Suppose we have a closed, un-isolated system. When 483 J of heat was introduced to the system, it caused the system to expand, doing 320 J of work in the process. What is the value of AE for the process?

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Chapter1: Chemical Foundations
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Suppose we have a closed, un-isolated system. When 483 J of heat was introduced
to the system, it caused the system to expand, doing 320 J of work in the process.
What is the value of AE for the process?
ion
O (320-483) J
O (483+320) J
O none
O (-320-483) J
O (483-320) J
pus page
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Time left 1:48:16
If 20.0 mL of 3.0 M HCI solution and 20.0 mL of 3.0 M NaOH solution at 21.5 °C are
mixed in a calorimeter with a heat capacity of 10 Cal/ C. (assume the density and
specific heat of the solution is 1.05 g/ml and 0.94 Cal/g °C respectively). The
temperature increased to 38.0 °C.
The molar heat of the neutralization reaction ( in Cal/mol units) is equal to?
O 6528.7 Cal/mol
O 13057.3 Cal/mol
O none
O 6788.3 Cal/mol
O 13606.7 Cal/mol
Transcribed Image Text:Time left 1:48:29 Suppose we have a closed, un-isolated system. When 483 J of heat was introduced to the system, it caused the system to expand, doing 320 J of work in the process. What is the value of AE for the process? ion O (320-483) J O (483+320) J O none O (-320-483) J O (483-320) J pus page Next page Time left 1:48:16 If 20.0 mL of 3.0 M HCI solution and 20.0 mL of 3.0 M NaOH solution at 21.5 °C are mixed in a calorimeter with a heat capacity of 10 Cal/ C. (assume the density and specific heat of the solution is 1.05 g/ml and 0.94 Cal/g °C respectively). The temperature increased to 38.0 °C. The molar heat of the neutralization reaction ( in Cal/mol units) is equal to? O 6528.7 Cal/mol O 13057.3 Cal/mol O none O 6788.3 Cal/mol O 13606.7 Cal/mol
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