Use Charles's law to complete the table. (Assume pressure and number of moles of gas to be constant.) Part V1 T1 V2 T2 A 115 L 10.6 °C 120.7 °C В 134 K 177 L 314 K C 2.02 L 15.0 °C 2.26 L 15.9 cm3 18.4 cm3 11.4 °C
Use Charles's law to complete the table. (Assume pressure and number of moles of gas to be constant.) Part V1 T1 V2 T2 A 115 L 10.6 °C 120.7 °C В 134 K 177 L 314 K C 2.02 L 15.0 °C 2.26 L 15.9 cm3 18.4 cm3 11.4 °C
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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1. Complete the first row of the table.
Express the volume in liters to three significant figures.
2. Complete the second row of the table.
Express the volume in liters to three significant figures.
3. Complete the third row of the table.
Express the temperature in degrees Celsius to three significant figures.
4. Complete the fourth row of the table.
Express the temperature in degrees Celsius to three significant figures.
 and [IWE 11.3](#); Read Section 11.5. You can click on the Review link to access the section in your eText.
**Instructions:** Use Charles's law to complete the table. (Assume pressure and number of moles of gas to be constant.)
| Part | \( V_1 \) | \( T_1 \) | \( V_2 \) | \( T_2 \) |
|------|----------|-----------|----------|-----------|
| A | 115 L | 10.6 °C | — | 120.7 °C |
| B | — | 134 K | 177 L | 314 K |
| C | 2.02 L | 15.0 °C | 2.26 L | — |
| D | 15.9 cm³ | — | 18.4 cm³ | 11.4 °C |
**Explanation:**
- **Columns:**
- \( V_1 \) and \( V_2 \) represent initial and final volumes, respectively.
- \( T_1 \) and \( T_2 \) represent initial and final temperatures, respectively. Temperatures need to be converted to Kelvin when performing calculations.
- **Table Tasks:**
- Apply Charles's Law: \(\frac{V_1}{T_1} = \frac{V_2}{T_2}\) to find the missing values. Ensure temperatures are in Kelvin for precise calculations.
**Note:** Charles's Law describes how gases tend to expand when heated.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F73d569c5-2e2b-4e09-8501-0d7e6704df3c%2F8240f701-e5ad-4e4d-95d9-5f9d50b71c53%2Fqt3iozh_processed.png&w=3840&q=75)
Transcribed Image Text:**Educational Exercise Using Charles's Law**
**MISSED THIS?** Watch [KCV 11.4](#) and [IWE 11.3](#); Read Section 11.5. You can click on the Review link to access the section in your eText.
**Instructions:** Use Charles's law to complete the table. (Assume pressure and number of moles of gas to be constant.)
| Part | \( V_1 \) | \( T_1 \) | \( V_2 \) | \( T_2 \) |
|------|----------|-----------|----------|-----------|
| A | 115 L | 10.6 °C | — | 120.7 °C |
| B | — | 134 K | 177 L | 314 K |
| C | 2.02 L | 15.0 °C | 2.26 L | — |
| D | 15.9 cm³ | — | 18.4 cm³ | 11.4 °C |
**Explanation:**
- **Columns:**
- \( V_1 \) and \( V_2 \) represent initial and final volumes, respectively.
- \( T_1 \) and \( T_2 \) represent initial and final temperatures, respectively. Temperatures need to be converted to Kelvin when performing calculations.
- **Table Tasks:**
- Apply Charles's Law: \(\frac{V_1}{T_1} = \frac{V_2}{T_2}\) to find the missing values. Ensure temperatures are in Kelvin for precise calculations.
**Note:** Charles's Law describes how gases tend to expand when heated.
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