![SOLVED:(a) The van van der Waals equation for n moles of a gas is (P + (n^2 a)/(V^2))(V - nb) = nRT where P is the pressure, V is the volume, and SOLVED:(a) The van van der Waals equation for n moles of a gas is (P + (n^2 a)/(V^2))(V - nb) = nRT where P is the pressure, V is the volume, and](https://cdn.numerade.com/previews/b07bfe02-1e69-48a0-b220-ea9d00f3df95.gif)
SOLVED:(a) The van van der Waals equation for n moles of a gas is (P + (n^2 a)/(V^2))(V - nb) = nRT where P is the pressure, V is the volume, and
![The equation of state of n moles of a non - ideal gas can be approximated by the equation (P + an^2V^2)(V - nb) = nRT where a and b are constants The equation of state of n moles of a non - ideal gas can be approximated by the equation (P + an^2V^2)(V - nb) = nRT where a and b are constants](https://dwes9vv9u0550.cloudfront.net/images/4937444/96761e14-4e3a-4f54-934c-1e6ac3036661.jpg)
The equation of state of n moles of a non - ideal gas can be approximated by the equation (P + an^2V^2)(V - nb) = nRT where a and b are constants
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![Ideal Gas Law PV = nRT re-arrange n V = P RT n = molar mass (g/mol) mol gas= mass gas (g) mass of sample V x molar mass = P RT = Ideal Gas Law PV = nRT re-arrange n V = P RT n = molar mass (g/mol) mol gas= mass gas (g) mass of sample V x molar mass = P RT =](https://images.slideplayer.com/26/8786373/slides/slide_11.jpg)
Ideal Gas Law PV = nRT re-arrange n V = P RT n = molar mass (g/mol) mol gas= mass gas (g) mass of sample V x molar mass = P RT =
![In the Van der Waals equation (P + (n^(2)a)/(V^(2))) (V-nb) = nRT, why is the term n^(2)a//V^(2) positive in sign. In the Van der Waals equation (P + (n^(2)a)/(V^(2))) (V-nb) = nRT, why is the term n^(2)a//V^(2) positive in sign.](https://d10lpgp6xz60nq.cloudfront.net/web-thumb/647742143_web.png)
In the Van der Waals equation (P + (n^(2)a)/(V^(2))) (V-nb) = nRT, why is the term n^(2)a//V^(2) positive in sign.
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