Law of Gases (Boyle's Law, Charles's Law, Gay-Lussac's Law, Avogadro's Law)
Kinetic Theory of Gases

138939 The rise in temperature of the gas and the pressure exerted by it on the walls of an enclosure depends on

1 heat supplied
2 statistical distribution of velocities
3 gas density
4 all of these
Kinetic Theory of Gases

138944 For Boyle's law to hold good the necessary condition is

1 isothermal
2 adiabatic
3 isobaric
4 isochoric
Kinetic Theory of Gases

138964 The change in internal energy of real gases is given by $\mathbf{d U}=$

1 $\mathrm{C}_{\mathrm{v}} \mathrm{dT}$
2 $\mathrm{C}_{\mathrm{p}} \mathrm{dT}$
3 $\left(\mathrm{C}_{\mathrm{p}}-\mathrm{C}_{\mathrm{v}}\right) \mathrm{dT}$
4 $\mathrm{RdT}$
Kinetic Theory of Gases

138903 Using $\mathbf{P}-\mathrm{V}$ diagram for an ideal gas, find the work done by the gas in process $\mathrm{ABCD}$.

#[Qdiff: Hard, QCat: Image based, examname: AP EAMCET-25.09.2020, Shift-II#

1 $4 \mathrm{P}_{0} \mathrm{~V}_{0}$
2 $2 \mathrm{P}_{0} \mathrm{~V}_{0}$
3 $3 \mathrm{P}_{0} \mathrm{~V}_{0}$
4 $\mathrm{P}_{0} \mathrm{~V}_{0}$
Kinetic Theory of Gases

138955 The amount of heat that must be supplied to 35 g of oxygen at room temperature to raise its temperature by $80^{\circ} \mathrm{C}$ at constant volume is (Molecular mass of oxygen is 32 and $R=8.3 \mathrm{~J}$ mol $^{-1} \mathbf{K}^{-1}$ )
#[Qdiff: Hard, QCat: Numerical Based, examname: AP EAMCET (21.04.2019) Shift-II#

1 $2.84 \mathrm{~kJ}$
2 $1.68 \mathrm{~kJ}$
3 $1.81 \mathrm{~kJ}$
4 $2.88 \mathrm{~kJ}$
Kinetic Theory of Gases

138939 The rise in temperature of the gas and the pressure exerted by it on the walls of an enclosure depends on

1 heat supplied
2 statistical distribution of velocities
3 gas density
4 all of these
Kinetic Theory of Gases

138944 For Boyle's law to hold good the necessary condition is

1 isothermal
2 adiabatic
3 isobaric
4 isochoric
Kinetic Theory of Gases

138964 The change in internal energy of real gases is given by $\mathbf{d U}=$

1 $\mathrm{C}_{\mathrm{v}} \mathrm{dT}$
2 $\mathrm{C}_{\mathrm{p}} \mathrm{dT}$
3 $\left(\mathrm{C}_{\mathrm{p}}-\mathrm{C}_{\mathrm{v}}\right) \mathrm{dT}$
4 $\mathrm{RdT}$
Kinetic Theory of Gases

138903 Using $\mathbf{P}-\mathrm{V}$ diagram for an ideal gas, find the work done by the gas in process $\mathrm{ABCD}$.

#[Qdiff: Hard, QCat: Image based, examname: AP EAMCET-25.09.2020, Shift-II#

1 $4 \mathrm{P}_{0} \mathrm{~V}_{0}$
2 $2 \mathrm{P}_{0} \mathrm{~V}_{0}$
3 $3 \mathrm{P}_{0} \mathrm{~V}_{0}$
4 $\mathrm{P}_{0} \mathrm{~V}_{0}$
Kinetic Theory of Gases

138955 The amount of heat that must be supplied to 35 g of oxygen at room temperature to raise its temperature by $80^{\circ} \mathrm{C}$ at constant volume is (Molecular mass of oxygen is 32 and $R=8.3 \mathrm{~J}$ mol $^{-1} \mathbf{K}^{-1}$ )
#[Qdiff: Hard, QCat: Numerical Based, examname: AP EAMCET (21.04.2019) Shift-II#

1 $2.84 \mathrm{~kJ}$
2 $1.68 \mathrm{~kJ}$
3 $1.81 \mathrm{~kJ}$
4 $2.88 \mathrm{~kJ}$
Kinetic Theory of Gases

138939 The rise in temperature of the gas and the pressure exerted by it on the walls of an enclosure depends on

1 heat supplied
2 statistical distribution of velocities
3 gas density
4 all of these
Kinetic Theory of Gases

138944 For Boyle's law to hold good the necessary condition is

1 isothermal
2 adiabatic
3 isobaric
4 isochoric
Kinetic Theory of Gases

138964 The change in internal energy of real gases is given by $\mathbf{d U}=$

1 $\mathrm{C}_{\mathrm{v}} \mathrm{dT}$
2 $\mathrm{C}_{\mathrm{p}} \mathrm{dT}$
3 $\left(\mathrm{C}_{\mathrm{p}}-\mathrm{C}_{\mathrm{v}}\right) \mathrm{dT}$
4 $\mathrm{RdT}$
Kinetic Theory of Gases

138903 Using $\mathbf{P}-\mathrm{V}$ diagram for an ideal gas, find the work done by the gas in process $\mathrm{ABCD}$.

#[Qdiff: Hard, QCat: Image based, examname: AP EAMCET-25.09.2020, Shift-II#

1 $4 \mathrm{P}_{0} \mathrm{~V}_{0}$
2 $2 \mathrm{P}_{0} \mathrm{~V}_{0}$
3 $3 \mathrm{P}_{0} \mathrm{~V}_{0}$
4 $\mathrm{P}_{0} \mathrm{~V}_{0}$
Kinetic Theory of Gases

138955 The amount of heat that must be supplied to 35 g of oxygen at room temperature to raise its temperature by $80^{\circ} \mathrm{C}$ at constant volume is (Molecular mass of oxygen is 32 and $R=8.3 \mathrm{~J}$ mol $^{-1} \mathbf{K}^{-1}$ )
#[Qdiff: Hard, QCat: Numerical Based, examname: AP EAMCET (21.04.2019) Shift-II#

1 $2.84 \mathrm{~kJ}$
2 $1.68 \mathrm{~kJ}$
3 $1.81 \mathrm{~kJ}$
4 $2.88 \mathrm{~kJ}$
Kinetic Theory of Gases

138939 The rise in temperature of the gas and the pressure exerted by it on the walls of an enclosure depends on

1 heat supplied
2 statistical distribution of velocities
3 gas density
4 all of these
Kinetic Theory of Gases

138944 For Boyle's law to hold good the necessary condition is

1 isothermal
2 adiabatic
3 isobaric
4 isochoric
Kinetic Theory of Gases

138964 The change in internal energy of real gases is given by $\mathbf{d U}=$

1 $\mathrm{C}_{\mathrm{v}} \mathrm{dT}$
2 $\mathrm{C}_{\mathrm{p}} \mathrm{dT}$
3 $\left(\mathrm{C}_{\mathrm{p}}-\mathrm{C}_{\mathrm{v}}\right) \mathrm{dT}$
4 $\mathrm{RdT}$
Kinetic Theory of Gases

138903 Using $\mathbf{P}-\mathrm{V}$ diagram for an ideal gas, find the work done by the gas in process $\mathrm{ABCD}$.

#[Qdiff: Hard, QCat: Image based, examname: AP EAMCET-25.09.2020, Shift-II#

1 $4 \mathrm{P}_{0} \mathrm{~V}_{0}$
2 $2 \mathrm{P}_{0} \mathrm{~V}_{0}$
3 $3 \mathrm{P}_{0} \mathrm{~V}_{0}$
4 $\mathrm{P}_{0} \mathrm{~V}_{0}$
Kinetic Theory of Gases

138955 The amount of heat that must be supplied to 35 g of oxygen at room temperature to raise its temperature by $80^{\circ} \mathrm{C}$ at constant volume is (Molecular mass of oxygen is 32 and $R=8.3 \mathrm{~J}$ mol $^{-1} \mathbf{K}^{-1}$ )
#[Qdiff: Hard, QCat: Numerical Based, examname: AP EAMCET (21.04.2019) Shift-II#

1 $2.84 \mathrm{~kJ}$
2 $1.68 \mathrm{~kJ}$
3 $1.81 \mathrm{~kJ}$
4 $2.88 \mathrm{~kJ}$
Kinetic Theory of Gases

138939 The rise in temperature of the gas and the pressure exerted by it on the walls of an enclosure depends on

1 heat supplied
2 statistical distribution of velocities
3 gas density
4 all of these
Kinetic Theory of Gases

138944 For Boyle's law to hold good the necessary condition is

1 isothermal
2 adiabatic
3 isobaric
4 isochoric
Kinetic Theory of Gases

138964 The change in internal energy of real gases is given by $\mathbf{d U}=$

1 $\mathrm{C}_{\mathrm{v}} \mathrm{dT}$
2 $\mathrm{C}_{\mathrm{p}} \mathrm{dT}$
3 $\left(\mathrm{C}_{\mathrm{p}}-\mathrm{C}_{\mathrm{v}}\right) \mathrm{dT}$
4 $\mathrm{RdT}$
Kinetic Theory of Gases

138903 Using $\mathbf{P}-\mathrm{V}$ diagram for an ideal gas, find the work done by the gas in process $\mathrm{ABCD}$.

#[Qdiff: Hard, QCat: Image based, examname: AP EAMCET-25.09.2020, Shift-II#

1 $4 \mathrm{P}_{0} \mathrm{~V}_{0}$
2 $2 \mathrm{P}_{0} \mathrm{~V}_{0}$
3 $3 \mathrm{P}_{0} \mathrm{~V}_{0}$
4 $\mathrm{P}_{0} \mathrm{~V}_{0}$
Kinetic Theory of Gases

138955 The amount of heat that must be supplied to 35 g of oxygen at room temperature to raise its temperature by $80^{\circ} \mathrm{C}$ at constant volume is (Molecular mass of oxygen is 32 and $R=8.3 \mathrm{~J}$ mol $^{-1} \mathbf{K}^{-1}$ )
#[Qdiff: Hard, QCat: Numerical Based, examname: AP EAMCET (21.04.2019) Shift-II#

1 $2.84 \mathrm{~kJ}$
2 $1.68 \mathrm{~kJ}$
3 $1.81 \mathrm{~kJ}$
4 $2.88 \mathrm{~kJ}$