8. For each precipitation reaction, calculate how many grams of the first reactant are necessary to completely react with 17.3 grams of the second reactant. 15 a) 2 KI(aq) + Pb(NO3)2(aq) Pbl₂(s) + 2 KNO3(aq) b) Na2CO3(aq) + CuCl2(aq) → CuCO3(s) + 2 NaCl(aq) c) K₂SO4(aq) + Sr(NO3)2(aq) → SrSO4(s) + 2 KNO3(aq) d) AgNO3(aq) + NaCl(aq) AgCl(s) + NaNO3(aq) e) CuSO4(aq) + 2 NaOH(aq) Cu(OH)2(s) + Na2SO4(aq)

Chemistry & Chemical Reactivity
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Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
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Chapter4: Stoichiometry: Quantitative Information About Chemical Reactions
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Problem 106GQ: A noncarbonated soft drink contains an unknown amount of citric acid, H3C6H5O7. lf 100. mL of the...
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8. For each precipitation reaction, calculate how many grams of the first reactant are necessary
to completely react with 17.3 grams of the second reactant.
a) 2 KI(aq) + Pb(NO3)2(aq)
t
Pbl₂(s) + 2 KNO3(aq)
/5
b) Na2CO3(aq) + CuCl2(aq) -
-> CuCO3(s) + 2 NaCl(aq)
c) K₂SO4(aq) + Sr(NO3)2(aq) → SrSO4(s) + 2 KNO3(aq)
d) AgNO3(aq) +
NaCl(aq)
AgCl(s) + NaNO3(aq)
e) CuSO4(aq) + 2 NaOH(aq)
Cu(OH)2(s) + Na2SO4(aq)
Transcribed Image Text:8. For each precipitation reaction, calculate how many grams of the first reactant are necessary to completely react with 17.3 grams of the second reactant. a) 2 KI(aq) + Pb(NO3)2(aq) t Pbl₂(s) + 2 KNO3(aq) /5 b) Na2CO3(aq) + CuCl2(aq) - -> CuCO3(s) + 2 NaCl(aq) c) K₂SO4(aq) + Sr(NO3)2(aq) → SrSO4(s) + 2 KNO3(aq) d) AgNO3(aq) + NaCl(aq) AgCl(s) + NaNO3(aq) e) CuSO4(aq) + 2 NaOH(aq) Cu(OH)2(s) + Na2SO4(aq)
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