**Dimensional Analysis, Standards of Measurement, Chemical Composition & Stoichiometry** **Homework Assignment #14** **Limiting Reactant and Yield Calculations** – Read Section 9.5 of the Hein text, "Foundations of College Chemistry" 1. For each of the following reactions, provide a balanced chemical equation and suppose exactly 5.00g of each reactant is taken. Determine which reactant is limiting, and calculate what mass of each product is expected. (Assume that the limiting reactant is completely consumed). a. Sulfur + sulfuric acid → sulfur dioxide + water b. Manganese (IV) oxide + sulfuric acid → manganese (IV) sulfate + water **Chemistry 209/Unit #3 Homework (7 of 7)** **Assignment #14/August 2016** **Page 1 of 6** **Title: Dimensional Analysis, Standards of Measurement, Chemical Composition & Stoichiometry** **Chemical Reactions:** **C.** Hydrogen sulfide + Oxygen ⟶ Sulfur dioxide + Water **D.** Silver nitrate + Aluminum ⟶ Silver + Aluminum nitrate This section explores chemical reactions, using specific examples to illustrate the principles of stoichiometry. In reaction C, hydrogen sulfide reacts with oxygen to produce sulfur dioxide and water. In reaction D, silver nitrate reacts with aluminum to produce silver and aluminum nitrate. Such reactions are essential in understanding the quantitative aspects of chemical reactions, including the conservation of mass and the relationships between reactants and products.

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**Dimensional Analysis, Standards of Measurement, Chemical Composition & Stoichiometry**

**Homework Assignment #14**

**Limiting Reactant and Yield Calculations** – Read Section 9.5 of the Hein text, "Foundations of College Chemistry"

1. For each of the following reactions, provide a balanced chemical equation and suppose exactly 5.00g of each reactant is taken. Determine which reactant is limiting, and calculate what mass of each product is expected. (Assume that the limiting reactant is completely consumed).

   a. Sulfur + sulfuric acid → sulfur dioxide + water

   b. Manganese (IV) oxide + sulfuric acid → manganese (IV) sulfate + water

**Chemistry 209/Unit #3 Homework (7 of 7)**

**Assignment #14/August 2016**

**Page 1 of 6**
Transcribed Image Text:**Dimensional Analysis, Standards of Measurement, Chemical Composition & Stoichiometry** **Homework Assignment #14** **Limiting Reactant and Yield Calculations** – Read Section 9.5 of the Hein text, "Foundations of College Chemistry" 1. For each of the following reactions, provide a balanced chemical equation and suppose exactly 5.00g of each reactant is taken. Determine which reactant is limiting, and calculate what mass of each product is expected. (Assume that the limiting reactant is completely consumed). a. Sulfur + sulfuric acid → sulfur dioxide + water b. Manganese (IV) oxide + sulfuric acid → manganese (IV) sulfate + water **Chemistry 209/Unit #3 Homework (7 of 7)** **Assignment #14/August 2016** **Page 1 of 6**
**Title: Dimensional Analysis, Standards of Measurement, Chemical Composition & Stoichiometry**

**Chemical Reactions:**

**C.** Hydrogen sulfide + Oxygen ⟶ Sulfur dioxide + Water

**D.** Silver nitrate + Aluminum ⟶ Silver + Aluminum nitrate

This section explores chemical reactions, using specific examples to illustrate the principles of stoichiometry. In reaction C, hydrogen sulfide reacts with oxygen to produce sulfur dioxide and water. In reaction D, silver nitrate reacts with aluminum to produce silver and aluminum nitrate. Such reactions are essential in understanding the quantitative aspects of chemical reactions, including the conservation of mass and the relationships between reactants and products.
Transcribed Image Text:**Title: Dimensional Analysis, Standards of Measurement, Chemical Composition & Stoichiometry** **Chemical Reactions:** **C.** Hydrogen sulfide + Oxygen ⟶ Sulfur dioxide + Water **D.** Silver nitrate + Aluminum ⟶ Silver + Aluminum nitrate This section explores chemical reactions, using specific examples to illustrate the principles of stoichiometry. In reaction C, hydrogen sulfide reacts with oxygen to produce sulfur dioxide and water. In reaction D, silver nitrate reacts with aluminum to produce silver and aluminum nitrate. Such reactions are essential in understanding the quantitative aspects of chemical reactions, including the conservation of mass and the relationships between reactants and products.
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