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According to the kinetic theory of gases...

According to the kinetic theory of gases, in an ideal gas, between two successive collisions, a gas molecule travels

A

in a circular path

B

in a wavy path

C

in a straight line path

D

with an accelerated velocity.

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The correct Answer is:
To solve the question regarding the behavior of gas molecules according to the kinetic theory of gases, we can follow these steps: ### Step-by-Step Solution: 1. **Understand the Kinetic Theory of Gases**: - The kinetic theory of gases describes the behavior of ideal gases and is based on several postulates. One of the key postulates states that gas molecules are in constant random motion. 2. **Identify the Motion Between Collisions**: - According to the kinetic theory, gas molecules travel in straight lines between collisions. This means that they do not follow a circular or wavy path; instead, their motion is linear until they collide with another molecule or the walls of the container. 3. **Recognize the Role of Collisions**: - Collisions between gas molecules are elastic, meaning that there is no loss of kinetic energy when they collide. The direction of motion changes only upon collision. 4. **Select the Correct Answer**: - Based on the understanding that gas molecules travel in straight lines between collisions, the correct answer to the question is "a straight line path." ### Final Answer: The correct answer is: **C) a straight line path**.

To solve the question regarding the behavior of gas molecules according to the kinetic theory of gases, we can follow these steps: ### Step-by-Step Solution: 1. **Understand the Kinetic Theory of Gases**: - The kinetic theory of gases describes the behavior of ideal gases and is based on several postulates. One of the key postulates states that gas molecules are in constant random motion. 2. **Identify the Motion Between Collisions**: ...
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ICSE-STATES OF MATTER : GASES AND LIQUIDS-OBJECTIVE (MULTIPLE CHOICE) TYPE QUESTIONS
  1. For an ideal gas , number of moles per litre in terms of its pressure ...

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  2. Based on kinetic theory of gases following laws can be proved

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  3. According to the kinetic theory of gases, in an ideal gas, between two...

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  4. As the temperature is raised from 20^@C " to " 40^@C, the average kine...

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  5. In van der Waals' equation of state, the constant 'b' is a measure of

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  6. Which one of the following statements is not true about the effect of ...

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  7. Equal mass of methane and oxygen are mixed in an empty container at 2...

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  8. The compressibility factor for a real gas at high pressure is :

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  9. a and b are van der Waals' constants for gases. Chlorine is more easil...

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  10. The molecular velocity of any gas is

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  11. When r, p and M represent rate of diffusion, pressure and molecular ma...

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  12. A gaseous mixture was prepared by taking equal moles of CO and N2. If ...

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  13. By what factor does the average velocity of a gaseous molecule increas...

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  14. Equal masses of H2, O2, and methane have been taken in a container of ...

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  15. If Z is a compressibility factor, van der Waals equation at low pressu...

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  16. For gaseous state, if most probable speed is denoated by C^(**), avera...

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  17. Given van der Waals' constant for NH3, H2, O2 " and " CO2 " are respec...

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  18. The correction factor 'a' to the ideal gas equation corresponds to

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  19. A gas at 350 K and 15 bar has molar volume 20 percent smaller than tha...

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  20. Consider the van der Waals' constants, a and b, for the following gase...

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