A 1 kg bar of copper is heated at atmo- spheric pressure of 1.013 x 105 N/m². If its temperature increases from 14°C to 54°C, find the work done by the copper. The linear expansion coefficient of copper is 1.7 x 10-5 (°C)¹, its density is 8920 kg/m³ and its specific heat is 387 J/kg. ° C. Answer in units of J. part 2 of 2 What quantity of thermal energy is trans- ferred to the copper in this process? The specific heat of copper is 387 J/kg.° C. Answer in units of J.

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A 1 kg bar of copper is heated at atmo-
spheric pressure of 1.013 x 105 N/m².
If its temperature increases from 14°C to
54°C, find the work done by the copper.
The linear expansion coefficient of copper is
1.7 x 10-5 (°C)¹, its density is 8920 kg/m³
and its specific heat is 387 J/kg. ° C.
Answer in units of J.
part 2 of 2
What quantity of thermal energy is trans-
ferred to the copper in this process? The
specific heat of copper is 387 J/kg.° C.
Answer in units of J.
Transcribed Image Text:A 1 kg bar of copper is heated at atmo- spheric pressure of 1.013 x 105 N/m². If its temperature increases from 14°C to 54°C, find the work done by the copper. The linear expansion coefficient of copper is 1.7 x 10-5 (°C)¹, its density is 8920 kg/m³ and its specific heat is 387 J/kg. ° C. Answer in units of J. part 2 of 2 What quantity of thermal energy is trans- ferred to the copper in this process? The specific heat of copper is 387 J/kg.° C. Answer in units of J.
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