Water gas is the name for the mixture of CO and H 2 prepared by reaction of steam with carbon at 1000°C: C ( s ) +H 2 O ( g ) → CO ( g ) +H 2 ( g ) "Water gas" The hydrogen is then purified and used as a starting material for preparing ammonia. Use the following information to calculate Δ H ° in kilojoules for the water-gas reaction: C ( s ) + O 2 ( g ) → C O 2 ( g ) Δ H ° = − 3 93 .5 kJ 2 C O ( g ) + O 2 ( g ) → 2 C O 2 ( g ) Δ H ° = − 566. 0 kJ 2 H 2 ( g ) + O 2 ( g ) → 2 H 2 O ( g ) Δ H ° = − 48 3 .6 kJ
Water gas is the name for the mixture of CO and H 2 prepared by reaction of steam with carbon at 1000°C: C ( s ) +H 2 O ( g ) → CO ( g ) +H 2 ( g ) "Water gas" The hydrogen is then purified and used as a starting material for preparing ammonia. Use the following information to calculate Δ H ° in kilojoules for the water-gas reaction: C ( s ) + O 2 ( g ) → C O 2 ( g ) Δ H ° = − 3 93 .5 kJ 2 C O ( g ) + O 2 ( g ) → 2 C O 2 ( g ) Δ H ° = − 566. 0 kJ 2 H 2 ( g ) + O 2 ( g ) → 2 H 2 O ( g ) Δ H ° = − 48 3 .6 kJ
Solution Summary: The author explains how the value of DeltaHo in kJ for a water-gas reaction can be determined by adding the reactions of steps of the mechanism.
Water gas is the name for the mixture of CO and
H
2
prepared by reaction of steam with carbon at
1000°C:
C
(
s
)
+H
2
O
(
g
)
→
CO
(
g
)
+H
2
(
g
)
"Water gas" The hydrogen is then purified and used as a starting material for preparing ammonia. Use the following information to calculate
Δ
H
°
in kilojoules for the water-gas reaction:
C
(
s
)
+
O
2
(
g
)
→
C
O
2
(
g
)
Δ
H
°
=
−
3
93
.5 kJ
2
C
O
(
g
)
+
O
2
(
g
)
→
2
C
O
2
(
g
)
Δ
H
°
=
−
566.
0 kJ
2
H
2
(
g
)
+
O
2
(
g
)
→
2
H
2
O
(
g
)
Δ
H
°
=
−
48
3
.6 kJ
Use the systematic treatment of equilibrium to determine the pH and the concentrations of all species in a saturated aqueous solution of SrF2. Do not include activity coefficients. The solubility of SrF2 is governed by
Ksp for the salt, hydrolysis of F- and of Sr2+, and by ion pairing between Sr2 + and F-.
PK(SrF2) = 8.58, PK(HF) = 3.17, pkw = 14.00, pk for the formation of (SrOH+) = 13.18,
pk for the formation of (SrF+) = 0.14
Show all your work and upload your answers here.
1 - Write the pertinent reactions.
2 - Write mass balance and charge balance equations.
3 - Write the equilibrium constant expressions.
4 - Count the equations and unknowns.
5- If the problem is solvable make suitable approximations and find the concentrations and the pH.
Please correct answer and don't use hand rating
How might you prepare each of the following using a nucleophilic substitution reaction at some
step?
(a)
(b)
(c)
(d)
CH3
CH3C CCHCH3
CH3
CH3 0 CCH3
☐
CH3
CH3CH2CH2CH2CN
CH3CH2CH2NH2
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Calorimetry Concept, Examples and Thermochemistry | How to Pass Chemistry; Author: Melissa Maribel;https://www.youtube.com/watch?v=nSh29lUGj00;License: Standard YouTube License, CC-BY