Home
Class 12
PHYSICS
For a ideal monoatomic gas match the fol...

For a ideal monoatomic gas match the following graphs for constant mass in different processes (`rho` = Density of gas)

Text Solution

Verified by Experts

`P = (rho)/(M_(w))RT`
For (A):
For `AB P prop V implies T alphaV^(2) implies T prop rho^(-2)`
For `BC V= "constant" implies rho = "constant"`
For `CA P = "constant" implies rhoT = "constant"`
For (B)
For `AB P prop T implies rho = "constant"`
For `BC T = "constant" implies P prop rho`
For `CA P = "constant" implies rhoT = "constant"`
For (C)
For `AB P ="constant" implies rhoT = "constant"`
For `BC T = "constant" implies P prop rho`
For `CA V = "constant" implies rho = "constant"`
For(D)
For `AB rho prop T implies P prop T^(2)`
For `BC T ="constant" implies P prop rho`
For `A rho = "constant" implies P prop T`
Promotional Banner

Topper's Solved these Questions

  • GEOMETRICAL OPTICS

    ALLEN |Exercise ASSERTION-REASON|40 Videos
  • GEOMETRICAL OPTICS

    ALLEN |Exercise Comprehension Based Questions|66 Videos
  • GEOMETRICAL OPTICS

    ALLEN |Exercise EXERCISE -02|82 Videos
  • CURRENT ELECTRICITY

    ALLEN |Exercise EX.II|66 Videos
  • GRAVITATION

    ALLEN |Exercise EXERCISE 4|9 Videos

Similar Questions

Explore conceptually related problems

One mole of an ideal monoatomic gas undergoes a process described by the equation PV^3 = constant. The heat capacity of the gas during this process is ……..

Two moles of an ideal monoatomic gas is taken through a cycle ABCA as shown in the P-T diagram. During the process AB , pressure and temperature of the gas very such that PT=Constant . It T_1=300K , calculate (a) the work done on the gas in the process AB and (b) the heat absorbed or released by the gas in each of the processes. Give answer in terms of the gas constant R.

One mole of an ideal monatomic gas undergoes the process P=alphaT^(1//2) , where alpha is constant . If molar heat capacity of the gas is betaR1 when R = gas constant then find the value of beta .

Write the expression of work for an ideal gas in isobaric process.

Draw P-V curves for isothermal and adiabatic processes of an ideal gas.

One mole of an ideal monoatomic gas at temperature T_0 expands slowly according to the law p/V = constant. If the final temperature is 2T_0 , heat supplied to the gas is

An ideal gas can be expanded form an initial state to a certain volume through two different processes PV^(2) = constant and (ii) P = KV^(2) where K is a positive constant. Then

Assertion : The ratio C_(P)// C_(upsilon) for a diatomic gas is more than that for a monoatomic gas. Reason : The moleculess of a monoatomic gas have more degrees of freedom than those of a diatomic gas.

One mole of an ideal monoatomaic gas is taken from A to C along the path ABC . The temperature of the gas at A is T_(0) . For the process ABC :