For an ideal gas Cy and C, are different because of the work W associated with the volume change for a constant-pressure process. To explore the difference between Cy and Cp for a liquid or a solid, consider the process in which 5.00 mol of ethanol is warmed from 10.0°C to 60.0°C while the applied pressure remains a constant 1.00 atm. The molar mass of ethanol is M = 46.1 g/mol. Part A What is the mass of 5.00 mol of ethanol? Express your answer with the appropriate units. m = Submit Part B Q = μА Submit Value Request Answer How much heat Q enters the ethanol? Express your answer with the appropriate units. μÁ 4 Value Units Request Answer Units ? ?

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For an ideal gas Cv and C₂ are different because of the
work W associated with the volume change for a
constant-pressure process. To explore the difference
between Cy and C, for a liquid or a solid, consider the
process in which 5.00 mol of ethanol is warmed from
10.0°C to 60.0°C while the applied pressure remains a
constant 1.00 atm. The molar mass of ethanol is
M = 46.1 g/mol.
Part A
What is the mass of 5.00 mol of ethanol?
Express your answer with the appropriate units.
m =
Submit
Part B
μÅ
Value
LO
I
Submit
Request Answer
How much heat Q enters the ethanol?
Express your answer with the appropriate units.
1
μA
Value
Units
Request Answer
Units
?
www. ?
Transcribed Image Text:For an ideal gas Cv and C₂ are different because of the work W associated with the volume change for a constant-pressure process. To explore the difference between Cy and C, for a liquid or a solid, consider the process in which 5.00 mol of ethanol is warmed from 10.0°C to 60.0°C while the applied pressure remains a constant 1.00 atm. The molar mass of ethanol is M = 46.1 g/mol. Part A What is the mass of 5.00 mol of ethanol? Express your answer with the appropriate units. m = Submit Part B μÅ Value LO I Submit Request Answer How much heat Q enters the ethanol? Express your answer with the appropriate units. 1 μA Value Units Request Answer Units ? www. ?
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