A storage tank has a volume of 3,000 liters [L] The tank is originally filled to a pressure of 21.1 megapascals [M Pa] with an ideal gas while the temperature is maintained at 28 degrees Celsius [°C] The molecular weight of the ideal gas is 56 grams per mole mol The tank is heated so the temperature increases to a final temperature of 58 degrees Celsius [°C] What will be the new pressure in the tank in units of megapascals [M Pa]

University Physics Volume 2
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Chapter3: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 66P: One of a dilute diatomic gas occupying a volume of 10.00 L expands against a constant pressure of...
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A storage tank has a volume of 3,000 liters
[L]
The tank is originally filled to a pressure of
21.1 megapascals
[M Pa]
with an ideal gas while the temperature is
maintained at 28 degrees Celsius
['C]
The molecular weight of the ideal gas is 56
grams per mole
mol
The tank is heated so the temperature
increases to a final temperature of 58
degrees Celsius
[C]
What will be the new pressure in the tank in
units of megapascals
[M Pa]
Transcribed Image Text:A storage tank has a volume of 3,000 liters [L] The tank is originally filled to a pressure of 21.1 megapascals [M Pa] with an ideal gas while the temperature is maintained at 28 degrees Celsius ['C] The molecular weight of the ideal gas is 56 grams per mole mol The tank is heated so the temperature increases to a final temperature of 58 degrees Celsius [C] What will be the new pressure in the tank in units of megapascals [M Pa]
\epresent
with
equations
O rganize
necessary
information
Conversions
and
calculations
Evaluate
final answer
Transcribed Image Text:\epresent with equations O rganize necessary information Conversions and calculations Evaluate final answer
Expert Solution
Step 1

Given: 

Storage volumeV=3000 L

Initial pressurePi=21.1 MPa

Initial temperatureTi=28 °C

Final temperatureTf=58 °C 

Molecular weight of ideal gasM=56 g/mol

Let's find new final pressure Pf.

 

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