Question 8 A container has an initial pressure of 2.82 atm and an initial volume of 46.2 dL. The final volume is 71 dL respectively. Calculate the final pressure. Express your answer in mm Hg. Your answer will not be evaluated for significant figures so it will not be necessary to round your calculated answer. Assume moles and temperature of the container remain constant.

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Question 8
A container has an initial pressure of 2.82 atm and an initial volume of 46.2 dL. The final volume is 71 dL
respectively. Calculate the final pressure. Express your answer in mm Hg. Your answer will not be evaluated for
significant figures so it will not be necessary to round your calculated answer.
Assume moles and temperature of the container remain constant.
Question 9
A container has an initial temperature of -25°C. The temperature of the container is changed to 23°C. Th
volume is now 840 mL. Calculate what the initial volume of the gas in the container. Express your answer
milliliters. Your answer will not be evaluated for significant figures so it will not be necessary to round you
calculated answer.
Transcribed Image Text:Not enough infor Question 8 A container has an initial pressure of 2.82 atm and an initial volume of 46.2 dL. The final volume is 71 dL respectively. Calculate the final pressure. Express your answer in mm Hg. Your answer will not be evaluated for significant figures so it will not be necessary to round your calculated answer. Assume moles and temperature of the container remain constant. Question 9 A container has an initial temperature of -25°C. The temperature of the container is changed to 23°C. Th volume is now 840 mL. Calculate what the initial volume of the gas in the container. Express your answer milliliters. Your answer will not be evaluated for significant figures so it will not be necessary to round you calculated answer.
Expert Solution
Step 1

Given 

initial pressure ( P1)          =  2.82 atm 

Initial Volume (V1)            =  46.2 dL 

Final Volume  (V2)            =  71 dL

Final Pressure (P2)            = ?

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