Procedure: Experiment 1. Prepare one of the following solutions: (a) 100mL of aqueous 0.10M NaCl, (b) 50mL of aqueous 0.10M KCI, (c) 100mL of aqueous 0.05M MgSO4, (d) 50mL of aqueous 0.05M NaHCO3
Procedure: Experiment 1. Prepare one of the following solutions: (a) 100mL of aqueous 0.10M NaCl, (b) 50mL of aqueous 0.10M KCI, (c) 100mL of aqueous 0.05M MgSO4, (d) 50mL of aqueous 0.05M NaHCO3
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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![Title: Lab 5 – Solution Preparation
**Purpose:**
Perform both the calculations and hands-on procedures involved in preparing solutions.
**Background Information:**
Consider the different concentration definitions (listed below) that have been discussed. Also, consider the procedure described for preparing a solution with a volumetric flask.
- **Weight/Volume Percent (w/v%):**
\[ \text{w/v\%} = \frac{\text{mass solute (g)}}{\text{volume of solution (mL)}} \times 100\% \]
- **Volume/Volume Percent (v/v%):**
\[ \text{v/v\%} = \frac{\text{volume solute (mL)}}{\text{volume of solution (mL)}} \times 100\% \]
- **Molarity (M):**
\[ M = \frac{\text{moles solute}}{\text{volume of solution (L)}} \]
**Procedure:**
*Experiment 1:* Prepare **one** of the following solutions:
1. 100 mL of aqueous 0.10M NaCl
2. 50 mL of aqueous 0.10M KCl
3. 100 mL of aqueous 0.05M MgSO₄
4. 50 mL of aqueous 0.05M NaHCO₃
1. **Determine how many grams of solid are required.**
- Show all steps for this calculation, using dimensional analysis with units clearly identified.
2. **Prepare this aqueous solution**, using a volumetric flask for the precise final volume measurement. Tap or distilled water may be used.
3. **Clearly write the procedure** (step by step) for making this solution.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F67ec095e-bc9b-416c-a3f1-214c30277dc5%2Fd4daf461-b4bb-4cbe-9ab6-cc3c76efcfa6%2Frku0fon_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Title: Lab 5 – Solution Preparation
**Purpose:**
Perform both the calculations and hands-on procedures involved in preparing solutions.
**Background Information:**
Consider the different concentration definitions (listed below) that have been discussed. Also, consider the procedure described for preparing a solution with a volumetric flask.
- **Weight/Volume Percent (w/v%):**
\[ \text{w/v\%} = \frac{\text{mass solute (g)}}{\text{volume of solution (mL)}} \times 100\% \]
- **Volume/Volume Percent (v/v%):**
\[ \text{v/v\%} = \frac{\text{volume solute (mL)}}{\text{volume of solution (mL)}} \times 100\% \]
- **Molarity (M):**
\[ M = \frac{\text{moles solute}}{\text{volume of solution (L)}} \]
**Procedure:**
*Experiment 1:* Prepare **one** of the following solutions:
1. 100 mL of aqueous 0.10M NaCl
2. 50 mL of aqueous 0.10M KCl
3. 100 mL of aqueous 0.05M MgSO₄
4. 50 mL of aqueous 0.05M NaHCO₃
1. **Determine how many grams of solid are required.**
- Show all steps for this calculation, using dimensional analysis with units clearly identified.
2. **Prepare this aqueous solution**, using a volumetric flask for the precise final volume measurement. Tap or distilled water may be used.
3. **Clearly write the procedure** (step by step) for making this solution.
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