Determine the limiting reactant for the reaction. Consider the reaction between NiS2 and O2: 2 NiS2 (s) + 5 O2 (g) → 2 NiO (s) +4 SO2 (g) When 11.2 g of NiS2 are allowed to react with 5.43 g of O2, 4.84 g of NiO are obtained. Express your answer as a chemical formula.

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Chapter3: Equation, The Mole, And Chemical Formulas
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Part C
Determine the percent yield for the reaction.
?
percent yield
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Transcribed Image Text:Part C Determine the percent yield for the reaction. ? percent yield Submit Request Answer
MISSED THIS? Watch KCV 8.5, IWE 8.5; Read
Section 8.6. You can click on the Review link to
access the section in your e Text.
Part A
Determine the limiting reactant for the reaction.
Consider the reaction between NiS2 and O2:
2 NiS2 (s) + 5 O2 (g) → 2 NiO (s) +4 SO2 (g)
When 11.2 g of NiS2 are allowed to react with 5.43 g
of O2, 4.84 g of NiO are obtained.
Express your answer as a chemical formula.
ΑΣφ
?
A chemical reaction does not occur for this question.
Submit
Request Answer
Part B
Determine the theoretical yield of NiO for the reaction.
Πνα ΑΣφ
?
m =
Submit
Request Answer
Transcribed Image Text:MISSED THIS? Watch KCV 8.5, IWE 8.5; Read Section 8.6. You can click on the Review link to access the section in your e Text. Part A Determine the limiting reactant for the reaction. Consider the reaction between NiS2 and O2: 2 NiS2 (s) + 5 O2 (g) → 2 NiO (s) +4 SO2 (g) When 11.2 g of NiS2 are allowed to react with 5.43 g of O2, 4.84 g of NiO are obtained. Express your answer as a chemical formula. ΑΣφ ? A chemical reaction does not occur for this question. Submit Request Answer Part B Determine the theoretical yield of NiO for the reaction. Πνα ΑΣφ ? m = Submit Request Answer
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