Hydrogen H2(g) 0 0 130.7 H(g) 218.0 203.3 114.7 H*(g) 1530.1 1517.1 108.95 H+(aq) 0 0 0 Thermodynamic properties of pure substances Nitrogen N2(g) 0 0 191.6 N(g) 472.7 455.5 153.3 N3(aq) 275.1 348.2 107.9 NH3(1) -69.54 -26.5 95.09 NH3(9) -45.9 -16.4 192.8 NH3(aq) -80.3 -26.5 111.3 NH4+(aq) -132.5 -79.3 113.4 N2H4(1) 50.6 149.3 121.2 N2H4(9) 95.4 159.4 238.5 NH4Cl(s) -314.4 -202.9 94.6 NH4NO3(s) -365.6 -183.9 151.1 Thermodynamic properties of pure substances substance AH,° (kJ/mol) AG,° (kJ/mol) S° (J/mol·K) Aluminum Al(s) 0 0 28.3 Al3+(aq) -531.0 -485.0 -321.7 AICI 3(s) -704.2 -628.8 109.3 Al2O3(s) -1675.7 -1582.3 50.9 Al(OH)3(s) -647.3 -1147.25 Arsenic As(s; gray) 0 0 35.1 ASH3(9) 66.4 68.9 222.8 H3ASO4(s) -906.3 -766.0 184.0 AsO43-(aq) -888.1 -648.4 -162.8 Using any data you can find in the ALEKS Data resource, calculate the equilibrium constant K at 25.0 °C for the following reaction. N2(g) + 3H2(g) →>> 2 NH3 (9) Round your answer to 2 significant digits. K = ☐ x10

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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The two images below show the probelm and the aleks data to slove problem

Hydrogen
H2(g)
0
0
130.7
H(g)
218.0
203.3
114.7
H*(g)
1530.1
1517.1
108.95
H+(aq)
0
0
0
Thermodynamic properties of pure substances
Nitrogen
N2(g)
0
0
191.6
N(g)
472.7
455.5
153.3
N3(aq)
275.1
348.2
107.9
NH3(1)
-69.54
-26.5
95.09
NH3(9)
-45.9
-16.4
192.8
NH3(aq)
-80.3
-26.5
111.3
NH4+(aq)
-132.5
-79.3
113.4
N2H4(1)
50.6
149.3
121.2
N2H4(9)
95.4
159.4
238.5
NH4Cl(s)
-314.4
-202.9
94.6
NH4NO3(s)
-365.6
-183.9
151.1
Thermodynamic properties of pure substances
substance
AH,° (kJ/mol) AG,° (kJ/mol) S° (J/mol·K)
Aluminum
Al(s)
0
0
28.3
Al3+(aq)
-531.0
-485.0
-321.7
AICI 3(s)
-704.2
-628.8
109.3
Al2O3(s)
-1675.7
-1582.3
50.9
Al(OH)3(s)
-647.3
-1147.25
Arsenic
As(s; gray)
0
0
35.1
ASH3(9)
66.4
68.9
222.8
H3ASO4(s)
-906.3
-766.0
184.0
AsO43-(aq)
-888.1
-648.4
-162.8
Transcribed Image Text:Hydrogen H2(g) 0 0 130.7 H(g) 218.0 203.3 114.7 H*(g) 1530.1 1517.1 108.95 H+(aq) 0 0 0 Thermodynamic properties of pure substances Nitrogen N2(g) 0 0 191.6 N(g) 472.7 455.5 153.3 N3(aq) 275.1 348.2 107.9 NH3(1) -69.54 -26.5 95.09 NH3(9) -45.9 -16.4 192.8 NH3(aq) -80.3 -26.5 111.3 NH4+(aq) -132.5 -79.3 113.4 N2H4(1) 50.6 149.3 121.2 N2H4(9) 95.4 159.4 238.5 NH4Cl(s) -314.4 -202.9 94.6 NH4NO3(s) -365.6 -183.9 151.1 Thermodynamic properties of pure substances substance AH,° (kJ/mol) AG,° (kJ/mol) S° (J/mol·K) Aluminum Al(s) 0 0 28.3 Al3+(aq) -531.0 -485.0 -321.7 AICI 3(s) -704.2 -628.8 109.3 Al2O3(s) -1675.7 -1582.3 50.9 Al(OH)3(s) -647.3 -1147.25 Arsenic As(s; gray) 0 0 35.1 ASH3(9) 66.4 68.9 222.8 H3ASO4(s) -906.3 -766.0 184.0 AsO43-(aq) -888.1 -648.4 -162.8
Using any data you can find in the ALEKS Data resource, calculate the equilibrium constant K at 25.0 °C for the following reaction.
N2(g) + 3H2(g)
→>>
2 NH3 (9)
Round your answer to 2 significant digits.
K =
☐ x10
Transcribed Image Text:Using any data you can find in the ALEKS Data resource, calculate the equilibrium constant K at 25.0 °C for the following reaction. N2(g) + 3H2(g) →>> 2 NH3 (9) Round your answer to 2 significant digits. K = ☐ x10
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