Ideal Gas Equation and Vander Waal equation
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
Kinetic Theory of Gases

138987 For the T-V relation shown in the figure below, which of the following statements is true?

1 $\mathrm{P}_{1}>\mathrm{P}_{2}$
2 $\mathrm{P}_{1} \lt \mathrm{P}_{2}$
3 $\mathrm{P}_{1}=\mathrm{P}_{2}$
4 None of these
Kinetic Theory of Gases

138988 Two non-reactive monoatomic ideal gases have their atomic masses in the ratio $3: 4$. The ratio of their partial pressures when enclosed in a vessel kept at a constant temperature is $2: 3$. The ratio of their densities is:

1 1.1
2 2.0
3 0.9
4 0.5
Kinetic Theory of Gases

138989 If pressure of real gas $\mathrm{O}_{2}$ in a container is given by $P=\frac{R T}{2 V-b}-\frac{a}{4 b^{2}}$, then the mass of the gas in the container is

1 $32 \mathrm{gm}$
2 $16 \mathrm{gm}$
3 $4 \mathrm{gm}$
4 $64 \mathrm{gm}$
Kinetic Theory of Gases

138990 Three moles of an ideal gas are in a rigid cubical box with sides of length $0.170 \mathrm{~m}$. The ratio of the forces that the gas exerts on each of the six sides of the box when the gas temperature are $27^{\circ} \mathrm{C}$ and $127^{\circ} \mathrm{C}$ is

1 $6: 1$
2 $1: 2$
3 $3: 1$
4 $3: 4$
5 $1: 3$
Kinetic Theory of Gases

138987 For the T-V relation shown in the figure below, which of the following statements is true?

1 $\mathrm{P}_{1}>\mathrm{P}_{2}$
2 $\mathrm{P}_{1} \lt \mathrm{P}_{2}$
3 $\mathrm{P}_{1}=\mathrm{P}_{2}$
4 None of these
Kinetic Theory of Gases

138988 Two non-reactive monoatomic ideal gases have their atomic masses in the ratio $3: 4$. The ratio of their partial pressures when enclosed in a vessel kept at a constant temperature is $2: 3$. The ratio of their densities is:

1 1.1
2 2.0
3 0.9
4 0.5
Kinetic Theory of Gases

138989 If pressure of real gas $\mathrm{O}_{2}$ in a container is given by $P=\frac{R T}{2 V-b}-\frac{a}{4 b^{2}}$, then the mass of the gas in the container is

1 $32 \mathrm{gm}$
2 $16 \mathrm{gm}$
3 $4 \mathrm{gm}$
4 $64 \mathrm{gm}$
Kinetic Theory of Gases

138990 Three moles of an ideal gas are in a rigid cubical box with sides of length $0.170 \mathrm{~m}$. The ratio of the forces that the gas exerts on each of the six sides of the box when the gas temperature are $27^{\circ} \mathrm{C}$ and $127^{\circ} \mathrm{C}$ is

1 $6: 1$
2 $1: 2$
3 $3: 1$
4 $3: 4$
5 $1: 3$
Kinetic Theory of Gases

138987 For the T-V relation shown in the figure below, which of the following statements is true?

1 $\mathrm{P}_{1}>\mathrm{P}_{2}$
2 $\mathrm{P}_{1} \lt \mathrm{P}_{2}$
3 $\mathrm{P}_{1}=\mathrm{P}_{2}$
4 None of these
Kinetic Theory of Gases

138988 Two non-reactive monoatomic ideal gases have their atomic masses in the ratio $3: 4$. The ratio of their partial pressures when enclosed in a vessel kept at a constant temperature is $2: 3$. The ratio of their densities is:

1 1.1
2 2.0
3 0.9
4 0.5
Kinetic Theory of Gases

138989 If pressure of real gas $\mathrm{O}_{2}$ in a container is given by $P=\frac{R T}{2 V-b}-\frac{a}{4 b^{2}}$, then the mass of the gas in the container is

1 $32 \mathrm{gm}$
2 $16 \mathrm{gm}$
3 $4 \mathrm{gm}$
4 $64 \mathrm{gm}$
Kinetic Theory of Gases

138990 Three moles of an ideal gas are in a rigid cubical box with sides of length $0.170 \mathrm{~m}$. The ratio of the forces that the gas exerts on each of the six sides of the box when the gas temperature are $27^{\circ} \mathrm{C}$ and $127^{\circ} \mathrm{C}$ is

1 $6: 1$
2 $1: 2$
3 $3: 1$
4 $3: 4$
5 $1: 3$
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
Kinetic Theory of Gases

138987 For the T-V relation shown in the figure below, which of the following statements is true?

1 $\mathrm{P}_{1}>\mathrm{P}_{2}$
2 $\mathrm{P}_{1} \lt \mathrm{P}_{2}$
3 $\mathrm{P}_{1}=\mathrm{P}_{2}$
4 None of these
Kinetic Theory of Gases

138988 Two non-reactive monoatomic ideal gases have their atomic masses in the ratio $3: 4$. The ratio of their partial pressures when enclosed in a vessel kept at a constant temperature is $2: 3$. The ratio of their densities is:

1 1.1
2 2.0
3 0.9
4 0.5
Kinetic Theory of Gases

138989 If pressure of real gas $\mathrm{O}_{2}$ in a container is given by $P=\frac{R T}{2 V-b}-\frac{a}{4 b^{2}}$, then the mass of the gas in the container is

1 $32 \mathrm{gm}$
2 $16 \mathrm{gm}$
3 $4 \mathrm{gm}$
4 $64 \mathrm{gm}$
Kinetic Theory of Gases

138990 Three moles of an ideal gas are in a rigid cubical box with sides of length $0.170 \mathrm{~m}$. The ratio of the forces that the gas exerts on each of the six sides of the box when the gas temperature are $27^{\circ} \mathrm{C}$ and $127^{\circ} \mathrm{C}$ is

1 $6: 1$
2 $1: 2$
3 $3: 1$
4 $3: 4$
5 $1: 3$