First Law of Thermodynamics
CHXI06:THERMODYNAMICS

369334 Mathematical equation of first law of thermodynamics for isochoric process is

1 \(\mathrm{\Delta \mathrm{U}=\mathrm{q}_{\mathrm{v}}}\)
2 \(\mathrm{-\Delta \mathrm{U}=\mathrm{q}_{\mathrm{v}}}\)
3 \(\mathrm{q=-W}\)
4 \(\mathrm{\Delta \mathrm{U}=\mathrm{W}}\)
CHXI06:THERMODYNAMICS

369335 When \({\text{x kJ}}\) heat is provided to a system, work equivalent to \(\mathrm{yJ}\) is done on it. What is internal energy change during this operation?

1 \((1000 \mathrm{x}+\mathrm{y}) \mathrm{J}\)
2 \({\text{1000(x + y) J}}\)
3 \({\text{(x + 1000 y) J}}\)
4 \({\text{x + yJ}}\)
CHXI06:THERMODYNAMICS

369336 When 1 mole of gas is heated at constant volume, the temperature rises from \(273 \mathrm{~K}\) to \(546 \mathrm{~K}\). If heat supplied to the gas is \(\mathrm{xJ}\), then find the correct statement from the following.

1 \({\text{Q = }}\Delta {\text{U = xJ, W = 0}}\)
2 \(\mathrm{Q}=\mathrm{W}=\mathrm{xJ}, \Delta \mathrm{V}=0\)
3 \(\Delta {\text{V}} = 0,{\text{Q}} = {\text{W}} = - {\text{xJ}}\)
4 \(\mathrm{Q}=-\mathrm{W}=\mathrm{xJ}, \Delta \mathrm{V}=0\)
CHXI06:THERMODYNAMICS

369337 In a process, a system performs \(238 \mathrm{~J}\) of work on it's surrounding by absorbing \(54 \mathrm{~J}\) of heat. What is the change in internal energy of system during this operation?

1 \(222 \mathrm{~J}\)
2 \(-192 \mathrm{~J}\)
3 \(54 \mathrm{~J}\)
4 \(-184 \mathrm{~J}\)
CHXI06:THERMODYNAMICS

369338 Assertion :
First law of thermodynamics is identical to the law of conservation of energy.
Reason :
It states that the total energy of the universe is constant.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but Reason is correct.
CHXI06:THERMODYNAMICS

369334 Mathematical equation of first law of thermodynamics for isochoric process is

1 \(\mathrm{\Delta \mathrm{U}=\mathrm{q}_{\mathrm{v}}}\)
2 \(\mathrm{-\Delta \mathrm{U}=\mathrm{q}_{\mathrm{v}}}\)
3 \(\mathrm{q=-W}\)
4 \(\mathrm{\Delta \mathrm{U}=\mathrm{W}}\)
CHXI06:THERMODYNAMICS

369335 When \({\text{x kJ}}\) heat is provided to a system, work equivalent to \(\mathrm{yJ}\) is done on it. What is internal energy change during this operation?

1 \((1000 \mathrm{x}+\mathrm{y}) \mathrm{J}\)
2 \({\text{1000(x + y) J}}\)
3 \({\text{(x + 1000 y) J}}\)
4 \({\text{x + yJ}}\)
CHXI06:THERMODYNAMICS

369336 When 1 mole of gas is heated at constant volume, the temperature rises from \(273 \mathrm{~K}\) to \(546 \mathrm{~K}\). If heat supplied to the gas is \(\mathrm{xJ}\), then find the correct statement from the following.

1 \({\text{Q = }}\Delta {\text{U = xJ, W = 0}}\)
2 \(\mathrm{Q}=\mathrm{W}=\mathrm{xJ}, \Delta \mathrm{V}=0\)
3 \(\Delta {\text{V}} = 0,{\text{Q}} = {\text{W}} = - {\text{xJ}}\)
4 \(\mathrm{Q}=-\mathrm{W}=\mathrm{xJ}, \Delta \mathrm{V}=0\)
CHXI06:THERMODYNAMICS

369337 In a process, a system performs \(238 \mathrm{~J}\) of work on it's surrounding by absorbing \(54 \mathrm{~J}\) of heat. What is the change in internal energy of system during this operation?

1 \(222 \mathrm{~J}\)
2 \(-192 \mathrm{~J}\)
3 \(54 \mathrm{~J}\)
4 \(-184 \mathrm{~J}\)
CHXI06:THERMODYNAMICS

369338 Assertion :
First law of thermodynamics is identical to the law of conservation of energy.
Reason :
It states that the total energy of the universe is constant.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but Reason is correct.
CHXI06:THERMODYNAMICS

369334 Mathematical equation of first law of thermodynamics for isochoric process is

1 \(\mathrm{\Delta \mathrm{U}=\mathrm{q}_{\mathrm{v}}}\)
2 \(\mathrm{-\Delta \mathrm{U}=\mathrm{q}_{\mathrm{v}}}\)
3 \(\mathrm{q=-W}\)
4 \(\mathrm{\Delta \mathrm{U}=\mathrm{W}}\)
CHXI06:THERMODYNAMICS

369335 When \({\text{x kJ}}\) heat is provided to a system, work equivalent to \(\mathrm{yJ}\) is done on it. What is internal energy change during this operation?

1 \((1000 \mathrm{x}+\mathrm{y}) \mathrm{J}\)
2 \({\text{1000(x + y) J}}\)
3 \({\text{(x + 1000 y) J}}\)
4 \({\text{x + yJ}}\)
CHXI06:THERMODYNAMICS

369336 When 1 mole of gas is heated at constant volume, the temperature rises from \(273 \mathrm{~K}\) to \(546 \mathrm{~K}\). If heat supplied to the gas is \(\mathrm{xJ}\), then find the correct statement from the following.

1 \({\text{Q = }}\Delta {\text{U = xJ, W = 0}}\)
2 \(\mathrm{Q}=\mathrm{W}=\mathrm{xJ}, \Delta \mathrm{V}=0\)
3 \(\Delta {\text{V}} = 0,{\text{Q}} = {\text{W}} = - {\text{xJ}}\)
4 \(\mathrm{Q}=-\mathrm{W}=\mathrm{xJ}, \Delta \mathrm{V}=0\)
CHXI06:THERMODYNAMICS

369337 In a process, a system performs \(238 \mathrm{~J}\) of work on it's surrounding by absorbing \(54 \mathrm{~J}\) of heat. What is the change in internal energy of system during this operation?

1 \(222 \mathrm{~J}\)
2 \(-192 \mathrm{~J}\)
3 \(54 \mathrm{~J}\)
4 \(-184 \mathrm{~J}\)
CHXI06:THERMODYNAMICS

369338 Assertion :
First law of thermodynamics is identical to the law of conservation of energy.
Reason :
It states that the total energy of the universe is constant.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but Reason is correct.
CHXI06:THERMODYNAMICS

369334 Mathematical equation of first law of thermodynamics for isochoric process is

1 \(\mathrm{\Delta \mathrm{U}=\mathrm{q}_{\mathrm{v}}}\)
2 \(\mathrm{-\Delta \mathrm{U}=\mathrm{q}_{\mathrm{v}}}\)
3 \(\mathrm{q=-W}\)
4 \(\mathrm{\Delta \mathrm{U}=\mathrm{W}}\)
CHXI06:THERMODYNAMICS

369335 When \({\text{x kJ}}\) heat is provided to a system, work equivalent to \(\mathrm{yJ}\) is done on it. What is internal energy change during this operation?

1 \((1000 \mathrm{x}+\mathrm{y}) \mathrm{J}\)
2 \({\text{1000(x + y) J}}\)
3 \({\text{(x + 1000 y) J}}\)
4 \({\text{x + yJ}}\)
CHXI06:THERMODYNAMICS

369336 When 1 mole of gas is heated at constant volume, the temperature rises from \(273 \mathrm{~K}\) to \(546 \mathrm{~K}\). If heat supplied to the gas is \(\mathrm{xJ}\), then find the correct statement from the following.

1 \({\text{Q = }}\Delta {\text{U = xJ, W = 0}}\)
2 \(\mathrm{Q}=\mathrm{W}=\mathrm{xJ}, \Delta \mathrm{V}=0\)
3 \(\Delta {\text{V}} = 0,{\text{Q}} = {\text{W}} = - {\text{xJ}}\)
4 \(\mathrm{Q}=-\mathrm{W}=\mathrm{xJ}, \Delta \mathrm{V}=0\)
CHXI06:THERMODYNAMICS

369337 In a process, a system performs \(238 \mathrm{~J}\) of work on it's surrounding by absorbing \(54 \mathrm{~J}\) of heat. What is the change in internal energy of system during this operation?

1 \(222 \mathrm{~J}\)
2 \(-192 \mathrm{~J}\)
3 \(54 \mathrm{~J}\)
4 \(-184 \mathrm{~J}\)
CHXI06:THERMODYNAMICS

369338 Assertion :
First law of thermodynamics is identical to the law of conservation of energy.
Reason :
It states that the total energy of the universe is constant.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but Reason is correct.
CHXI06:THERMODYNAMICS

369334 Mathematical equation of first law of thermodynamics for isochoric process is

1 \(\mathrm{\Delta \mathrm{U}=\mathrm{q}_{\mathrm{v}}}\)
2 \(\mathrm{-\Delta \mathrm{U}=\mathrm{q}_{\mathrm{v}}}\)
3 \(\mathrm{q=-W}\)
4 \(\mathrm{\Delta \mathrm{U}=\mathrm{W}}\)
CHXI06:THERMODYNAMICS

369335 When \({\text{x kJ}}\) heat is provided to a system, work equivalent to \(\mathrm{yJ}\) is done on it. What is internal energy change during this operation?

1 \((1000 \mathrm{x}+\mathrm{y}) \mathrm{J}\)
2 \({\text{1000(x + y) J}}\)
3 \({\text{(x + 1000 y) J}}\)
4 \({\text{x + yJ}}\)
CHXI06:THERMODYNAMICS

369336 When 1 mole of gas is heated at constant volume, the temperature rises from \(273 \mathrm{~K}\) to \(546 \mathrm{~K}\). If heat supplied to the gas is \(\mathrm{xJ}\), then find the correct statement from the following.

1 \({\text{Q = }}\Delta {\text{U = xJ, W = 0}}\)
2 \(\mathrm{Q}=\mathrm{W}=\mathrm{xJ}, \Delta \mathrm{V}=0\)
3 \(\Delta {\text{V}} = 0,{\text{Q}} = {\text{W}} = - {\text{xJ}}\)
4 \(\mathrm{Q}=-\mathrm{W}=\mathrm{xJ}, \Delta \mathrm{V}=0\)
CHXI06:THERMODYNAMICS

369337 In a process, a system performs \(238 \mathrm{~J}\) of work on it's surrounding by absorbing \(54 \mathrm{~J}\) of heat. What is the change in internal energy of system during this operation?

1 \(222 \mathrm{~J}\)
2 \(-192 \mathrm{~J}\)
3 \(54 \mathrm{~J}\)
4 \(-184 \mathrm{~J}\)
CHXI06:THERMODYNAMICS

369338 Assertion :
First law of thermodynamics is identical to the law of conservation of energy.
Reason :
It states that the total energy of the universe is constant.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but Reason is correct.