The following reaction scheme is given: Aluminum metal added to a strong base aqueous solution provides a colorless solution (A), releasing a colorless gas (B). Introduction of carbon dioxide gas into (A) precipitates a white gelatinous precipitate (C). (C) is divided into two equal parts. To one portion, excess sodium hydroxide solution is added, dissolving the precipitate to a colorless solution (D). By annealing the other part of (C) at high temperature, an anhydrous white oxide (E) is formed. Write the corresponding equilibrium chemical equations for the described reactions and name the chemical forms (A) to (E).
The following reaction scheme is given: Aluminum metal added to a strong base aqueous solution provides a colorless solution (A), releasing a colorless gas (B). Introduction of carbon dioxide gas into (A) precipitates a white gelatinous precipitate (C). (C) is divided into two equal parts. To one portion, excess sodium hydroxide solution is added, dissolving the precipitate to a colorless solution (D). By annealing the other part of (C) at high temperature, an anhydrous white oxide (E) is formed. Write the corresponding equilibrium chemical equations for the described reactions and name the chemical forms (A) to (E).
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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The following reaction scheme is given: Aluminum metal added to a strong base aqueous solution provides a colorless solution (A), releasing a colorless gas (B). Introduction of carbon dioxide gas into (A) precipitates a white gelatinous precipitate (C). (C) is divided into two equal parts. To one portion, excess sodium hydroxide solution is added, dissolving the precipitate to a colorless solution (D). By annealing the other part of (C) at high temperature, an anhydrous white oxide (E) is formed. Write the corresponding equilibrium chemical equations for the described reactions and name the chemical forms (A) to (E).
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