. For each of the following reactions, provide a balanced chemical equation and suppose that exactly 50.0 g of each reactant is taken. Determine which reactant is limiting, and calculate what mass of the product in boldface is expected. (Assume that the limiting reactant is completely consumed.) a. ammonia + sodium → sodium amide (NaNH2) + hydrogen
. For each of the following reactions, provide a balanced chemical equation and suppose that exactly 50.0 g of each reactant is taken. Determine which reactant is limiting, and calculate what mass of the product in boldface is expected. (Assume that the limiting reactant is completely consumed.) a. ammonia + sodium → sodium amide (NaNH2) + hydrogen
Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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
Transcribed Image Text:**Chemistry 20/Unit #3 Homework (7 of 7)**
**Assignment #1 August 2016**
---
2. For each of the following reactions, provide a balanced chemical equation and suppose that exactly 50.0 g of each reactant is taken. Determine which reactant is limiting and calculate what mass of the product in boldface is expected. (Assume that the limiting reactant is completely consumed.)
a. Ammonia + sodium → **sodium amide** (NaNH₂) + hydrogen (H₂)

Transcribed Image Text:**Title:** Dimensional Analysis, Standards of Measurement, Chemical Composition & Stoichiometry
**Chemical Reactions:**
**b.** Barium chloride + sodium sulfate → **barium sulfate** + sodium chloride
**c.** Sulfur dioxide + sodium hydroxide → **sodium sulfite** + water
**d.** Aluminum + sulfuric acid → **aluminum sulfate** + hydrogen
---
**Explanation:**
These equations represent chemical reactions where reactants on the left yield products on the right. The reactions highlight the process of stoichiometry, showing the conversion of initial substances into new compounds.
In each equation, the product in bold is highlighted as the primary compound of interest for the reaction described.
This material is part of Chemistry 209/Unit #3 Homework (Page 7 of 7), assigned as Assignment #14 in August 2016.
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