Water gas is a 1:1 mixture of carbon monoxide and hydrogen gas and is called water gas because it is formed from steam and hot carbon in the following reaction: H 2 O ( g ) + C ( s ) ⇌ H 2 ( g ) + CO ( g ) . Methanol, a liquid fuel that could possibly replace gasoline, can be prepared from water gas and hydrogen at high temperature and pressure in the presence of a suitable catalyst. (a) Write the expression for the equilibrium constant ( K c ) for the reversible reaction 2 H 2 ( g ) + CO ( g ) ⇌ CH 3 OH ( g ) Δ H = − 90.2 kJ (b) What will happen to the concentrations of H 2 , CO, and CH 3 OH at equilibrium if more H 2 is added? (c) What will happen to the concentrations of H 2 , CO, and CH 3 OH at equilibrium if CO is removed? (d) What will happen to the concentrations of H 2 , CO, and CH 3 OH at equilibrium if CH 3 OH is added? (e) What will happen to the concentrations of H 2 , CO, and CH 3 OH at equilibrium if the temperature of the system is increased? (f) What will happen to the concentrations of H 2 , CO, and CH 3 OH at equilibrium if more catalyst is added?
Water gas is a 1:1 mixture of carbon monoxide and hydrogen gas and is called water gas because it is formed from steam and hot carbon in the following reaction: H 2 O ( g ) + C ( s ) ⇌ H 2 ( g ) + CO ( g ) . Methanol, a liquid fuel that could possibly replace gasoline, can be prepared from water gas and hydrogen at high temperature and pressure in the presence of a suitable catalyst. (a) Write the expression for the equilibrium constant ( K c ) for the reversible reaction 2 H 2 ( g ) + CO ( g ) ⇌ CH 3 OH ( g ) Δ H = − 90.2 kJ (b) What will happen to the concentrations of H 2 , CO, and CH 3 OH at equilibrium if more H 2 is added? (c) What will happen to the concentrations of H 2 , CO, and CH 3 OH at equilibrium if CO is removed? (d) What will happen to the concentrations of H 2 , CO, and CH 3 OH at equilibrium if CH 3 OH is added? (e) What will happen to the concentrations of H 2 , CO, and CH 3 OH at equilibrium if the temperature of the system is increased? (f) What will happen to the concentrations of H 2 , CO, and CH 3 OH at equilibrium if more catalyst is added?
Water gas is a 1:1 mixture of carbon monoxide and hydrogen gas and is called water gas because it is formed from steam and hot carbon in the following reaction:
H
2
O
(
g
)
+
C
(
s
)
⇌
H
2
(
g
)
+
CO
(
g
)
. Methanol, a liquid fuel that could possibly replace gasoline, can be prepared from water gas and hydrogen at high temperature and pressure in the presence of a suitable catalyst.
(a) Write the expression for the equilibrium constant (Kc) for the reversible reaction
2
H
2
(
g
)
+
CO
(
g
)
⇌
CH
3
OH
(
g
)
Δ
H
=
−
90.2
kJ
(b) What will happen to the concentrations of H2, CO, and CH3OH at equilibrium if more H2 is added?
(c) What will happen to the concentrations of H2, CO, and CH3OH at equilibrium if CO is removed?
(d) What will happen to the concentrations of H2, CO, and CH3OH at equilibrium if CH3OH is added?
(e) What will happen to the concentrations of H2, CO, and CH3OH at equilibrium if the temperature of the system is increased?
(f) What will happen to the concentrations of H2, CO, and CH3OH at equilibrium if more catalyst is added?
2H2S(g)+3O2(g)→2SO2(g)+2H2O(g)
A 1.2mol sample of H2S(g) is combined with excess O2(g), and the reaction goes to completion.
Question
Which of the following predicts the theoretical yield of SO2(g) from the reaction?
Responses
1.2 g
Answer A: 1.2 grams
A
41 g
Answer B: 41 grams
B
77 g
Answer C: 77 grams
C
154 g
Answer D: 154 grams
D
Part VII. Below are the 'HNMR, 13 C-NMR, COSY 2D- NMR, and HSQC 2D-NMR (similar with HETCOR but axes are reversed) spectra of an
organic compound with molecular formula C6H1003 - Assign chemical shift values to the H and c atoms of the
compound. Find the structure. Show complete solutions.
Predicted 1H NMR Spectrum
4.7 4.6 4.5 4.4 4.3 4.2 4.1 4.0 3.9 3.8 3.7 3.6 3.5 3.4 3.3 3.2 3.1 3.0 2.9 2.8 2.7 2.6 2.5 2.4 2.3 2.2 2.1 2.0 1.9 1.8 1.7 1.6 1.5 1.4 1.3 1.2 1.1
f1 (ppm)
Predicted 13C NMR Spectrum
100
f1 (ppm)
30
220 210 200 190 180
170
160 150 140 130 120
110
90
80
70
-26
60
50
40
46
30
20
115
10
1.0 0.9 0.8
0
-10
Campbell Essential Biology with Physiology (5th Edition)
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell