A sample of krypton gas occupies a volume of 8.00 L at 69.0°C and 320. torr. If the volume of the gas sample is decreased to 6.64 L, while its temperature is decreased to -5.0°C, the resulting gas pressure will be torr.

Chemistry
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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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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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**Gas Laws and Calculations**

A sample of krypton gas occupies a volume of 8.00 L at a temperature of 69.0°C and pressure of 320. torr. 

**Problem Statement:**

If the volume of the gas sample is decreased to 6.64 L, while its temperature is decreased to -5.0°C, calculate the resulting gas pressure in torr.

**Instructions:**

- Enter your answer in the provided space.
- Use the principles of gas laws to compute the new pressure.
- Submit your answer by clicking the "Submit Answer" button.
- You have 9 more group attempts remaining for solving this problem.

**Resources:**

- Use a gas law calculator if needed.

**Help:**

- If you're having trouble, you can retry the task with the "Retry Entire Group" button.
- For further assistance, contact your instructor.

Make sure to account for temperature conversions to Kelvin before applying the combined gas law formula:

\[ P_1 V_1 / T_1 = P_2 V_2 / T_2 \]

Where \( P \) stands for pressure, \( V \) for volume, and \( T \) for temperature.
Transcribed Image Text:**Gas Laws and Calculations** A sample of krypton gas occupies a volume of 8.00 L at a temperature of 69.0°C and pressure of 320. torr. **Problem Statement:** If the volume of the gas sample is decreased to 6.64 L, while its temperature is decreased to -5.0°C, calculate the resulting gas pressure in torr. **Instructions:** - Enter your answer in the provided space. - Use the principles of gas laws to compute the new pressure. - Submit your answer by clicking the "Submit Answer" button. - You have 9 more group attempts remaining for solving this problem. **Resources:** - Use a gas law calculator if needed. **Help:** - If you're having trouble, you can retry the task with the "Retry Entire Group" button. - For further assistance, contact your instructor. Make sure to account for temperature conversions to Kelvin before applying the combined gas law formula: \[ P_1 V_1 / T_1 = P_2 V_2 / T_2 \] Where \( P \) stands for pressure, \( V \) for volume, and \( T \) for temperature.
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