Hydrogen gas is cooled to 100 K, while the pressure is reduced to 0.1 Pa. a) Determine the mean free path A and the average frequency of collision. b) What are the rms speed and the average kinetic energy of a molecule? c) What is the momentum flux of the gas on the container? d) What are the most probable free path, the most probable speed, and the most probable velocity?

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**Hydrogen Gas at Reduced Temperature and Pressure**

Hydrogen gas is cooled to 100 K, while the pressure is reduced to 0.1 Pa. Explore the properties of this system:

a) **Determine the mean free path (Λ) and the average frequency of collision.**

b) **What are the root mean square (rms) speed and the average kinetic energy of a molecule?**

c) **What is the momentum flux of the gas on the container?**

d) **What are the most probable free path, the most probable speed, and the most probable velocity?**

This set of questions examines key kinetic theory concepts and how molecular speed, energy, and movement are affected when hydrogen gas is subjected to low temperatures and pressures.
Transcribed Image Text:**Hydrogen Gas at Reduced Temperature and Pressure** Hydrogen gas is cooled to 100 K, while the pressure is reduced to 0.1 Pa. Explore the properties of this system: a) **Determine the mean free path (Λ) and the average frequency of collision.** b) **What are the root mean square (rms) speed and the average kinetic energy of a molecule?** c) **What is the momentum flux of the gas on the container?** d) **What are the most probable free path, the most probable speed, and the most probable velocity?** This set of questions examines key kinetic theory concepts and how molecular speed, energy, and movement are affected when hydrogen gas is subjected to low temperatures and pressures.
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