kindly answer all questions correctly with detailed explanation step by step for upvotes otherwise 5 downvote. thank you need answer fast Bromine reacts with chlorine to form bromine trichloride based on the following reaction: Br2 + 3C12 à 2BrCl3 This reaction is carried out in a bomb calorimeter (heat capacity = 4500 J/°C), with 1 mole of each reactant, at 25°C and 1 atm of pressure. Once the reaction is complete, the temperature of the bomb calorimeter has increased by 72°C, and the reaction has reached equilibrium with 0.7 moles of Br2, 0.025 moles of Cl2 and 0.65 moles of BrCl3 remaining in the reaction vessel. Using only the information provided in the question above: 1) what is the AG• for this reaction in kJ/mol? Blank 1 2) What is the AH• for this reaction in kJ/mol Blank 2 3) What is the AS• for this reaction in J/mol K? Blank 3

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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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Bromine reacts with chlorine to form bromine
trichloride based on the following reaction:
Br2 + 3C12 à 2BrCl3
This reaction is carried out in a bomb
calorimeter (heat capacity = 4500 J/°C), with 1
mole of each reactant, at 25°C and 1 atm of
pressure. Once the reaction is complete, the
temperature of the bomb calorimeter has
increased by 72°C, and the reaction has
reached equilibrium with 0.7 moles of Br2,
0.025 moles of Cl2 and 0.65 moles of BrCl3
remaining in the reaction vessel.
Using only the information provided in the
question above:
1) what is the AG• for this reaction in kJ/mol?
Blank 1
2) What is the AH• for this reaction in kJ/mol
Blank 2
3) What is the AS• for this reaction in J/mol K?
Blank 3
Transcribed Image Text:kindly answer all questions correctly with detailed explanation step by step for upvotes otherwise 5 downvote. thank you need answer fast Bromine reacts with chlorine to form bromine trichloride based on the following reaction: Br2 + 3C12 à 2BrCl3 This reaction is carried out in a bomb calorimeter (heat capacity = 4500 J/°C), with 1 mole of each reactant, at 25°C and 1 atm of pressure. Once the reaction is complete, the temperature of the bomb calorimeter has increased by 72°C, and the reaction has reached equilibrium with 0.7 moles of Br2, 0.025 moles of Cl2 and 0.65 moles of BrCl3 remaining in the reaction vessel. Using only the information provided in the question above: 1) what is the AG• for this reaction in kJ/mol? Blank 1 2) What is the AH• for this reaction in kJ/mol Blank 2 3) What is the AS• for this reaction in J/mol K? Blank 3
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