Self Studies

Kinetic Theory ...

TIME LEFT -
  • Question 1
    1 / -0

    The ratio of kinetic energy to potential energy for solids is

  • Question 2
    1 / -0

    The correct curve for a stable diatomic molecule is

  • Question 3
    1 / -0

    A vessel of volume 4 litres contains a mixture of 8 g of O$$_2$$, 14 g of N$$_2$$ and 22g of CO$$_2$$ at 27$$^o$$C. The pressure exerted by the mixture is

  • Question 4
    1 / -0

    A vessel contains $$1$$ mole of O$$_2$$ (molar mass $$ 32 gm$$) at a temperature $$T$$. The pressure is $$P$$. An identical vessel containing $$1$$ mole of He (molar mass $$4 gm$$) at a temperature $$2T$$ has a pressure :

  • Question 5
    1 / -0

    The temperature of the sun, if pressure is $$1.4 \times 10^9$$ atm, density is $$1.4 gcm^{-3}$$ and average molecular weight is 2, will be
    $$[Given\  R = 8.4  J  mol^{-1} K^{-1}]$$

  • Question 6
    1 / -0

    Directions For Questions

    An automobile tyre has volume $$0.015 m^3$$ on a cold day when temperature is $$5^o C$$ and atmospheric pressure is $$1.02\ atm$$. Under these conditions the gauge pressure is $$1.7\ atm\ (25\ lb/in^2)$$. After the car is driven on a highway for 30 minutes the temperature of the air in the tyres rises to $$45^oC$$ and volume to $$0.0159 m^3$$.

    ...view full instructions

    What is new gauge pressure?

  • Question 7
    1 / -0

    A barometer tube 90 cm long contains some air above mercury. The reading is 74.8 cm when true atmospheric pressure is 76 cm and temperature is 30$$^o$$ C. If the reading is observed to be 75.4 cm on a day when temperature is 10$$^o$$C, then find the true pressure.

  • Question 8
    1 / -0

    Equal masses of N$$_2$$ and O$$_2$$ gases are filled in vessels A and B. The volume of vessel B is double of A. The ratio of pressure in vessel A and B will be

  • Question 9
    1 / -0

    At what temperature the average translational KE of the molecules of a gas will become equal to the KE of an electron accelerated from rest through 1 V potential difference?

  • Question 10
    1 / -0

    One mole of an ideal gas undergoes a process $$P = \displaystyle \frac{P_o}{1 + \left ( \displaystyle\frac{V}{V_o} \right )^2}$$, where $$P_o$$ and $$V_o$$ are constants. Find the temperature of the gas when $$V = V_o$$.

Submit Test
Self Studies
User
Question Analysis
  • Answered - 0

  • Unanswered - 10

  • 1
  • 2
  • 3
  • 4
  • 5
  • 6
  • 7
  • 8
  • 9
  • 10
Submit Test
Self Studies Get latest Exam Updates
& Study Material Alerts!
No, Thanks
Self Studies
Click on Allow to receive notifications
Allow Notification
Self Studies
Self Studies Self Studies
To enable notifications follow this 2 steps:
  • First Click on Secure Icon Self Studies
  • Second click on the toggle icon
Allow Notification
Get latest Exam Updates & FREE Study Material Alerts!
Self Studies ×
Open Now