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Test: Behaviour of Gases - SSC CGL MCQ


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20 Questions MCQ Test SSC CGL Tier 2 - Study Material, Online Tests, Previous Year - Test: Behaviour of Gases

Test: Behaviour of Gases for SSC CGL 2024 is part of SSC CGL Tier 2 - Study Material, Online Tests, Previous Year preparation. The Test: Behaviour of Gases questions and answers have been prepared according to the SSC CGL exam syllabus.The Test: Behaviour of Gases MCQs are made for SSC CGL 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Test: Behaviour of Gases below.
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Test: Behaviour of Gases - Question 1

Which of the following statements about the behavior of gases is true?

Detailed Solution for Test: Behaviour of Gases - Question 1

Gases have particles with large spaces between them, allowing for compression when pressure is applied.

Test: Behaviour of Gases - Question 2

The kinetic molecular theory of gases states that:

Detailed Solution for Test: Behaviour of Gases - Question 2

The kinetic molecular theory describes gases as being composed of tiny molecules that are in constant motion.

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Test: Behaviour of Gases - Question 3

Boyle's law relates the pressure and volume of a gas at constant:

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Boyle's law states that at constant temperature, the pressure and volume of a gas are inversely proportional.

Test: Behaviour of Gases - Question 4

Which gas law states that the pressure of a gas is directly proportional to its absolute temperature?

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Gay-Lussac's law states that the pressure of a gas is directly proportional to its absolute temperature at constant volume.

Test: Behaviour of Gases - Question 5

According to Charles's law, if the temperature of a gas increases, what happens to its volume, assuming constant pressure?

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Charles's law states that at constant pressure, the volume of a gas is directly proportional to its temperature.

Test: Behaviour of Gases - Question 6

Avogadro's law states that equal volumes of gases, at the same temperature and pressure, contain:

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Avogadro's law states that equal volumes of gases, at the same temperature and pressure, contain the same number of molecules.

Test: Behaviour of Gases - Question 7

The ideal gas law combines which three gas laws?

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The ideal gas law combines Boyle's law, Charles's law, and Gay-Lussac's law into a single equation.

Test: Behaviour of Gases - Question 8

The ideal gas law equation is expressed as:

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The ideal gas law equation is PV = nRT, where P is pressure, V is volume, n is the number of moles, R is the gas constant, and T is temperature.

Test: Behaviour of Gases - Question 9

Which of the following gases deviates the most from ideal gas behavior under normal conditions?

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Carbon dioxide deviates the most from ideal gas behavior due to its larger molecular size and intermolecular forces.

Test: Behaviour of Gases - Question 10

According to Graham's law of effusion, the rate of effusion of a gas is inversely proportional to its:

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Graham's law of effusion states that the rate of effusion of a gas is inversely proportional to the square root of its molar mass.

Test: Behaviour of Gases - Question 11

Which gas law is used to determine the molar mass of an unknown gas?

Detailed Solution for Test: Behaviour of Gases - Question 11

Boyle's law can be used to determine the molar mass of an unknown gas by comparing the volume changes at constant temperature.

Test: Behaviour of Gases - Question 12

What happens to the average kinetic energy of gas molecules as the temperature increases?

Detailed Solution for Test: Behaviour of Gases - Question 12

The average kinetic energy of gas molecules is directly proportional to the temperature. As the temperature increases, so does the kinetic energy.

Test: Behaviour of Gases - Question 13

The van der Waals equation of state is a modification of the ideal gas law that accounts for:

Detailed Solution for Test: Behaviour of Gases - Question 13

The van der Waals equation of state corrects for the volume occupied by gas molecules, which is neglected in the ideal gas law.

Test: Behaviour of Gases - Question 14

Which of the following statements about the behavior of real gases is true?

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Real gases deviate from ideal behavior when the intermolecular forces and molecular volumes become significant at high temperatures and low pressures.

Test: Behaviour of Gases - Question 15

Which gas law describes the relationship between the pressure and volume of a gas at constant temperature?

Detailed Solution for Test: Behaviour of Gases - Question 15

Boyle's law describes the inverse relationship between the pressure and volume of a gas at constant temperature.

Test: Behaviour of Gases - Question 16

The partial pressure of a gas in a mixture is directly proportional to its:

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According to Dalton's law of partial pressures, the partial pressure of a gas is directly proportional to its mole fraction in the mixture.

Test: Behaviour of Gases - Question 17

According to Dalton's law of partial pressures, the total pressure exerted by a mixture of gases is equal to:

Detailed Solution for Test: Behaviour of Gases - Question 17

Dalton's law states that the total pressure exerted by a mixture of gases is equal to the sum of the pressures of the individual gases.

Test: Behaviour of Gases - Question 18

Which gas law states that the volume of a gas is inversely proportional to its pressure at constant temperature?

Detailed Solution for Test: Behaviour of Gases - Question 18

Boyle's law states that the volume of a gas is inversely proportional to its pressure at constant temperature.

Test: Behaviour of Gases - Question 19

The critical temperature of a gas is the temperature above which:

Detailed Solution for Test: Behaviour of Gases - Question 19

The critical temperature of a gas is the temperature above which the gas cannot be liquefied, regardless of the pressure applied.

Test: Behaviour of Gases - Question 20

Which of the following gases has the highest average kinetic energy at the same temperature?

Detailed Solution for Test: Behaviour of Gases - Question 20

The average kinetic energy of gas molecules is directly proportional to their temperature and inversely proportional to their molar mass. Helium has the lowest molar mass among the options, so it has the highest average kinetic energy at the same temperature.

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