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Name the temperature at which real gases...

Name the temperature at which real gases behave as ideal gases over appreciable range of pressure.

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Select the correct statement for a real gas (i)The behaviour of the gas become more ideal when pressure is very low. (ii)Pressure of gas for ideal behaviour depends upon nature of the gas and its temperture. (iii)The temperature at which a real gas obeys ideal gas law over an appreciable range of pressure in low pressure rang is called Boyle's temperature.

Real gases behave ideally at:

The gases obey the different gas laws only theoretically. Practically all of them show some deviation from these laws. These are called real gases. The deviation are maximum under high pressure and at low temperature. These are comparatively small when the conditions are reversed. It has been found that the easily liquefiable gases show more deviations from the ideal gas behaviour as compared to the gases which are liquified with difficulty. The temperature at which the real gases obey the ideal gas laws over a wide range of pressure is called

The temperature at which real gases obey the ideal gas laws over a wide range of low pressure is called: (a)Critical temperature (b)Inversion temperature (c)Boyle temperature (d)Reduced temperature

Boyle's temperature or Boyle point is the temperature at which a real gas starts behaving like an ideal gas over a particular range of pressure. A graph is plotted between compressibility factor Z and pressure P. What is the deviation of real gas from ideal behaviour in terms of compressibility factor , Z ?

Boyle's temperature or Boyle point is the temperature at which a real gas starts behaving like an ideal gas over a particular range of pressure. A graph is plotted between compressibility factor Z and pressure P. What is the variation of Z with pressure ?

The temperature at which a real gas obeys the ideal gas laws over a wide range of pressure is called

The temperature at which a real gas obeys the ideal gas laws over a wide range of pressure is called

A real gas behaves like an ideal gas if its

A real gas behaves like an ideal gas if its