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Ideal Gas Law
hard

When considering a real gas at high pressure, which of the following statements best explains the observed deviation from ideal gas behavior?

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A

The volume occupied by gas molecules becomes significant compared to the total volume.

B

The temperature of the gas increases significantly.

C

The gas molecules move faster than predicted by the Kinetic Molecular Theory.

D

The intermolecular forces become negligible.

Understanding the Answer

Let's break down why this is correct

At high pressure, the space each gas molecule actually uses is not tiny. Other options are incorrect because Pressure alone does not raise temperature; Speed of molecules depends on temperature, not how tightly packed they are.

Key Concepts

Real Gas Deviations
Pressure (P)
Kinetic Molecular Theory
Topic

Ideal Gas Law

Difficulty

hard level question

Cognitive Level

understand

Deep Dive: Ideal Gas Law

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Definition
Definition

The Ideal Gas Law states that for one mole of gas at room temperature and one atmosphere pressure, the volume is approximately 24 liters, regardless of the gas type. This law defines the relationship between pressure, volume, temperature, and the number of gas molecules, providing a basis for understanding gas behavior in various conditions.

Topic Definition

The Ideal Gas Law states that for one mole of gas at room temperature and one atmosphere pressure, the volume is approximately 24 liters, regardless of the gas type. This law defines the relationship between pressure, volume, temperature, and the number of gas molecules, providing a basis for understanding gas behavior in various conditions.

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