Thermodynamic Processes
PHXI12:THERMODYNAMICS

371461 The volume of gas is reduced adiabatically to (1/4) of its volume at \(27^\circ C\). If \(\gamma=1.4\) the new temperature will be:

1 \(150 \times {(4)^{0.4}}\;K\)
2 \(300 \times {(4)^{0.4}}\;K\)
3 \(250 \times {(4)^{0.4}}K\)
4 None of these
PHXI12:THERMODYNAMICS

371462 A monoatomic gas is enclosed in a cylinder with a movable frictionless piston. Its initial thermodynamic state at pressure \({P_i} = {10^5}\;Pa\) and volume \({V_i} = {10^{ - 3}}\;{m^3}\) changes to a final state at \({P_f} = (1/32) \times {10^5}\;Pa\) and \({V_f} = 8 \times {10^{ - 3}}\;{m^3}\) in an adiabatic quasi-static process, The amount of heat supplied to the system in the process is

1 \(294\;J\)
2 \(112\;J\)
3 \(813\;J\)
4 \(588\;J\)
PHXI12:THERMODYNAMICS

371463 The adiabatic Bulk modulus of a perfect gas at a pressure is given by

1 \(2 P\)
2 \(P\)
3 \(\gamma P\)
4 \(P / 2\)
PHXI12:THERMODYNAMICS

371464 When there is no heat change from surroundings in a system, then the process taking place is

1 isobaric
2 isochoric
3 adiabatic
4 isothermal
PHXI12:THERMODYNAMICS

371461 The volume of gas is reduced adiabatically to (1/4) of its volume at \(27^\circ C\). If \(\gamma=1.4\) the new temperature will be:

1 \(150 \times {(4)^{0.4}}\;K\)
2 \(300 \times {(4)^{0.4}}\;K\)
3 \(250 \times {(4)^{0.4}}K\)
4 None of these
PHXI12:THERMODYNAMICS

371462 A monoatomic gas is enclosed in a cylinder with a movable frictionless piston. Its initial thermodynamic state at pressure \({P_i} = {10^5}\;Pa\) and volume \({V_i} = {10^{ - 3}}\;{m^3}\) changes to a final state at \({P_f} = (1/32) \times {10^5}\;Pa\) and \({V_f} = 8 \times {10^{ - 3}}\;{m^3}\) in an adiabatic quasi-static process, The amount of heat supplied to the system in the process is

1 \(294\;J\)
2 \(112\;J\)
3 \(813\;J\)
4 \(588\;J\)
PHXI12:THERMODYNAMICS

371463 The adiabatic Bulk modulus of a perfect gas at a pressure is given by

1 \(2 P\)
2 \(P\)
3 \(\gamma P\)
4 \(P / 2\)
PHXI12:THERMODYNAMICS

371464 When there is no heat change from surroundings in a system, then the process taking place is

1 isobaric
2 isochoric
3 adiabatic
4 isothermal
PHXI12:THERMODYNAMICS

371461 The volume of gas is reduced adiabatically to (1/4) of its volume at \(27^\circ C\). If \(\gamma=1.4\) the new temperature will be:

1 \(150 \times {(4)^{0.4}}\;K\)
2 \(300 \times {(4)^{0.4}}\;K\)
3 \(250 \times {(4)^{0.4}}K\)
4 None of these
PHXI12:THERMODYNAMICS

371462 A monoatomic gas is enclosed in a cylinder with a movable frictionless piston. Its initial thermodynamic state at pressure \({P_i} = {10^5}\;Pa\) and volume \({V_i} = {10^{ - 3}}\;{m^3}\) changes to a final state at \({P_f} = (1/32) \times {10^5}\;Pa\) and \({V_f} = 8 \times {10^{ - 3}}\;{m^3}\) in an adiabatic quasi-static process, The amount of heat supplied to the system in the process is

1 \(294\;J\)
2 \(112\;J\)
3 \(813\;J\)
4 \(588\;J\)
PHXI12:THERMODYNAMICS

371463 The adiabatic Bulk modulus of a perfect gas at a pressure is given by

1 \(2 P\)
2 \(P\)
3 \(\gamma P\)
4 \(P / 2\)
PHXI12:THERMODYNAMICS

371464 When there is no heat change from surroundings in a system, then the process taking place is

1 isobaric
2 isochoric
3 adiabatic
4 isothermal
PHXI12:THERMODYNAMICS

371461 The volume of gas is reduced adiabatically to (1/4) of its volume at \(27^\circ C\). If \(\gamma=1.4\) the new temperature will be:

1 \(150 \times {(4)^{0.4}}\;K\)
2 \(300 \times {(4)^{0.4}}\;K\)
3 \(250 \times {(4)^{0.4}}K\)
4 None of these
PHXI12:THERMODYNAMICS

371462 A monoatomic gas is enclosed in a cylinder with a movable frictionless piston. Its initial thermodynamic state at pressure \({P_i} = {10^5}\;Pa\) and volume \({V_i} = {10^{ - 3}}\;{m^3}\) changes to a final state at \({P_f} = (1/32) \times {10^5}\;Pa\) and \({V_f} = 8 \times {10^{ - 3}}\;{m^3}\) in an adiabatic quasi-static process, The amount of heat supplied to the system in the process is

1 \(294\;J\)
2 \(112\;J\)
3 \(813\;J\)
4 \(588\;J\)
PHXI12:THERMODYNAMICS

371463 The adiabatic Bulk modulus of a perfect gas at a pressure is given by

1 \(2 P\)
2 \(P\)
3 \(\gamma P\)
4 \(P / 2\)
PHXI12:THERMODYNAMICS

371464 When there is no heat change from surroundings in a system, then the process taking place is

1 isobaric
2 isochoric
3 adiabatic
4 isothermal
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