Enter your answer in the provided box. At what temperature (in °C) will a sample of gas occupy 95.3 L if it occupies 40.0 L at 90.0°C? (Assume constant pressure.) °C

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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**Gas Law Calculation**

**Question:**  
At what temperature (in °C) will a sample of gas occupy 95.3 L if it occupies 40.0 L at 90.0°C? (Assume constant pressure.)

**Instructions:**  
Enter your answer in the provided box.

[Input Box for Answer] °C

**Explanation:**  
This question is based on the principles of gas laws, specifically Charles's Law. Charles’s Law states that the volume of a gas is directly proportional to its temperature when pressure is held constant. The equation used is:

\[ V_1 / T_1 = V_2 / T_2 \]

where \( V_1 \) and \( V_2 \) are the initial and final volumes, and \( T_1 \) and \( T_2 \) are the initial and final temperatures (in Kelvin). To convert temperatures from Celsius to Kelvin, use the formula:

\[ K = °C + 273.15 \]

Use these equations to solve the problem.
Transcribed Image Text:**Gas Law Calculation** **Question:** At what temperature (in °C) will a sample of gas occupy 95.3 L if it occupies 40.0 L at 90.0°C? (Assume constant pressure.) **Instructions:** Enter your answer in the provided box. [Input Box for Answer] °C **Explanation:** This question is based on the principles of gas laws, specifically Charles's Law. Charles’s Law states that the volume of a gas is directly proportional to its temperature when pressure is held constant. The equation used is: \[ V_1 / T_1 = V_2 / T_2 \] where \( V_1 \) and \( V_2 \) are the initial and final volumes, and \( T_1 \) and \( T_2 \) are the initial and final temperatures (in Kelvin). To convert temperatures from Celsius to Kelvin, use the formula: \[ K = °C + 273.15 \] Use these equations to solve the problem.
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