If 50.5 g of KBr are dissolved in 400.0 g of water at 25.0 °C in an insulated container, a temperature change is observed. The AH of solution of KBr is 19.9 kJ/mol. Assuming that the specific heat of the solution is 4.184 J/(g °C), and that no heat is gained or lost by the container, what will be the final temperature of the solution?
If 50.5 g of KBr are dissolved in 400.0 g of water at 25.0 °C in an insulated container, a temperature change is observed. The AH of solution of KBr is 19.9 kJ/mol. Assuming that the specific heat of the solution is 4.184 J/(g °C), and that no heat is gained or lost by the container, what will be the final temperature of the solution?
Chemistry
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ISBN:9781305957404
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Week 4 Lab 3....docx
If 50.5 g of KBr are dissolved in 400.0 g of water at 25.0 °C in an
insulated container, a temperature change is observed. The AH of
solution of KBr is 19.9 kJ/mol. Assuming that the specific heat of the
solution is 4.184 J/(g °C), and that no heat is gained or lost by the
container, what will be the final temperature of the solution?
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Transcribed Image Text:8:57 AM Wed Jan 25
If 50.5 g of KBr are dissolved in 400.0 g of water at 25.0 °C in an insulated container, a temperature
temperature of the solution?
change is observed. The AH of solution of KBr is 19.9 kJ/mol. Assuming that the specific heat of the
solution is 4.184 J/(g °C), and that no heat is gained or lost by the container, what will be the final
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Question 16 of 28
29.5 °C
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When the heat of solution is positive, heat is
absorbed in the solution process. Therefore the
temperature of the solution will decrease, not
increase.
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