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One gram mole of a gas at NTP occupies 2...

One gram mole of a gas at NTP occupies 22.4 L. This fact is derived from

A

Dalton's theory

B

Avogardo's law

C

Berzelius hypothesis

D

Law of gaseous volume

Text Solution

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The correct Answer is:
B
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One mole of an ideal gas at STP occupies 22.4 L. What is the ratio of molar volume to atomic volume of a mole of hydrogen? Why is the ratio so large. Take radius of hydrogen molecule to be 1^(@)A .

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Knowledge Check

  • one gram mole of a gas at N.T.P. occupies 22.4 L. This fact was derived from

    A
    Law of gaseous volumes
    B
    Avogadro's hypothesis
    C
    Berzerlius hypothesis
    D
    Dalton's hypothese
  • One gram molecule of a gas at NTP occupies 22.4 L. This fact was derived from

    A
    Avogadro's law
    B
    Charles law
    C
    Dalton's law
    D
    Boyle's law
  • One gram mole of a gas at NTP occupies 22.4 litres. This fact was derived from

    A
    law of gaseous volumes
    B
    Avogadro's hypothesis
    C
    Berzelius hypothesis
    D
    Dalton's atomic theory
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    One gram mole of a gas at N.T.P. occupies 22.4 litres. This fact was derived from

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    4.4 g of a gas at STP occupies a volume of 2.24 L. The gas can be :