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The density of acetic acid vapor at 300 K and 1 atm is 5 mg cm-3. The number of acetic acid molecules in the cluster that is formed in the gas phase is the closest to 

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Important Questions on States of Matter: Gases and Liquids

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The volume vs. temperature graph of 1 mole of an ideal gas is given below. The pressure of the gas (in atm) at X, Y and Z, respectively, are

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In the following compressibility factor Z vs. pressure graph at 300 K, the compressibility of CH4 at pressures <200 bar deviates from ideal behaviour because:

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6.0 g of a solid is heated. The residue left behind weighs 2 g, and 1120 cc of a gas measured at 0 °C and 1 atm is evolved. The molecular weight of the gas is:
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The volume of 1 mole of a gas at NTP is 20 litres.
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A gaseous mixture of 2 moles of A, 3 moles of B, 5 moles of C and 10 moles of D is contained in a vessel. Assuming that the gases are ideal and the partial pressure of C is 1.5 atm, the total pressure is:
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If a gas gets half compressed, compared to an ideal gas, the compressibility factor Z is equal to:
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If 10-4dm3 of water is introduced into a 1.0 dm3 flask at 300 K, how many moles of water are in the vapour phase when equilibrium is established? (Given: Vapour pressure of H2O at 300 K is 3170 Pa, R=8.314 J K-1mol-1 )

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Assertion: Van der Waals equation describes the behaviour of real gases.

Reason: The kinetic theory postulates that negligible volume of gaseous molecules and intermolecular forces of attraction do not stand correct at high pressure and low temperature.