OMacmillan Learning An ideal gas expands from 28.0 L to 92.0 L at a constant pressure of 1.00 atm. Then, the gas is cooled at a constant volume of 92.0 L back to its original temperature. It then contracts back to its original volume without changing temperature. Find the total heat flow, in joules, for the entire process. total heat flow:

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Chapter6: Thermochemistry
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Problem 64E: A 110.-g sample of copper (specific heat capacity = 0.20 J/C g) is heated to 82.4C and then placed...
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An ideal gas expands from 28.0 L to 92.0 L at a constant pressure of 1.00 atm. Then, the gas is cooled at a constant volume of
92.0 L back to its original temperature. It then contracts back to its original volume without changing temperature.
Find the total heat flow, in joules, for the entire process.
total heat flow:
Transcribed Image Text:O Macmillan Learning An ideal gas expands from 28.0 L to 92.0 L at a constant pressure of 1.00 atm. Then, the gas is cooled at a constant volume of 92.0 L back to its original temperature. It then contracts back to its original volume without changing temperature. Find the total heat flow, in joules, for the entire process. total heat flow:
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