Chapter 19: Q19.73P (page 875)
The solubility of calcium sulphate at is solution. Calculate its .
Short Answer
The of calcium sulphate at is .
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Chapter 19: Q19.73P (page 875)
The solubility of calcium sulphate at is solution. Calculate its .
The of calcium sulphate at is .
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Choose specific acid-base conjugate pairs to make the following buffers:
(a) ;
(b) . (See Appendix C.)
The scenes below depict the relative concentrations of , and during a titration with aqueous , but they are out of order. (Phosphate groups are purple, hydrogens are blue, and ions and water molecules are not shown.)
(a) List the scenes in the correct order.
(b) What is the pH in the correctly ordered second scene (see Appendix C)?
(c) If it requires of the solution to reach this scene, how much more is needed to reach the last scene?

Find the pH of the equivalence point(s) and the volume (mL) of needed to reach it in titrations of
(a)role="math" localid="1663315329302" of .
(b) of (two equivalence points)
What is the difference between buffers with high and low capacities? Will adding0.01mol of HCl produce a greater pH change in a buffer with a high or a low capacity? Explain.
Which compound in each pair is more soluble in water?
(a) Strontium sulphate or barium chromate
(b) Calcium carbonate or copper(II)carbonate
(c) Barium iodate or silver chromate
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