One vessel contains 3.00 mol of an ideal gas at 100 kPa. Another vessel contains 4.00 mol of the same gas at 200 kPa and the same temperature. The vessels are connected by a stopcock. If the stopcock is opened and the temperature is kept constant, what will be the final pressure in the system? O A. 140 kPa O B. 175 kPa O C. 125 kPa O D. 120 kPa O E. 150 kPa

Chemistry
9th Edition
ISBN:9781133611097
Author:Steven S. Zumdahl
Publisher:Steven S. Zumdahl
Chapter5: Gases
Section: Chapter Questions
Problem 108E
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One vessel contains 3.00 mol of an ideal gas at 100 kPa. Another vessel contains 4.00 mol of the same gas at 200 kPa and the same temperature. The vessels are
connected by a stopcock. If the stopcock is opened and the temperature is kept constant, what will be the final pressure in the system?
O A. 140 kPa
O B. 175 kPa
O C. 125 kPa
O D. 120 kPa
O E. 150 kPa
Transcribed Image Text:One vessel contains 3.00 mol of an ideal gas at 100 kPa. Another vessel contains 4.00 mol of the same gas at 200 kPa and the same temperature. The vessels are connected by a stopcock. If the stopcock is opened and the temperature is kept constant, what will be the final pressure in the system? O A. 140 kPa O B. 175 kPa O C. 125 kPa O D. 120 kPa O E. 150 kPa
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