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The ideal gas law (pv = nrt) relates the macroscopic properties of ideal gases Learn how pressure, volume, temperature, and the amount of a gas are related to each other. An ideal gas is a gas in which the particles (a) do not attract or repel one another and (b) take up no space (have no volume).

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Check your understanding of the ideal gas law in this set of free practice questions designed for ap chemistry students. It demonstrates how 'r' remains the same for any ideal gas, regardless of changes in other variables. The pressure, p , volume v , and temperature t of an ideal gas are related by a simple formula called the ideal gas law

The simplicity of this relationship is a big reason why we typically treat gases as ideal, unless there is a good reason to do otherwise.

Dive into the dynamics of gas pressure, temperature, and volume Learn how these factors interplay in the ideal gas equation, pv=nrt Understand the conditions that define an ideal gas and how this equation can determine pressure, volume, or temperature. The ideal gas law can be used to describe a change in state for an ideal gas

In this video, we'll apply the ideal gas law to the initial and final states of a gas to see how changes in temperature and pressure affect the volume of the gas. It's the ideal gas law In the ideal gas model, each gas behaves independently, even in mixtures So p = nrt/v still works for each gas, and r stays constant

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That's why p₁ + p₂ + p₃ = p_total holds true

This is backed by both theory (kinetic molecular theory) and experiments Do you like how i did the subscript? Explore the ideal gas law and the kinetic molecular theory of gases This video explains the ideal gas law, focusing on the constant 'r'

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