Nitric acid and hydrazine (N2H4)

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
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e. Nitric acid and hydrazine (N2H4)

**Molecular and Ionic Equations for Acid-Base Reactions**

**Objective:**

- Write the complete molecular equation (regular equation), complete ionic equation (all strong electrolytes broken apart into ions), and net ionic equation (spectator ions removed) for each strong acid-weak base reaction.

**Key Components:**

1. **Strong Acids**:
   - Hydrochloric
   - Hydrobromic
   - Hydroiodic
   - Nitric
   - Perchloric
   - Chloric
   - Sulfuric

2. **Weak Bases**:
   - Any neutral compound containing nitrogen

**Instructions:**

1. **Complete Molecular Equation**:
   - Identify all reactants and products in their molecular form.

2. **Complete Ionic Equation**:
   - Break apart all strong electrolytes into their constituent ions.

3. **Net Ionic Equation**:
   - Remove spectator ions to highlight the actual chemical change.

Follow these steps to accurately represent the chemical reactions between strong acids and weak bases.
Transcribed Image Text:**Molecular and Ionic Equations for Acid-Base Reactions** **Objective:** - Write the complete molecular equation (regular equation), complete ionic equation (all strong electrolytes broken apart into ions), and net ionic equation (spectator ions removed) for each strong acid-weak base reaction. **Key Components:** 1. **Strong Acids**: - Hydrochloric - Hydrobromic - Hydroiodic - Nitric - Perchloric - Chloric - Sulfuric 2. **Weak Bases**: - Any neutral compound containing nitrogen **Instructions:** 1. **Complete Molecular Equation**: - Identify all reactants and products in their molecular form. 2. **Complete Ionic Equation**: - Break apart all strong electrolytes into their constituent ions. 3. **Net Ionic Equation**: - Remove spectator ions to highlight the actual chemical change. Follow these steps to accurately represent the chemical reactions between strong acids and weak bases.
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