3. Using the same calorimeter as in problem 2, a student mixed 180.0 mL of 2.50 M HNO3 With 180.0 mL of 2.55 M KOH. a. Write the neutralization reaction occurring. b. What is the final volume of the solution? What is its concentration (of the salt produced)? С. If the density of the resulting solution is 1.05 g/mL, what is the mass of the resulting solution?

Principles of Modern Chemistry
8th Edition
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Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
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Chapter15: Acid–base Equilibria
Section: Chapter Questions
Problem 98AP
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3. Using the same calorimeter as in problem 2, a student mixed 180.0 mL of 2.50 M HNO3 with
180.0 mL of 2.55 M KOH.
a. Write the neutralization reaction occurring.
b. What is the final volume of the solution? What is its concentration (of the salt produced)?
If the density of the resulting solution is 1.05 g/mL, what is the mass of the resulting
solution?
С.
d. The specific heat of the resulting solution is 3.87 J/g°C. If the temperature change was
measured to be 20.8°C, how many joules did the solution absorb?
adt vd bedre
е.
How many joules did the calorimeter absorb?
f. Calculate the total number of joules released by the reaction.
g. Calculate AH neutralization in kJ/mol.
Transcribed Image Text:3. Using the same calorimeter as in problem 2, a student mixed 180.0 mL of 2.50 M HNO3 with 180.0 mL of 2.55 M KOH. a. Write the neutralization reaction occurring. b. What is the final volume of the solution? What is its concentration (of the salt produced)? If the density of the resulting solution is 1.05 g/mL, what is the mass of the resulting solution? С. d. The specific heat of the resulting solution is 3.87 J/g°C. If the temperature change was measured to be 20.8°C, how many joules did the solution absorb? adt vd bedre е. How many joules did the calorimeter absorb? f. Calculate the total number of joules released by the reaction. g. Calculate AH neutralization in kJ/mol.
2. In a similar experiment, a student mixed 200.0 mL of hot water with 200.0 mL of cool water. The
temperature change for the hot water was 26.5°C and the temperature change for the cool water
was 24.2°C.
a.
Calculate the joules lost by the hot water.
b. Calculate the joules absorbed by the cool water.
C.
Calculate the joules absorbed by the calorimeter.
JomM
d. Calculate the calorimeter constant.
Transcribed Image Text:2. In a similar experiment, a student mixed 200.0 mL of hot water with 200.0 mL of cool water. The temperature change for the hot water was 26.5°C and the temperature change for the cool water was 24.2°C. a. Calculate the joules lost by the hot water. b. Calculate the joules absorbed by the cool water. C. Calculate the joules absorbed by the calorimeter. JomM d. Calculate the calorimeter constant.
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