Use data from Appendix D to determine (a) Δ t H ° , Δ t S ° , and Δ t G ° at 298 K and (b) K at 875 K for the water gas shift reaction, used commercially to produce H 2 ( g ) :CO ( g ) +H 2 O ( g ) ⇌ CO 2 ( g ) +H 2 ( g ) . [Hint: Assume that Δ t H ° and Δ t S ° are essentially unchanged in this temperature interval.]
Use data from Appendix D to determine (a) Δ t H ° , Δ t S ° , and Δ t G ° at 298 K and (b) K at 875 K for the water gas shift reaction, used commercially to produce H 2 ( g ) :CO ( g ) +H 2 O ( g ) ⇌ CO 2 ( g ) +H 2 ( g ) . [Hint: Assume that Δ t H ° and Δ t S ° are essentially unchanged in this temperature interval.]
Solution Summary: The author explains the Gibb's equation of thermodynamic purposed a relation between s,
Use data from Appendix D to determine (a)
Δ
t
H
°
,
Δ
t
S
°
, and
Δ
t
G
°
at 298 K and (b) K at 875 K for the water gas shift reaction, used commercially to produce
H
2
(
g
)
:CO
(
g
)
+H
2
O
(
g
)
⇌
CO
2
(
g
)
+H
2
(
g
)
.
[Hint: Assume that
Δ
t
H
°
and
Δ
t
S
°
are essentially unchanged in this temperature interval.]
•
Part II.
a) Elucidate The structure of compound c w/ molecular formula C10 11202 and the following data below:
• IR spectra
% TRANSMITTANCE
1002.5
90
80
70
60
50
40
30
20
10
0
4000
3600
3200
2800
2400
2000
1800
1600
• Information from 'HAMR
MICRONS
8 9 10
11
14 15 16
19
25
1400
WAVENUMBERS (CM-1)
1200
1000
800
600
400
peak
8 ppm
Integration
multiplicity
a
2.1
1.5 (3H)
Singlet
b
3.6
1 (2H)
singlet
с
3.8
1.5 (3H)
Singlet
d
6.8
1(2H)
doublet
7.1
1(2H)
doublet
Information from 13C-nmR
Normal carbon
29ppm
Dept 135
Dept -90
+
NO peak
NO peak
50 ppm
55 ppm
+
NO peak
114 ppm
t
126 ppm
No peak
NO peak
130 ppm
t
+
159 ppm
No peak
NO peak
207 ppm
по реак
NO peak
Could you redraw these and also explain how to solve them for me pleas
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