A sample consisting of 1.50 mol of an ideal gas is taken through the cycle shown in the figure below. Pressure p (atm) A Adiabat 10.0 5.0 20.0 Isotherm 40.0 Volume V (L) B Time left 0:18:20 C Determine the temperature of the gas at A and B and account for any differences. Place your answers in the spaces provided rounded to the nearest whole number (do not include units). Assume that the molar heat capacity of the gas at constant volume is 12.47 JK-¹mol¹. The temperature of gas at A = The temperature of gas at B = K K Fill in the blanks in the passage to account for any differences in the temperatures at A and B. Select words from the parentheses to the right of each blank in order to fill each blank. The process AB is an (adiabatic compression, adiabatic expansion, isothermal compression, isothermal expansion) and so the temperature at B is (higher than, lower than, the same as) the temperature at A. Since work (by,on) the system, the internal energy of the system was done (decreased, increased, did not change) as the system. (heat, no heat) was transferred to

Chemistry
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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A sample consisting of 1.50 mol of an ideal gas is taken through the cycle shown in the
figure below.
Pressure p (atm)
A
Adiabat
10.0
5.0
20.0
Isotherm
40.0
Volume V (L)
B
Time left 0:18:20
C
Determine the temperature of the gas at A and B and account for any differences. Place your
answers in the spaces provided rounded to the nearest whole number (do not include
units). Assume that the molar heat capacity of the gas at constant volume is 12.47 JK-¹mol¹.
The temperature of gas at A =
The temperature of gas at B =
K
K
Fill in the blanks in the passage to account for any differences in the temperatures at A and
B. Select words from the parentheses to the right of each blank in order to fill each
blank.
The process AB is an
(adiabatic compression, adiabatic
expansion, isothermal compression, isothermal expansion) and so the temperature at B is
(higher than, lower than, the same as) the temperature at A. Since work
(by,on) the system, the internal energy of the system
was done
(decreased, increased, did not change) as
the system.
(heat, no heat) was transferred to
Transcribed Image Text:A sample consisting of 1.50 mol of an ideal gas is taken through the cycle shown in the figure below. Pressure p (atm) A Adiabat 10.0 5.0 20.0 Isotherm 40.0 Volume V (L) B Time left 0:18:20 C Determine the temperature of the gas at A and B and account for any differences. Place your answers in the spaces provided rounded to the nearest whole number (do not include units). Assume that the molar heat capacity of the gas at constant volume is 12.47 JK-¹mol¹. The temperature of gas at A = The temperature of gas at B = K K Fill in the blanks in the passage to account for any differences in the temperatures at A and B. Select words from the parentheses to the right of each blank in order to fill each blank. The process AB is an (adiabatic compression, adiabatic expansion, isothermal compression, isothermal expansion) and so the temperature at B is (higher than, lower than, the same as) the temperature at A. Since work (by,on) the system, the internal energy of the system was done (decreased, increased, did not change) as the system. (heat, no heat) was transferred to
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