02. Thermodynamics Process
Thermodynamics

148251 Which equation is valid for adiabatic process?

1 $\mathrm{TV}^{\gamma-1}=$ constant
2 $\mathrm{pV}^{\gamma-1}=$ constant
3 $\mathrm{T}^{\gamma} \mathrm{V}^{\gamma-1}=$ constant
4 $\frac{\mathrm{p}^{\gamma-1}}{\mathrm{~T}^{\gamma-1}}=$ constant
Thermodynamics

148253 A thermodynamic system is taken through the cycle PQRSP process. The net work done by the system is

1 $20 \mathrm{~J}$
2 $-20 \mathrm{~J}$
3 $400 \mathrm{~J}$
4 $-374 \mathrm{~J}$
Thermodynamics

148254 A gas at the temperature $250 \mathrm{~K}$ is contained in a closed vessel. If the gas is heated through $1 \mathrm{~K}$, then percentage increase in its pressure will be

1 $0.4 \%$
2 $0.2 \%$
3 $0.1 \%$
4 $0.8 \%$
Thermodynamics

148255 Work done by air when it expands from $50 \mathrm{~L}$ to $150 \mathrm{~L}$ at a constant pressure of 2 atmosphere is

1 $2 \times 10^{4} \mathrm{~J}$
2 $2 \times 100 \mathrm{~J}$
3 $2 \times 10^{11} \mathrm{~J}$
4 $2 \times 10^{15} \mathrm{~J}$
Thermodynamics

148251 Which equation is valid for adiabatic process?

1 $\mathrm{TV}^{\gamma-1}=$ constant
2 $\mathrm{pV}^{\gamma-1}=$ constant
3 $\mathrm{T}^{\gamma} \mathrm{V}^{\gamma-1}=$ constant
4 $\frac{\mathrm{p}^{\gamma-1}}{\mathrm{~T}^{\gamma-1}}=$ constant
Thermodynamics

148253 A thermodynamic system is taken through the cycle PQRSP process. The net work done by the system is

1 $20 \mathrm{~J}$
2 $-20 \mathrm{~J}$
3 $400 \mathrm{~J}$
4 $-374 \mathrm{~J}$
Thermodynamics

148254 A gas at the temperature $250 \mathrm{~K}$ is contained in a closed vessel. If the gas is heated through $1 \mathrm{~K}$, then percentage increase in its pressure will be

1 $0.4 \%$
2 $0.2 \%$
3 $0.1 \%$
4 $0.8 \%$
Thermodynamics

148255 Work done by air when it expands from $50 \mathrm{~L}$ to $150 \mathrm{~L}$ at a constant pressure of 2 atmosphere is

1 $2 \times 10^{4} \mathrm{~J}$
2 $2 \times 100 \mathrm{~J}$
3 $2 \times 10^{11} \mathrm{~J}$
4 $2 \times 10^{15} \mathrm{~J}$
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Thermodynamics

148251 Which equation is valid for adiabatic process?

1 $\mathrm{TV}^{\gamma-1}=$ constant
2 $\mathrm{pV}^{\gamma-1}=$ constant
3 $\mathrm{T}^{\gamma} \mathrm{V}^{\gamma-1}=$ constant
4 $\frac{\mathrm{p}^{\gamma-1}}{\mathrm{~T}^{\gamma-1}}=$ constant
Thermodynamics

148253 A thermodynamic system is taken through the cycle PQRSP process. The net work done by the system is

1 $20 \mathrm{~J}$
2 $-20 \mathrm{~J}$
3 $400 \mathrm{~J}$
4 $-374 \mathrm{~J}$
Thermodynamics

148254 A gas at the temperature $250 \mathrm{~K}$ is contained in a closed vessel. If the gas is heated through $1 \mathrm{~K}$, then percentage increase in its pressure will be

1 $0.4 \%$
2 $0.2 \%$
3 $0.1 \%$
4 $0.8 \%$
Thermodynamics

148255 Work done by air when it expands from $50 \mathrm{~L}$ to $150 \mathrm{~L}$ at a constant pressure of 2 atmosphere is

1 $2 \times 10^{4} \mathrm{~J}$
2 $2 \times 100 \mathrm{~J}$
3 $2 \times 10^{11} \mathrm{~J}$
4 $2 \times 10^{15} \mathrm{~J}$
Thermodynamics

148251 Which equation is valid for adiabatic process?

1 $\mathrm{TV}^{\gamma-1}=$ constant
2 $\mathrm{pV}^{\gamma-1}=$ constant
3 $\mathrm{T}^{\gamma} \mathrm{V}^{\gamma-1}=$ constant
4 $\frac{\mathrm{p}^{\gamma-1}}{\mathrm{~T}^{\gamma-1}}=$ constant
Thermodynamics

148253 A thermodynamic system is taken through the cycle PQRSP process. The net work done by the system is

1 $20 \mathrm{~J}$
2 $-20 \mathrm{~J}$
3 $400 \mathrm{~J}$
4 $-374 \mathrm{~J}$
Thermodynamics

148254 A gas at the temperature $250 \mathrm{~K}$ is contained in a closed vessel. If the gas is heated through $1 \mathrm{~K}$, then percentage increase in its pressure will be

1 $0.4 \%$
2 $0.2 \%$
3 $0.1 \%$
4 $0.8 \%$
Thermodynamics

148255 Work done by air when it expands from $50 \mathrm{~L}$ to $150 \mathrm{~L}$ at a constant pressure of 2 atmosphere is

1 $2 \times 10^{4} \mathrm{~J}$
2 $2 \times 100 \mathrm{~J}$
3 $2 \times 10^{11} \mathrm{~J}$
4 $2 \times 10^{15} \mathrm{~J}$