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qUESTIONS

11th-jee

The amount of heat energy, required to raise the temperature of 1 g of Helium at NTP from T1K to T2K is

11th-jee

The ratio of the specific heats Cp/Cv = γ in terms of degrees of freedom (f) is given by

11th-jee

he molar specific heats of an ideal gas at constant pressure and volume are denoted by Cp and Cv, respectively. If γ=Cp/Cv and R is the universal gas constant, then Cv is equal to

11th-jee

One mole an ideal diatomic gas undergoes a transition from A to B along a path AB as shown in the figure, The change in internal energy of the gas during the transition is

11th-jee

At what temperature will the rms speed of oxygen molecules become just sufficient for escaping from the Earth’s atmosphere (Given: Mass of oxygen molecule (m) = 2.76×10^-26kg, Boltzmann’s constant kB= 1.38 ×10^-23 JK-1 )

11th-jee

N molecules each of mass m of gas A and 2 N molecules each of mass 2 m of gas B are contained in the same vessel at temperature T. The mean square of the velocity of molecules of gas B is v2 and the mean square of x component of the velocity of molecules of gas A is w2. The ratio of w2/V2 is

11th-jee

Two vessels separately contain two ideal gases A to B at the same temperature the pressure of A being twice that of B. Under such conditions, the density of A is found to be 1.5 times the density of B. The ratio of molecular weight of A and B is

11th-jee

The relation between the gas pressure and average kinetic energy per unit volume E is

11th-jee

1 mole of H2 gas is contained in a box of volume V=1.00m^3 at T = 300K. The gas is heated to a temperature of T = 3000K and the gas gets converted to a gas of hydrogen atoms. The final pressure would be(considering all gases to be ideal)

11th-jee

A cubic vessel (with face horizontal + vertical) contains, an ideal gas at NTP. The vessel is being carried by a rocket which is moving at a speed of 500 ms-1 in vertical direction. The pressure of the gas inside the vessel as observed by us on the ground

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