Part B An ideal gaseous reaction (which is a hypothetical gaseous reaction that conforms to the laws governing gas behavior) occurs at a constant pressure of 45.0 atm and releases 63.8 kJ of heat. Before the reaction, the volume of the system was 6.80 L. After the reaction, the volume of the system was 2.60 L. Calculate the total internal energy change, AE, in kilojoules. Express your answer with the appropriate units. > View Available Hint(s) ? AE = Value Units

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Part B
An ideal gaseous reaction (which is a hypothetical gaseous reaction that conforms to the laws governing gas behavior) occurs at a constant pressure of 45.0 atm and
releases 63.8 kJ of heat. Before the reaction, the volume of the system was 6.80 L. After the reaction, the volume of the system was 2.60 L. Calculate the total
internal energy change, AE, in kilojoules.
Express your answer with the appropriate units.
> View Available Hint(s)
HA
?
ΔΕ-
Value
Units
Submit
Transcribed Image Text:Part B An ideal gaseous reaction (which is a hypothetical gaseous reaction that conforms to the laws governing gas behavior) occurs at a constant pressure of 45.0 atm and releases 63.8 kJ of heat. Before the reaction, the volume of the system was 6.80 L. After the reaction, the volume of the system was 2.60 L. Calculate the total internal energy change, AE, in kilojoules. Express your answer with the appropriate units. > View Available Hint(s) HA ? ΔΕ- Value Units Submit
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