00. Thermodynamics Terms
Thermodynamics

272343 For the reaction $\mathrm{H}_2 \mathrm{O}_{(l)} \longrightarrow \mathrm{H}_2 \mathrm{O}_{(\mathrm{g})}$ at $\mathrm{T}=100^{\circ}$ and $\mathbf{P}=1$ atm. Choose the correct option:

1 $\Delta S_{ \text { system }}>0 \Delta S_{\text { surroundings }}>0$
2 $\Delta \mathrm{S}_{\text {system }}>0 \Delta \mathrm{S}_{\text {surroundings }} \lt0$
3 $\Delta \mathrm{S}_{\text {system }} \lt0 \Delta \mathrm{S}_{\text {surroundings }}>0$
4 $\Delta \mathrm{S}_{\text {system }} \lt0 \Delta \mathrm{S}_{\text {sumroundings }} \lt0$
Thermodynamics

272314 The volume of $2.8 \mathrm{~g}$ of $\mathrm{CO}$ at $27^{\circ} \mathrm{C}$ and 0.821 atm, pressure is $\left(\mathrm{R}-0.08210\right.$ lit.atm. $\left.\mathrm{K}^{-1} \mathrm{~mol}^{-1}\right)$

1 3 litres
2 30 litres
3 0.3 litres
4 1.5 litres
Thermodynamics

272315 For spontaneity of a cell, which is correct?

1 $\Delta \mathrm{G}=+\mathrm{ve}, \Delta \mathrm{E}=+\mathrm{ve}$
2 $\Delta \mathrm{G}=-\mathrm{ve}$
3 $\Delta \mathrm{G}=0, \Delta \mathrm{E}=0$
4 $\Delta \mathrm{G}=-\mathrm{ve}, \Delta \mathrm{E}=0$
Thermodynamics

272316 At $25^{\circ} \mathrm{C} 1$ mole of butane upon heating forms $\mathrm{CO}_2$ and $\mathrm{H}_2 \mathrm{O}$. The work done is

1 $75.6 \mathrm{~L} \mathrm{~atm}$
2 $85.6 \mathrm{~L}$ atm
3 $50.3 \mathrm{~L} \mathrm{~atm}$
4 None of these
Thermodynamics

272322 In the complete combustion of butanol $\mathrm{C}_4 \mathrm{H}_9 \mathrm{OH}(l)$, if $\Delta \mathrm{H}$ is enthalpy of combustion at constant pressure and $\Delta E$ is the heat of combustion at constant volume, then

1 $\Delta \mathrm{H}<\Delta \mathrm{E}$
2 $\Delta \mathrm{H}=\Delta \mathrm{E}$
3 $\Delta \mathrm{H}>\Delta \mathrm{E}$
4 $\Delta \mathrm{H}, \Delta \mathrm{E}$ relation cannot be predicted
Thermodynamics

272343 For the reaction $\mathrm{H}_2 \mathrm{O}_{(l)} \longrightarrow \mathrm{H}_2 \mathrm{O}_{(\mathrm{g})}$ at $\mathrm{T}=100^{\circ}$ and $\mathbf{P}=1$ atm. Choose the correct option:

1 $\Delta S_{ \text { system }}>0 \Delta S_{\text { surroundings }}>0$
2 $\Delta \mathrm{S}_{\text {system }}>0 \Delta \mathrm{S}_{\text {surroundings }} \lt0$
3 $\Delta \mathrm{S}_{\text {system }} \lt0 \Delta \mathrm{S}_{\text {surroundings }}>0$
4 $\Delta \mathrm{S}_{\text {system }} \lt0 \Delta \mathrm{S}_{\text {sumroundings }} \lt0$
Thermodynamics

272314 The volume of $2.8 \mathrm{~g}$ of $\mathrm{CO}$ at $27^{\circ} \mathrm{C}$ and 0.821 atm, pressure is $\left(\mathrm{R}-0.08210\right.$ lit.atm. $\left.\mathrm{K}^{-1} \mathrm{~mol}^{-1}\right)$

1 3 litres
2 30 litres
3 0.3 litres
4 1.5 litres
Thermodynamics

272315 For spontaneity of a cell, which is correct?

1 $\Delta \mathrm{G}=+\mathrm{ve}, \Delta \mathrm{E}=+\mathrm{ve}$
2 $\Delta \mathrm{G}=-\mathrm{ve}$
3 $\Delta \mathrm{G}=0, \Delta \mathrm{E}=0$
4 $\Delta \mathrm{G}=-\mathrm{ve}, \Delta \mathrm{E}=0$
Thermodynamics

272316 At $25^{\circ} \mathrm{C} 1$ mole of butane upon heating forms $\mathrm{CO}_2$ and $\mathrm{H}_2 \mathrm{O}$. The work done is

1 $75.6 \mathrm{~L} \mathrm{~atm}$
2 $85.6 \mathrm{~L}$ atm
3 $50.3 \mathrm{~L} \mathrm{~atm}$
4 None of these
Thermodynamics

272322 In the complete combustion of butanol $\mathrm{C}_4 \mathrm{H}_9 \mathrm{OH}(l)$, if $\Delta \mathrm{H}$ is enthalpy of combustion at constant pressure and $\Delta E$ is the heat of combustion at constant volume, then

1 $\Delta \mathrm{H}<\Delta \mathrm{E}$
2 $\Delta \mathrm{H}=\Delta \mathrm{E}$
3 $\Delta \mathrm{H}>\Delta \mathrm{E}$
4 $\Delta \mathrm{H}, \Delta \mathrm{E}$ relation cannot be predicted
Thermodynamics

272343 For the reaction $\mathrm{H}_2 \mathrm{O}_{(l)} \longrightarrow \mathrm{H}_2 \mathrm{O}_{(\mathrm{g})}$ at $\mathrm{T}=100^{\circ}$ and $\mathbf{P}=1$ atm. Choose the correct option:

1 $\Delta S_{ \text { system }}>0 \Delta S_{\text { surroundings }}>0$
2 $\Delta \mathrm{S}_{\text {system }}>0 \Delta \mathrm{S}_{\text {surroundings }} \lt0$
3 $\Delta \mathrm{S}_{\text {system }} \lt0 \Delta \mathrm{S}_{\text {surroundings }}>0$
4 $\Delta \mathrm{S}_{\text {system }} \lt0 \Delta \mathrm{S}_{\text {sumroundings }} \lt0$
Thermodynamics

272314 The volume of $2.8 \mathrm{~g}$ of $\mathrm{CO}$ at $27^{\circ} \mathrm{C}$ and 0.821 atm, pressure is $\left(\mathrm{R}-0.08210\right.$ lit.atm. $\left.\mathrm{K}^{-1} \mathrm{~mol}^{-1}\right)$

1 3 litres
2 30 litres
3 0.3 litres
4 1.5 litres
Thermodynamics

272315 For spontaneity of a cell, which is correct?

1 $\Delta \mathrm{G}=+\mathrm{ve}, \Delta \mathrm{E}=+\mathrm{ve}$
2 $\Delta \mathrm{G}=-\mathrm{ve}$
3 $\Delta \mathrm{G}=0, \Delta \mathrm{E}=0$
4 $\Delta \mathrm{G}=-\mathrm{ve}, \Delta \mathrm{E}=0$
Thermodynamics

272316 At $25^{\circ} \mathrm{C} 1$ mole of butane upon heating forms $\mathrm{CO}_2$ and $\mathrm{H}_2 \mathrm{O}$. The work done is

1 $75.6 \mathrm{~L} \mathrm{~atm}$
2 $85.6 \mathrm{~L}$ atm
3 $50.3 \mathrm{~L} \mathrm{~atm}$
4 None of these
Thermodynamics

272322 In the complete combustion of butanol $\mathrm{C}_4 \mathrm{H}_9 \mathrm{OH}(l)$, if $\Delta \mathrm{H}$ is enthalpy of combustion at constant pressure and $\Delta E$ is the heat of combustion at constant volume, then

1 $\Delta \mathrm{H}<\Delta \mathrm{E}$
2 $\Delta \mathrm{H}=\Delta \mathrm{E}$
3 $\Delta \mathrm{H}>\Delta \mathrm{E}$
4 $\Delta \mathrm{H}, \Delta \mathrm{E}$ relation cannot be predicted
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
Thermodynamics

272343 For the reaction $\mathrm{H}_2 \mathrm{O}_{(l)} \longrightarrow \mathrm{H}_2 \mathrm{O}_{(\mathrm{g})}$ at $\mathrm{T}=100^{\circ}$ and $\mathbf{P}=1$ atm. Choose the correct option:

1 $\Delta S_{ \text { system }}>0 \Delta S_{\text { surroundings }}>0$
2 $\Delta \mathrm{S}_{\text {system }}>0 \Delta \mathrm{S}_{\text {surroundings }} \lt0$
3 $\Delta \mathrm{S}_{\text {system }} \lt0 \Delta \mathrm{S}_{\text {surroundings }}>0$
4 $\Delta \mathrm{S}_{\text {system }} \lt0 \Delta \mathrm{S}_{\text {sumroundings }} \lt0$
Thermodynamics

272314 The volume of $2.8 \mathrm{~g}$ of $\mathrm{CO}$ at $27^{\circ} \mathrm{C}$ and 0.821 atm, pressure is $\left(\mathrm{R}-0.08210\right.$ lit.atm. $\left.\mathrm{K}^{-1} \mathrm{~mol}^{-1}\right)$

1 3 litres
2 30 litres
3 0.3 litres
4 1.5 litres
Thermodynamics

272315 For spontaneity of a cell, which is correct?

1 $\Delta \mathrm{G}=+\mathrm{ve}, \Delta \mathrm{E}=+\mathrm{ve}$
2 $\Delta \mathrm{G}=-\mathrm{ve}$
3 $\Delta \mathrm{G}=0, \Delta \mathrm{E}=0$
4 $\Delta \mathrm{G}=-\mathrm{ve}, \Delta \mathrm{E}=0$
Thermodynamics

272316 At $25^{\circ} \mathrm{C} 1$ mole of butane upon heating forms $\mathrm{CO}_2$ and $\mathrm{H}_2 \mathrm{O}$. The work done is

1 $75.6 \mathrm{~L} \mathrm{~atm}$
2 $85.6 \mathrm{~L}$ atm
3 $50.3 \mathrm{~L} \mathrm{~atm}$
4 None of these
Thermodynamics

272322 In the complete combustion of butanol $\mathrm{C}_4 \mathrm{H}_9 \mathrm{OH}(l)$, if $\Delta \mathrm{H}$ is enthalpy of combustion at constant pressure and $\Delta E$ is the heat of combustion at constant volume, then

1 $\Delta \mathrm{H}<\Delta \mathrm{E}$
2 $\Delta \mathrm{H}=\Delta \mathrm{E}$
3 $\Delta \mathrm{H}>\Delta \mathrm{E}$
4 $\Delta \mathrm{H}, \Delta \mathrm{E}$ relation cannot be predicted
Thermodynamics

272343 For the reaction $\mathrm{H}_2 \mathrm{O}_{(l)} \longrightarrow \mathrm{H}_2 \mathrm{O}_{(\mathrm{g})}$ at $\mathrm{T}=100^{\circ}$ and $\mathbf{P}=1$ atm. Choose the correct option:

1 $\Delta S_{ \text { system }}>0 \Delta S_{\text { surroundings }}>0$
2 $\Delta \mathrm{S}_{\text {system }}>0 \Delta \mathrm{S}_{\text {surroundings }} \lt0$
3 $\Delta \mathrm{S}_{\text {system }} \lt0 \Delta \mathrm{S}_{\text {surroundings }}>0$
4 $\Delta \mathrm{S}_{\text {system }} \lt0 \Delta \mathrm{S}_{\text {sumroundings }} \lt0$
Thermodynamics

272314 The volume of $2.8 \mathrm{~g}$ of $\mathrm{CO}$ at $27^{\circ} \mathrm{C}$ and 0.821 atm, pressure is $\left(\mathrm{R}-0.08210\right.$ lit.atm. $\left.\mathrm{K}^{-1} \mathrm{~mol}^{-1}\right)$

1 3 litres
2 30 litres
3 0.3 litres
4 1.5 litres
Thermodynamics

272315 For spontaneity of a cell, which is correct?

1 $\Delta \mathrm{G}=+\mathrm{ve}, \Delta \mathrm{E}=+\mathrm{ve}$
2 $\Delta \mathrm{G}=-\mathrm{ve}$
3 $\Delta \mathrm{G}=0, \Delta \mathrm{E}=0$
4 $\Delta \mathrm{G}=-\mathrm{ve}, \Delta \mathrm{E}=0$
Thermodynamics

272316 At $25^{\circ} \mathrm{C} 1$ mole of butane upon heating forms $\mathrm{CO}_2$ and $\mathrm{H}_2 \mathrm{O}$. The work done is

1 $75.6 \mathrm{~L} \mathrm{~atm}$
2 $85.6 \mathrm{~L}$ atm
3 $50.3 \mathrm{~L} \mathrm{~atm}$
4 None of these
Thermodynamics

272322 In the complete combustion of butanol $\mathrm{C}_4 \mathrm{H}_9 \mathrm{OH}(l)$, if $\Delta \mathrm{H}$ is enthalpy of combustion at constant pressure and $\Delta E$ is the heat of combustion at constant volume, then

1 $\Delta \mathrm{H}<\Delta \mathrm{E}$
2 $\Delta \mathrm{H}=\Delta \mathrm{E}$
3 $\Delta \mathrm{H}>\Delta \mathrm{E}$
4 $\Delta \mathrm{H}, \Delta \mathrm{E}$ relation cannot be predicted