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Compressibility can be expressed as _______
  • a)
    real volume divided by the ideal volume
  • b)
    real universal gas constant by ideal universal gas constant
  • c)
    real temperature by ideal temperature
  • d)
    real volume divided by real pressure
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
Compressibility can be expressed as _______a)real volume divided by th...
The deviation of real gas behaviour from ideal gas behaviour is known from the compressibility factor. This compressibility factor can also be measured as the ratio of real volume to ideal volume.
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Compressibility can be expressed as _______a)real volume divided by th...


Explanation:

Compressibility Factor:
- The compressibility factor (Z) is a measure of how much a real gas deviates from ideal gas behavior under a given set of conditions.
- It is defined as the ratio of the molar volume of a real gas to the molar volume of an ideal gas at the same temperature and pressure.

Expressing Compressibility:
- Compressibility can be expressed as the ratio of the real volume of the gas to the ideal volume of the gas.
- This is represented by the formula: Compressibility = Real Volume / Ideal Volume.

Explanation of Options:
a) Real volume divided by the ideal volume: This option correctly represents the compressibility factor as the ratio of the real volume to the ideal volume.
b) Real universal gas constant by ideal universal gas constant: This option does not accurately represent compressibility as it involves gas constants.
c) Real temperature by ideal temperature: This option is not a correct representation of compressibility as it involves temperatures.
d) Real volume divided by real pressure: This option does not accurately represent compressibility as it involves both volume and pressure.

Therefore, the correct expression for compressibility is the ratio of the real volume to the ideal volume.
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Compressibility can be expressed as _______a)real volume divided by the ideal volumeb)real universal gas constant by ideal universal gas constantc)real temperature by ideal temperatured)real volume divided by real pressureCorrect answer is option 'A'. Can you explain this answer?
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