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  • Question 1
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    The intermolecular forces of attraction (i.e., H-bonding and van der Waals' forces) exist among polar and non-polar species which affect melting point, boiling point, solubility and viscosity of covalent compounds :

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    The type of molecular force of attraction present in the following compound is :

  • Question 2
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    Directions For Questions

    The intermolecular forces of attraction (i.e., H-bonding and van der Waals' forces) exist among polar and non-polar species which affect melting point, boiling point, solubility and viscosity of covalent compounds :

    ...view full instructions

    Select the incorrect order of boiling point between the following compounds :

  • Question 3
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    At a certain pressure, volume of the gas at $$27^\circ C$$ is $$20$$ litre. If the pressure and temperature are doubled, the volume will be 

  • Question 4
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    Kinetic theory of gases presumes the collision between the molecules to be perfectly elastic because:

  • Question 5
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    Which of the given laws of chemical combination is satisfied by the figure?

  • Question 6
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    "Equal volumes of all gases at the same temperature and pressure contain equal number of particles." This statement is a direct consequence of:

  • Question 7
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    Match the following :

    List -IList-II
    A. Boyle’s law1. $$P_{wet}=P_{dry}+P_{water\ vapour}$$
    B. Avogadro law2. $$V_{1}=n_{1}\left ( \dfrac{V_{2}}{n_{2}} \right )$$
    C. Charles law3. $$V_{1}=V_{0}\left (1+ \dfrac{t}{273} \right )$$
    D. Dalton’s law4. $$V_{1}=P_{2}\left ( \dfrac{V_{2}}{P_{1}} \right )$$
    The correct match is:

  • Question 8
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    2.5 L of a sample of a gas at $$27^\circ C$$ and 1 bar pressure is compressed to a volume of 500 mL keeping the temperature constant, the percentage increase in the pressure is :

  • Question 9
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    Dalton's law of partial pressures is not applicable to which one of the following?

  • Question 10
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    At the same temperature, HCl gas and NH$$_{3}$$ gas are present in two vessels of same volume at a pressure of 'P' atmospheres each. When one jar is inverted over the other so that the two will mix, after some time the pressure in the vessels will become:

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