4. Calculate from the data, AH for the hydrolysis of urea to give carbon dioxide and ammonia in aqueous solution: H,NCONH; (ag) + H;0 (1) ---→ CO: (ag) + 2NH3 (ag) From the following data: Coaehve + 2 Hz(g) + %0:(g) + N:(g) ----→ H;NCONH; (ag) -317.77 KJ/mol H2(g) + % O:(g) ---→ H;O (1) Coachve + O:(g)--→ CO: (ag) -285.85 -413.80 NH. (ag) 80 71

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter12: Chemical Equilibrium
Section12.3: Determining Equilibrium Constants
Problem 12.3PSP
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4. Calculate from the data, AH for the hydrolysis of urea to give carbon dioxide and ammonia in
aqueous solution:
H2NCONH2 (ag) + H20 (I) ---→ co: (ag) + 2NH3 (ag)
From the following data:
Cyackise + 2 H2(g) +% Oz(g) + N2(g) ----→ H;NCONH2 (ag) -317.77 KJ/mol
H2(g) + % Oz(g) ---→ H;0 (I)
Cvaatse + Oz(8)--→ Co2 (ag)
% N2(g) + 3/2 Hz (g) ---→ NH3 (ag)
-285.85
-413.80
-80.71
Transcribed Image Text:4. Calculate from the data, AH for the hydrolysis of urea to give carbon dioxide and ammonia in aqueous solution: H2NCONH2 (ag) + H20 (I) ---→ co: (ag) + 2NH3 (ag) From the following data: Cyackise + 2 H2(g) +% Oz(g) + N2(g) ----→ H;NCONH2 (ag) -317.77 KJ/mol H2(g) + % Oz(g) ---→ H;0 (I) Cvaatse + Oz(8)--→ Co2 (ag) % N2(g) + 3/2 Hz (g) ---→ NH3 (ag) -285.85 -413.80 -80.71
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