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A closed container of volume 0.02m^(3) c...

A closed container of volume `0.02m^(3)` contains a mixture of neon and argon gases at a temperature `27^(@)C` and pressure `1 xx 10^(5) Nm ^(-1)` The total mass is 28 and the molar mass of and argon are `20` and `40` respectively find the masses of individual gases in the container assuming then to be ideal .

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A closed container of volume 0.02m^(3) contains a mixture of neon and argon gases at a temperature 27^(@)C and pressure 1 xx 10^(5) Nm ^(-1) The total mass of and argon are 20 and 40 respectively find the masses of individual gases in the container assuming then to be ideal .

A closed container of volume 0.02m^3 contains a mixture of neon and argon gases, at a temperature of 27^@C and pressure of 1xx10^5Nm^-2 . The total mass of the mixture is 28g. If the molar masses of neon and argon are 20 and 40gmol^-1 respectively, find the masses of the individual gasses in teh container assuming them to be ideal (Universal gas constant R=8.314J//mol-K ).

A vessel of volume V = 20 1 contains a mixture of hydrogen and helium at a temperature t = 20 ^@C and pressure p = 2.0 atm . The mass of the mixture is equal is equal to m = 5.0 g . Find the ratio of the mass of hydrogen to that of helium in the given mixture.

A vessel of volume 2 xx 10^(-2) m^(3) contains a mixture of hydrogen at 47^(@)C temperature and 4.15 xx 10^(5) N//m^(2) Pressure. The mass of the mixture is 10^(-2) kg . Calculate the masses of hydrogen and helium in the given mixture.

A vessel of volume 20 L contains a mixture o hydrogen and helium at temperature of 27^(@)C and pressure 2.0 atm The mass of the mixture is 5 g . Assuming the gases to be ideal, the ratio of the mass of hydrogen to heat of helium in the given mixture will be

A close container of volume 0.02 m^(3) contains a mixture of neon and another gas A of unknown molecular mass. The container contains 4 g of Neon and 24 g of gas A. At a temperature of 27^(@)C the pressure of the mixture is 105 N//m^(2) . Is there any possibility of finding gas A in the atmosphere of a planet of radius 600 km and mean density r = 5 x× 103 kg//m^(3) ? Temperature of the planet is 2200^(@)C . Molar molecular mass of neon = 20 g, Gas constant R = 8.314 "J mol"^(–1) K^(–1) Gravitational constant G = 6.67 x× 10^(–11) N m^(2) kg^(–2)

A vessel of volume 0.02m^3 contains a mixture of hydrogen and helium at 20^@C and 2 atmospheric pressure. The mass of mixture is 5 gms. Find the ratio of mass of hydrogen to that of helium in the mixture.

SL ARORA-Kinetic Theory of gases-Example
  1. A vessel contains two non-reactive gases neon (monoatomic) and oxygen ...

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  2. A vessel contains two non-reactive gases neon (monoatomic) and oxygen ...

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  3. A closed container of volume 0.02m^(3) contains a mixture of neon and ...

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  4. Calculate the r.m.s. velocity of air molecules at S.T.P. Given density...

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  5. A vessel is filled with a gas at a pressure of 76 cm of mercury at a c...

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  6. Calculate the kinetic energy of one mole of argon at 127^(@)C. Given,B...

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  7. Calculate the KE per molecule and also rms velocity of a gas at 127^(@...

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  8. Calculate the number of molecule in 2 xx 10^(-6)m^(3) of a perfect gas...

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  9. Calculate the root mean square speed of one gram molecule of hydrogen ...

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  10. (a) Calculate (i) root-mean-square speed and (ii) the mean energy of 1...

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  11. Calculate Boltzmann's constent.

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  12. At what temperature will the average velocity of oxygen molecules be s...

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  13. A vessel A contains hydrogen and another vessel B whose volume is twic...

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  14. A vessel A contains hydrogen and another vessel B whose volume is twic...

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  15. A vessel A contains hydrogen and another vessel B whose volume is twic...

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  16. A flask contains argon and chlorine in the ratio 2:1 by mass. The temp...

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  17. A flask contains argon and chlorine in the ratio 2:1 by mass. The temp...

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  18. Two perfect monoatomic gases at absolute temperature T(1) and T(2) are...

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  19. Four molecules of a gas have speeds 2, 4, 6 and 8 kms^(-1) respectivel...

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  20. If three gas molecules have velocity 0.5, 1 and 2 km//s respectively, ...

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