the thermal resistance of layer B is 2.50 °C/W. The exposed surface of layer A is at a temperature of 60°C. If the heat transfer per unit area across the composite wall is 30 W/m?, what is the temperature at the interface between layer A and layer B? Express your answer in °C.
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