Tin(IV) sulfide, SnS2, a yellow pigment, can be produced using the following reaction. SnBr4(aq)+2Na2S(aq)⟶4NaBr(aq)+SnS2(s) Suppose a student adds 46.6 mL of a 0.600 M solution of SnBr4 to 51.4 mL of a 0.154 M solution of Na2S. 1) Calculate the theoretical yield of SnS2 (in grams) 2) The student recovers 0.386 g of SnS2. Calculate the percent yield of SnS2 that the student obtained.
Tin(IV) sulfide, SnS2, a yellow pigment, can be produced using the following reaction. SnBr4(aq)+2Na2S(aq)⟶4NaBr(aq)+SnS2(s) Suppose a student adds 46.6 mL of a 0.600 M solution of SnBr4 to 51.4 mL of a 0.154 M solution of Na2S. 1) Calculate the theoretical yield of SnS2 (in grams) 2) The student recovers 0.386 g of SnS2. Calculate the percent yield of SnS2 that the student obtained.
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Tin(IV) sulfide, SnS2, a yellow pigment, can be produced using the following reaction. SnBr4(aq)+2Na2S(aq)⟶4NaBr(aq)+SnS2(s)
Suppose a student adds 46.6 mL of a 0.600 M solution of SnBr4 to 51.4 mL of a 0.154 M solution of Na2S.
1) Calculate the theoretical yield of SnS2 (in grams)
2) The student recovers 0.386 g of SnS2. Calculate the percent yield of SnS2 that the student obtained.
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