The work done to compress one mole of monatomic ideal gas is 6200 J. The temperature of the gas changes from 350 to 550 K. How much heat flows between the gas and its surroundings? Determine whether the heat flows into or out of the gas. (Internal energy of monatomic ideal gas: U=3NRT/2, where n = no. of moles, in mol R= Universal gas constant = 8.314 J/mol.K T= temperature, in K)

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The work done to compress one mole of
monatomic ideal gas is 6200 J. The
temperature of the gas changes from 350 to
550 K. How much heat flows between the
gas and its surroundings? Determine
whether the heat flows into or out of the
gas. (Internal energy of monatomic ideal
gas:
U=3NRT/2, where n = no. of moles, in mol
R= Universal gas constant = 8.314 J/mol.K
T= temperature, in K)
Transcribed Image Text:The work done to compress one mole of monatomic ideal gas is 6200 J. The temperature of the gas changes from 350 to 550 K. How much heat flows between the gas and its surroundings? Determine whether the heat flows into or out of the gas. (Internal energy of monatomic ideal gas: U=3NRT/2, where n = no. of moles, in mol R= Universal gas constant = 8.314 J/mol.K T= temperature, in K)
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