Given the following set of data: Volume of 0.800 M HCI = 50.00 mL; Volume of 0.800 M NaOH = 50.00 mL; Density of HCI and NaOH solutions = 1.00 g/mL; Initial temperature of each solution = 22.0 °C; Final temperature after mixing solutions = 28.1 °C; Specific heat of solution = 4.184 J/(g.°C); Calorimeter constant (C) = 96.0 J/°C. Calculate AH %3D %3D for the neutralization reaction of HCI and NaOH. O a. -73.8 kJ/mol O b. -64.0 kJ/mol C. -78.4 kJ/mol O d. -69.7 kJ/mol O e. -66.8 kJ/mol

Chemistry & Chemical Reactivity
9th Edition
ISBN:9781133949640
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter13: Solutions And Their Behavior
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Given the following set of data: Volume
of 0.800 M HCI = 50.00 mL; Volume of
0.800 M NaOH = 50.00 mL; Density of
%3D
%3D
HCI and NaOH solutions = 1.00 g/mL;
Initial temperature of each solution
22.0 °C; Final temperature after mixing
solutions = 28.1 °C; Specific heat of
%3D
solution = 4.184 J/(g. C); Calorimeter
constant (C) = 96.0 J/°C. Calculate AH
%3D
for the neutralization reaction of HCI and
NaOH.
a. -73.8 kJ/mol
O b. -64.0 kJ/mol
O C. -78.4 kJ/mol
O d. -69.7 kJ/mol
e. -66.8 kJ/mol
Transcribed Image Text:Given the following set of data: Volume of 0.800 M HCI = 50.00 mL; Volume of 0.800 M NaOH = 50.00 mL; Density of %3D %3D HCI and NaOH solutions = 1.00 g/mL; Initial temperature of each solution 22.0 °C; Final temperature after mixing solutions = 28.1 °C; Specific heat of %3D solution = 4.184 J/(g. C); Calorimeter constant (C) = 96.0 J/°C. Calculate AH %3D for the neutralization reaction of HCI and NaOH. a. -73.8 kJ/mol O b. -64.0 kJ/mol O C. -78.4 kJ/mol O d. -69.7 kJ/mol e. -66.8 kJ/mol
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