Determine the heat of reaction ( in k) for the following reaction. Mg(s) + 2HCI(aq)- MgCl2(aq) + H2lg) AH = -CPAT/n %3D Tinitial = 30.92 °C %3D T final = 32.16 °C %3D mass Mg = 0.0374 g %3D Mg = 24.31 g/mol !3! Cp = answer from question 3 Answer: 347.1 KJ Given: AH° = -127 kJ/mol for Mgo (s) + 2 HCI (aq) MgCl2(aq) + H20(1) of AH = -601.7 kJ/mol for Mg(s) + % O2(g) MgO(s) AH° = -285.8 kJ/mol for H2(g) + ½ Oz(g) -H20(1) in AH° = 0.00 kJ/mol for Mg(s) and H2(g) Calculate the AHn for ren Mg(s) + 2 HCI (aq) MgCl;(aq) + H2(g) Answer:-470 KJ/mol here to search

Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter8: Thermochemistry
Section: Chapter Questions
Problem 1QAP: Principles of Heat Flow Titanium is a metal used in jet engines. Its specific heat is 0.523 J/g C....
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Determine the heat of reaction ( in k) for the following reaction.
Mg(s) + 2HCI(aq)- MgCl2(aq) + H2lg)
AH = -CPAT/n
%3D
Tinitial = 30.92 °C
%3D
T final = 32.16 °C
%3D
mass Mg = 0.0374 g
%3D
Mg = 24.31 g/mol
!3!
Cp
= answer from question 3
Answer: 347.1 KJ
Given:
AH° = -127 kJ/mol for Mgo (s) + 2 HCI (aq)
MgCl2(aq) + H20(1)
of
AH°
= -601.7 kJ/mol for Mg(s) + % Oz2(g)
MgO(s)
AH° = -285.8 kJ/mol for Hz(g) + ½ Oz(g) -H20(1)
in
AH° = 0.00 kJ/mol for Mg(s) and H2(g)
Calculate the AHn for
ren
Mg(s) + 2 HCI (aq)
MgCl;(aq) + Hz(g)
Answer:-470 KJ/mol
here to search
Transcribed Image Text:Determine the heat of reaction ( in k) for the following reaction. Mg(s) + 2HCI(aq)- MgCl2(aq) + H2lg) AH = -CPAT/n %3D Tinitial = 30.92 °C %3D T final = 32.16 °C %3D mass Mg = 0.0374 g %3D Mg = 24.31 g/mol !3! Cp = answer from question 3 Answer: 347.1 KJ Given: AH° = -127 kJ/mol for Mgo (s) + 2 HCI (aq) MgCl2(aq) + H20(1) of AH° = -601.7 kJ/mol for Mg(s) + % Oz2(g) MgO(s) AH° = -285.8 kJ/mol for Hz(g) + ½ Oz(g) -H20(1) in AH° = 0.00 kJ/mol for Mg(s) and H2(g) Calculate the AHn for ren Mg(s) + 2 HCI (aq) MgCl;(aq) + Hz(g) Answer:-470 KJ/mol here to search
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