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 $2.88 \mathrm{~kJ}$
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
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 $2.88 \mathrm{~kJ}$