Chapter 12: Problem 121
What do we mean when we say that solute particles diffuse through a solution?
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These are the key concepts you need to understand to accurately answer the question.
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Chapter 12: Problem 121
What do we mean when we say that solute particles diffuse through a solution?
These are the key concepts you need to understand to accurately answer the question.
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What is the name of the attractive force between dissolved \(\mathrm{Na}^{+}\) ions and water molecules? Diagram this force, showing how a water molecule would approach an \(\mathrm{Na}^{+}\) ion. Do the same for a \(\mathrm{Cl}^{-}\) ion.
Oil is insoluble in water. Which step in the threestep process for dissolving is responsible for this? Explain why this step is the problem.
Soap molecules not only form spherical micelles in water, they also form spherical vesicles, which you can picture as thick-walled hollow spheres. Here is a cross section of such a vesicle, with the blue regions representing water: Unlike a micelle, a vesicle traps water in its interior. What gives a vesicle this ability? (If you are having trouble with the difference between micelles and vesicles, think of a baseball and a hollow rubber ball. The baseball, with no empty space inside, is analogous to the micelle, and the hollow ball is analogous to the vesicle.)
You have two solutions, one \(0.800 \mathrm{M}\) sodium. phosphate and the other \(0.800 \mathrm{M}\) lead(II) acetate. (a) Write a net ionic equation for the precipitation reaction that occurs when these solutions are combined. (b) If you pour \(100.0 \mathrm{~mL}\) of the sodium phosphate solution and \(50.0 \mathrm{~mL}\) of the lead(II) acetate solution into the same flask, what is the theoretical yield of the precipitate in grams? (c) What is the molar concentration of the excess reactant ion?
How many grams of ethanol, \(\mathrm{C}_{2} \mathrm{H}_{6} \mathrm{O}\), are there in \(200.0 \mathrm{~mL}\) of a \(2.00 \mathrm{M}\) aqueous solution of ethanol?
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