Chapter 12: Problem 36
Use the kinetic-molecular theory to explain the compression and expansion of gases.
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Chapter 12: Problem 36
Use the kinetic-molecular theory to explain the compression and expansion of gases.
These are the key concepts you need to understand to accurately answer the question.
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Given edge lengths and face angles, predict the shape of each of the following crystals. $$ \begin{aligned} \text { a. } a &=3 \mathrm{nm}, b=3 \mathrm{nm}, c=3 \mathrm{nm} ; \alpha=90^{\circ}, \beta^{\circ}=90 \\ \gamma &=90^{\circ} \\\ \text { b. } a &=4 \mathrm{nm}, b=3 \mathrm{nm}, c=5 \mathrm{nm} ; \alpha=90^{\circ}, \beta^{\circ}=100 \\ \gamma &=90^{\circ} \\ \text { c. } a &=3 \mathrm{nm}, b=3 \mathrm{nm}, c=5 \mathrm{nm} ; \alpha=90^{\circ}, \beta^{\circ}=90 \\ \gamma &=90^{\circ} \\ \mathrm{d} &=3 \mathrm{nm}, b=3 \mathrm{nm}, c=5 \mathrm{nm} ; \alpha=90^{\circ}, \beta^{\circ}=90 \\ \gamma &=120^{\circ} \end{aligned} $$
How does sublimation differ from deposition?
Compare deposition and sublimation.
Calculate Suppose two gases in a container have a total pressure of 1.20 atm. What is the pressure of Gas B if the partial pressure of Gas A is 0.75 atm?
What is the partial pressure of hydrogen gas in a mixture of hydrogen and helium if the total pressure is 600 mm Hg and the partial pressure of helium is 439 mm Hg?
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