06. Adiabatic Process
Thermodynamics

148492 A mixture of two non-reactive ideal gases is enclosed in a vessel consisting of one mole of a monoatomic gas ' $A$ ' and ' $n$ ' moles of diatomic gas ' $B$ ' at a temperature ' $T$ '. If the adiabatic constant of the gaseous mixture is $\frac{13}{9}$, then the value of ' $n$ ' is.

1 5
2 2
3 4
4 3
Thermodynamics

148493 5.6 litre of helium gas at STP is adiabatically compressed to 0.7 litre. If the initial temperature of the gas is $\mathrm{T} K$, work done in the process is ( $R$ is universal gas constant in SI units)

1 $\frac{9}{8} \mathrm{RT}$
2 $-\left(\frac{9}{8} \mathrm{RT}\right)$
3 $-\left(\frac{4}{3} \mathrm{RT}\right)$
4 $\frac{3}{4} \mathrm{RT}$
Thermodynamics

148494 Starting with the same initial conditions, an ideal gas expands from volume $V_{1}$ to $V_{2}$ in three different ways. The work done by the gas is $W_{1}$ if the process is purely isothermal, $W_{2}$ if purely isobaric and $W_{3}$ if purely adiabatic. The

1 $\mathrm{W}_{1}>\mathrm{W}_{2}>\mathrm{W}_{3}$
2 $\mathrm{W}_{2}>\mathrm{W}_{1}>\mathrm{W}_{3}$
3 $\mathrm{W}_{2}>\mathrm{W}_{3}>\mathrm{W}_{1}$
4 $\mathrm{W}_{1}>\mathrm{W}_{3}>\mathrm{W}_{2}$
Thermodynamics

148495 An ideal gas is compressed to half its initial volume by means of several process. Which of the process results in the maximum work done on the gas?

1 Adiabatic
2 Isobaric
3 Isochoric
4 Isothermal
Thermodynamics

148498 In which of the following processes, heat is neither absorbed nor released by a system?

1 Adiabatic
2 Isobaric
3 Isochoric
4 Isothermal
Thermodynamics

148492 A mixture of two non-reactive ideal gases is enclosed in a vessel consisting of one mole of a monoatomic gas ' $A$ ' and ' $n$ ' moles of diatomic gas ' $B$ ' at a temperature ' $T$ '. If the adiabatic constant of the gaseous mixture is $\frac{13}{9}$, then the value of ' $n$ ' is.

1 5
2 2
3 4
4 3
Thermodynamics

148493 5.6 litre of helium gas at STP is adiabatically compressed to 0.7 litre. If the initial temperature of the gas is $\mathrm{T} K$, work done in the process is ( $R$ is universal gas constant in SI units)

1 $\frac{9}{8} \mathrm{RT}$
2 $-\left(\frac{9}{8} \mathrm{RT}\right)$
3 $-\left(\frac{4}{3} \mathrm{RT}\right)$
4 $\frac{3}{4} \mathrm{RT}$
Thermodynamics

148494 Starting with the same initial conditions, an ideal gas expands from volume $V_{1}$ to $V_{2}$ in three different ways. The work done by the gas is $W_{1}$ if the process is purely isothermal, $W_{2}$ if purely isobaric and $W_{3}$ if purely adiabatic. The

1 $\mathrm{W}_{1}>\mathrm{W}_{2}>\mathrm{W}_{3}$
2 $\mathrm{W}_{2}>\mathrm{W}_{1}>\mathrm{W}_{3}$
3 $\mathrm{W}_{2}>\mathrm{W}_{3}>\mathrm{W}_{1}$
4 $\mathrm{W}_{1}>\mathrm{W}_{3}>\mathrm{W}_{2}$
Thermodynamics

148495 An ideal gas is compressed to half its initial volume by means of several process. Which of the process results in the maximum work done on the gas?

1 Adiabatic
2 Isobaric
3 Isochoric
4 Isothermal
Thermodynamics

148498 In which of the following processes, heat is neither absorbed nor released by a system?

1 Adiabatic
2 Isobaric
3 Isochoric
4 Isothermal
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
Thermodynamics

148492 A mixture of two non-reactive ideal gases is enclosed in a vessel consisting of one mole of a monoatomic gas ' $A$ ' and ' $n$ ' moles of diatomic gas ' $B$ ' at a temperature ' $T$ '. If the adiabatic constant of the gaseous mixture is $\frac{13}{9}$, then the value of ' $n$ ' is.

1 5
2 2
3 4
4 3
Thermodynamics

148493 5.6 litre of helium gas at STP is adiabatically compressed to 0.7 litre. If the initial temperature of the gas is $\mathrm{T} K$, work done in the process is ( $R$ is universal gas constant in SI units)

1 $\frac{9}{8} \mathrm{RT}$
2 $-\left(\frac{9}{8} \mathrm{RT}\right)$
3 $-\left(\frac{4}{3} \mathrm{RT}\right)$
4 $\frac{3}{4} \mathrm{RT}$
Thermodynamics

148494 Starting with the same initial conditions, an ideal gas expands from volume $V_{1}$ to $V_{2}$ in three different ways. The work done by the gas is $W_{1}$ if the process is purely isothermal, $W_{2}$ if purely isobaric and $W_{3}$ if purely adiabatic. The

1 $\mathrm{W}_{1}>\mathrm{W}_{2}>\mathrm{W}_{3}$
2 $\mathrm{W}_{2}>\mathrm{W}_{1}>\mathrm{W}_{3}$
3 $\mathrm{W}_{2}>\mathrm{W}_{3}>\mathrm{W}_{1}$
4 $\mathrm{W}_{1}>\mathrm{W}_{3}>\mathrm{W}_{2}$
Thermodynamics

148495 An ideal gas is compressed to half its initial volume by means of several process. Which of the process results in the maximum work done on the gas?

1 Adiabatic
2 Isobaric
3 Isochoric
4 Isothermal
Thermodynamics

148498 In which of the following processes, heat is neither absorbed nor released by a system?

1 Adiabatic
2 Isobaric
3 Isochoric
4 Isothermal
Thermodynamics

148492 A mixture of two non-reactive ideal gases is enclosed in a vessel consisting of one mole of a monoatomic gas ' $A$ ' and ' $n$ ' moles of diatomic gas ' $B$ ' at a temperature ' $T$ '. If the adiabatic constant of the gaseous mixture is $\frac{13}{9}$, then the value of ' $n$ ' is.

1 5
2 2
3 4
4 3
Thermodynamics

148493 5.6 litre of helium gas at STP is adiabatically compressed to 0.7 litre. If the initial temperature of the gas is $\mathrm{T} K$, work done in the process is ( $R$ is universal gas constant in SI units)

1 $\frac{9}{8} \mathrm{RT}$
2 $-\left(\frac{9}{8} \mathrm{RT}\right)$
3 $-\left(\frac{4}{3} \mathrm{RT}\right)$
4 $\frac{3}{4} \mathrm{RT}$
Thermodynamics

148494 Starting with the same initial conditions, an ideal gas expands from volume $V_{1}$ to $V_{2}$ in three different ways. The work done by the gas is $W_{1}$ if the process is purely isothermal, $W_{2}$ if purely isobaric and $W_{3}$ if purely adiabatic. The

1 $\mathrm{W}_{1}>\mathrm{W}_{2}>\mathrm{W}_{3}$
2 $\mathrm{W}_{2}>\mathrm{W}_{1}>\mathrm{W}_{3}$
3 $\mathrm{W}_{2}>\mathrm{W}_{3}>\mathrm{W}_{1}$
4 $\mathrm{W}_{1}>\mathrm{W}_{3}>\mathrm{W}_{2}$
Thermodynamics

148495 An ideal gas is compressed to half its initial volume by means of several process. Which of the process results in the maximum work done on the gas?

1 Adiabatic
2 Isobaric
3 Isochoric
4 Isothermal
Thermodynamics

148498 In which of the following processes, heat is neither absorbed nor released by a system?

1 Adiabatic
2 Isobaric
3 Isochoric
4 Isothermal
Thermodynamics

148492 A mixture of two non-reactive ideal gases is enclosed in a vessel consisting of one mole of a monoatomic gas ' $A$ ' and ' $n$ ' moles of diatomic gas ' $B$ ' at a temperature ' $T$ '. If the adiabatic constant of the gaseous mixture is $\frac{13}{9}$, then the value of ' $n$ ' is.

1 5
2 2
3 4
4 3
Thermodynamics

148493 5.6 litre of helium gas at STP is adiabatically compressed to 0.7 litre. If the initial temperature of the gas is $\mathrm{T} K$, work done in the process is ( $R$ is universal gas constant in SI units)

1 $\frac{9}{8} \mathrm{RT}$
2 $-\left(\frac{9}{8} \mathrm{RT}\right)$
3 $-\left(\frac{4}{3} \mathrm{RT}\right)$
4 $\frac{3}{4} \mathrm{RT}$
Thermodynamics

148494 Starting with the same initial conditions, an ideal gas expands from volume $V_{1}$ to $V_{2}$ in three different ways. The work done by the gas is $W_{1}$ if the process is purely isothermal, $W_{2}$ if purely isobaric and $W_{3}$ if purely adiabatic. The

1 $\mathrm{W}_{1}>\mathrm{W}_{2}>\mathrm{W}_{3}$
2 $\mathrm{W}_{2}>\mathrm{W}_{1}>\mathrm{W}_{3}$
3 $\mathrm{W}_{2}>\mathrm{W}_{3}>\mathrm{W}_{1}$
4 $\mathrm{W}_{1}>\mathrm{W}_{3}>\mathrm{W}_{2}$
Thermodynamics

148495 An ideal gas is compressed to half its initial volume by means of several process. Which of the process results in the maximum work done on the gas?

1 Adiabatic
2 Isobaric
3 Isochoric
4 Isothermal
Thermodynamics

148498 In which of the following processes, heat is neither absorbed nor released by a system?

1 Adiabatic
2 Isobaric
3 Isochoric
4 Isothermal