Assuming that Ag+ and SO3 ²- ions stay intact in the absence of hydrolysis and do not form ion pairs, the mass balance equation for a saturated solution of the sparingly soluble salt Ag₂SO3 is a. [Ag+] = 2[SO3²-] b. [Ag2] [SO32-] = c. [Ag] = [SO3²¯] d. [Ag+] = [SO3²-12 e. [Ag+]² = [SO3²-] ✓ f. 2[Ag+] = [SO3²¯]

Fundamentals Of Analytical Chemistry
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Chapter20: Applications Of Oxidation/reduction Titrations
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Assuming that Ag+ and SO3 ²- ions stay intact in the absence of
hydrolysis and do not form ion pairs, the mass balance
equation for a saturated solution of the sparingly soluble salt
Ag₂SO3 is
a. [Ag+] = 2[SO3²-]
b. [Ag2] [SO32-]
=
c. [Ag] = [SO3²¯]
d. [Ag+] = [SO3²-12
e. [Ag+]² = [SO3²-]
✓
f. 2[Ag+] = [SO3²¯]
Transcribed Image Text:Assuming that Ag+ and SO3 ²- ions stay intact in the absence of hydrolysis and do not form ion pairs, the mass balance equation for a saturated solution of the sparingly soluble salt Ag₂SO3 is a. [Ag+] = 2[SO3²-] b. [Ag2] [SO32-] = c. [Ag] = [SO3²¯] d. [Ag+] = [SO3²-12 e. [Ag+]² = [SO3²-] ✓ f. 2[Ag+] = [SO3²¯]
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