QuestionJune 23, 2025

Question 19 (0.5 points) Gases behave ideally under what conditions? High Temperature and Low Pressure High Temperature and High Pressure Low Temperature and Low pressure Low Temperature and High Pressure Question 20 (0.5 points) Gases deviate from Ideal behavior under what conditions? High Temperature and Low Pressure High Temperature and High Pressure Low Temperature and Low pressure Low Temperature and High Pressure

Question 19 (0.5 points) Gases behave ideally under what conditions? High Temperature and Low Pressure High Temperature and High Pressure Low Temperature and Low pressure Low Temperature and High Pressure Question 20 (0.5 points) Gases deviate from Ideal behavior under what conditions? High Temperature and Low Pressure High Temperature and High Pressure Low Temperature and Low pressure Low Temperature and High Pressure
Question 19 (0.5 points)
Gases behave ideally under what conditions?
High Temperature and Low Pressure
High Temperature and High Pressure
Low Temperature and Low pressure
Low Temperature and High Pressure
Question 20 (0.5 points)
Gases deviate from Ideal behavior under what conditions?
High Temperature and Low Pressure
High Temperature and High Pressure
Low Temperature and Low pressure
Low Temperature and High Pressure

Solution
4.5(137 votes)

Answer

High Temperature and Low Pressure; Low Temperature and High Pressure Explanation 1. Identify Ideal Gas Conditions Gases behave ideally under **high temperature** and **low pressure**. High temperature increases kinetic energy, reducing intermolecular forces. Low pressure minimizes interactions between gas particles. 2. Identify Non-Ideal Gas Conditions Gases deviate from ideal behavior under **low temperature** and **high pressure**. Low temperature reduces kinetic energy, increasing intermolecular forces. High pressure forces particles closer, enhancing interactions.

Explanation

1. Identify Ideal Gas Conditions<br /> Gases behave ideally under **high temperature** and **low pressure**. High temperature increases kinetic energy, reducing intermolecular forces. Low pressure minimizes interactions between gas particles.<br /><br />2. Identify Non-Ideal Gas Conditions<br /> Gases deviate from ideal behavior under **low temperature** and **high pressure**. Low temperature reduces kinetic energy, increasing intermolecular forces. High pressure forces particles closer, enhancing interactions.
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