Directions: Show all your work and include units in your answer. Box your final answer. R=0.0821 L atm K = °C+273 1000mL = 1L PV = nRT mol K sample of gas is in a 6.2 L flexible container at a temperature of 155 degrees Isius. What is the volume when the temperature is raised to 255 degrees Celsius nile the pressure stays constant? (use 2 decimal places) Based on the question, should you use the IFE Table or PV=nRT to solve the problem? P. V in. T Initial: Final: Effect:
Directions: Show all your work and include units in your answer. Box your final answer. R=0.0821 L atm K = °C+273 1000mL = 1L PV = nRT mol K sample of gas is in a 6.2 L flexible container at a temperature of 155 degrees Isius. What is the volume when the temperature is raised to 255 degrees Celsius nile the pressure stays constant? (use 2 decimal places) Based on the question, should you use the IFE Table or PV=nRT to solve the problem? P. V in. T Initial: Final: Effect:
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
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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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
Transcribed Image Text:Directions: Show all your work and include units in your answer. Box your final answer.
R= 0.0821 L atm
mol K
K = °C+ 273
1000mL = 1L
PV = nRT
A sample of gas is in a 6.2 L flexible container at a temperature of 155 degrees
Celsius. What is the volume when the temperature is raised to 255 degrees Celsius
while the pressure stays constant? (use 2 decimal places)
Based on the question, should you use
the IFE Table or PV=nRT to solve the
problem?
Initial:
Final:
Effect:
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