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The temperature gradient through the two layer composite wall consisting of two metals A and B is as shown in figure. It can be concluded that
  • a)
    metal A is better conductor of heat than metal B
  • b)
    heat flows from metal B to metal A
  • c)
    heat is being generated at the interface of metals A and B
  • d)
    free surface of metals A and B are being heated
Correct answer is option 'C'. Can you explain this answer?
Most Upvoted Answer
The temperature gradient through the two layer composite wall consisti...
According to the figure, the temperature at the interface of metal A and metal B is observed to be 300 degrees centigrade. This temperature is the highest recorded during the entire process. Additionally, the flow of heat is observed to be from a higher temperature to a lower temperature. Therefore, it can be deduced that the heat must have been generated at the interface of metal A and metal B.
Therefore option C is correct.
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Community Answer
The temperature gradient through the two layer composite wall consisti...
According to the figure, the temperature at the interface of metal A and metal B is observed to be 300 degrees centigrade. This temperature is the highest recorded during the entire process. Additionally, the flow of heat is observed to be from a higher temperature to a lower temperature. Therefore, it can be deduced that the heat must have been generated at the interface of metal A and metal B.
Therefore option C is correct.
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The temperature gradient through the two layer composite wall consisting of two metals A and B is as shown in figure. It can be concluded thata)metal A is better conductor of heat than metal Bb)heat flows from metal B to metal Ac)heat is being generated at the interface of metals A and Bd)free surface of metals A and B are being heatedCorrect answer is option 'C'. Can you explain this answer?
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