Please use the values in the resources listed below instead of the textbook values. Calculate the approximate value of A Sº for the reaction below. 14N₂(g) + 15N₂(g) → 2 14N15N(g) - Assume that differences in molar masses, moments of inertia, and vibrational frequencies are negligible. Arsº .6806 X J.K-¹.mol-1
Please use the values in the resources listed below instead of the textbook values. Calculate the approximate value of A Sº for the reaction below. 14N₂(g) + 15N₂(g) → 2 14N15N(g) - Assume that differences in molar masses, moments of inertia, and vibrational frequencies are negligible. Arsº .6806 X J.K-¹.mol-1
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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Question

Transcribed Image Text:Please use the values in the resources listed below instead of the textbook values.
Calculate the approximate value of A Sº for the reaction below.
14N₂(g) + 15N₂(g) → 2 14N15N(g)
-
Assume that differences in molar masses, moments of inertia, and vibrational frequencies are negligible.
Arsº .6806
X J.K-¹.mol-1

Transcribed Image Text:formula
KCIO3(s)
KCIO4(s)
KF(s)
KI(S)
KMnO4(s)
KNO₂ (s)
KNO3(s)
KOH(s)
KO₂ (s)
K₂CO3(s)
K₂O₂ (s)
Kr(g)
Li(g)
Li(s)
LiBr(s)
LiCl(s)
Lif(s)
Lil(s)
LiOH(s)
Li₂O(s)
Mg(g)
Mg(s)
MgBr₂(s)
MgCO3(s)
MgCl₂(s)
Mg0(s)
Mn(g)
Mn(s)
MnCl₂ (s)
Mn0(s)
MnO₂ (s)
N(g)
NH,CH,CO,H(s)
NH3(g)
AH (kJ/mol)
-397.7
-432.8
-567.3
-327.9
-837.2
-369.8
-494.6
-424.8
-284.9
-1150.2
-494.1
0
159.3
0
-351.2
-408.6
-616.0
-270.4
-487.2
-597.9
147.1
0
-524.3
-1095.8
-641.3
-601.8
280.7
0
-481.3
-385.2
-520.0
470.7
-527.5
-46.3
Sº (J/mol-K)
143.1
151.0
66.6
106.3
171.7
152.1
133.1
78.9
116.7
155.4
102.1
164.1
138.8
28.03
74.3
59.3
35.7
86.8
50.21
37.6
148.6
32.68
117.2
65.7
89.62
26.78
173.7
32.0
118.2
59.7
53.1
153.3
103.5
192.5
Standard State Thermodynamic Data
AG (kJ/mol)
formula
NH₂Cl(s)
-296.3
-477.8
NH4NO3(s)
-587.2
NO(g)
-359.6
NOCI(g)
-888.4
NO₂(g)
-415.1
N₂(g)
-394.9
N₂H₂(g)
-379.1
N₂H4(g)
-319.7
N₂H4(1)
-1196.5
N₂H4(1)
-524.5
N₂O(g)
0
N₂O3(g)
117.9
N₂04(g)
0
N₂O4(1)
-373.4
Na(g)
-426.3
Na(s)
-626.6
NaBr(s)
-296.3
NaCl(s)
-443.9
NaClO3(s)
-609.1
NaClO4(s)
102.8
NaF(s)
0
NaHCO3(s)
-559.2
Nal(s)
-1012.1
NaNO₂ (s)
-591.8
NaNO3(s)
-569.6
NaOH(s)
228.9
NaO₂ (s)
-9.5
Na₂CO3(s)
-516.5
Na₂0(s)
-403.0
Na₂O₂ (s)
-535.8
Na₂S(s)
455.5
Na₂SO3(s)
-558.4
Na₂SO4(s)
-16.6
Ne(g)
AH (kJ/mol)
-314.4
-365.6
90.4
51.7
33.9
0
95.4
95.40
50.63
50.6
81.56
86.6
9.7
-19.5
107.5
0
-361.06
-411.2
-365.8
-383.3
-576.6
-947.7
-287.8
-358.7
-467.9
-425.6
-260.2
-1130.9
-414.2
-510.9
-364.8
-1100.8
-1387.1
0
Sº (J/mol-K)
94.6
151.1
210.6
261.7
240.5
191.6
238.5
149.4
220.0
314.7
304.3
209.2
153.7
51.21
86.82
72.13
123.4
142.3
51.1
102.1
98.53
103.8
116.5
64.46
115.9
135.98
75.1
95.0
83.7
145.9
149.6
146.3
AG (kJ/mol)
-202.87
-410.7
86.7
-26.3
51.84
-57.1
24.3
149.4
103.6
-7.2
98.3
97.5
77.0
0
-348.98
-384.1
-402.6
-425.7
-546.3
-851.9
-286.1
-389.6
-502.6
-379.5
-294.8
-1047.7
-436.6
-539.2
-389.8
-1144.3
-1431.7
0
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