1. Hydrochloric acid is neutralized with potassium hydroxide in the following reaction HC1 (aq) + KOH (aq) --> KC1 (aq) + H₂O (1) DH° = -5 557 J/mol 40.00 mL of 1.500 mol/L solutions of both reactants, at 23.32 °C are mixed in a calorimeter. What is the final temperature of the mixture? Assume that the density of both solutions is 1.000 g/mL. Also assume that the specific heat capacity of both solutions is the same as the specific heat capacity of water (4.184 J/g °C).
1. Hydrochloric acid is neutralized with potassium hydroxide in the following reaction HC1 (aq) + KOH (aq) --> KC1 (aq) + H₂O (1) DH° = -5 557 J/mol 40.00 mL of 1.500 mol/L solutions of both reactants, at 23.32 °C are mixed in a calorimeter. What is the final temperature of the mixture? Assume that the density of both solutions is 1.000 g/mL. Also assume that the specific heat capacity of both solutions is the same as the specific heat capacity of water (4.184 J/g °C).
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Chapter1: Chemical Foundations
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![1. Hydrochloric acid is neutralized with potassium hydroxide in the following reaction
HC1
(aq)
+ KOH
(aq)
--> KC1
(aq)
+ H₂O (1)
DH° = -5 557 J/mol
40.00 mL of 1.500 mol/L solutions of both reactants, at 23.32 °C are mixed in a calorimeter. What is the final
temperature of the mixture? Assume that the density of both solutions is 1.000 g/mL. Also assume that the
specific heat capacity of both solutions is the same as the specific heat capacity of water (4.184 J/g °C).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffdb93204-24dc-4563-8031-df25d08286e7%2Fc2cee765-5596-4686-a897-2385e546895f%2Fm90mp4i_processed.png&w=3840&q=75)
Transcribed Image Text:1. Hydrochloric acid is neutralized with potassium hydroxide in the following reaction
HC1
(aq)
+ KOH
(aq)
--> KC1
(aq)
+ H₂O (1)
DH° = -5 557 J/mol
40.00 mL of 1.500 mol/L solutions of both reactants, at 23.32 °C are mixed in a calorimeter. What is the final
temperature of the mixture? Assume that the density of both solutions is 1.000 g/mL. Also assume that the
specific heat capacity of both solutions is the same as the specific heat capacity of water (4.184 J/g °C).
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