For the reaction 2 C 2 H 6 ( g ) + 7 O 2 ( g ) → 4 CO 2 ( g ) + 6 H 2 O ( g ) (a) Predict the enthalpy of reaction from the average bond enthalpies in Table 9.4. (b) Calculate the enthalpy of reaction from the standard enthalpies of formation (see Appendix 2) of the reactant and product molecules, and compare the result with your answer for part (a).
For the reaction 2 C 2 H 6 ( g ) + 7 O 2 ( g ) → 4 CO 2 ( g ) + 6 H 2 O ( g ) (a) Predict the enthalpy of reaction from the average bond enthalpies in Table 9.4. (b) Calculate the enthalpy of reaction from the standard enthalpies of formation (see Appendix 2) of the reactant and product molecules, and compare the result with your answer for part (a).
2
C
2
H
6
(
g
)
+
7
O
2
(
g
)
→
4
CO
2
(
g
)
+
6
H
2
O
(
g
)
(a) Predict the enthalpy of reaction from the average bond enthalpies in Table 9.4.
(b) Calculate the enthalpy of reaction from the standard enthalpies of formation (see Appendix 2) of the reactant and product molecules, and compare the result with your answer for part (a).
(a)
Expert Solution
Interpretation Introduction
Interpretation:
Enthalpy of the reaction using average bond enthalpies of reactants and products has to be calculated.
Concept Introduction:
ΔH° refers to change in enthalpy. Change in enthalpy in a reaction and bond energy (BE) are related as,
ΔH°=ΣBE(reactants)-ΣBE(products)
Answer to Problem 9.76QP
Enthalpy of the reaction using bond enthalpies of reactants and products is −2759kJ/mol.
Explanation of Solution
Calculation ofΔH°
The given reaction is,
2 C2H6(g)+7O2(g)→ 4CO2(g)+6H2O(g)
Reactants O2 has one O=O bond, and two moles of ethane has two C−C and twelve C−H bonds.
Products are four moles of CO2 and it has totally eight C=O bonds and six moles of water has twelve O−H bonds.
ΔH° for the reaction is calculated using average bond enthalpy values given in text book.
19.78 Write the products of the following sequences of reactions. Refer to your reaction road-
maps to see how the combined reactions allow you to "navigate" between the different
functional groups. Note that you will need your old Chapters 6-11 and Chapters 15-18
roadmaps along with your new Chapter 19 roadmap for these.
(a)
1. BHS
2. H₂O₂
3. H₂CrO4
4. SOCI₂
(b)
1. Cl₂/hv
2. KOLBU
3. H₂O, catalytic H₂SO4
4. H₂CrO4
Reaction
Roadmap
An alkene 5. EtOH
6.0.5 Equiv. NaOEt/EtOH
7. Mild H₂O
An alkane
1.0
2. (CH3)₂S
3. H₂CrO
(d)
(c)
4. Excess EtOH, catalytic H₂SO
OH
4. Mild H₂O*
5.0.5 Equiv. NaOEt/EtOH
An alkene 6. Mild H₂O*
A carboxylic
acid
7. Mild H₂O*
1. SOC₁₂
2. EtOH
3.0.5 Equiv. NaOEt/E:OH
5.1.0 Equiv. NaOEt
6.
NH₂
(e)
1. 0.5 Equiv. NaOEt/EtOH
2. Mild H₂O*
Br
(f)
i
H
An aldehyde
1. Catalytic NaOE/EtOH
2. H₂O*, heat
3. (CH,CH₂)₂Culi
4. Mild H₂O*
5.1.0 Equiv. LDA
Br
An ester
4. NaOH, H₂O
5. Mild H₂O*
6. Heat
7.
MgBr
8. Mild H₂O*
7. Mild H₂O+
Li+ is a hard acid. With this in mind, which if the following compounds should be most soluble in water?
Group of answer choices
LiBr
LiI
LiF
LiCl
Q4: Write organic product(s) of the following reactions and show the curved-arrow mechanism
of the reactions.
Br
MeOH
OSO2CH3
MeOH
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