Organic Chemistry
9th Edition
ISBN: 9781305080485
Author: John E. McMurry
Publisher: Cengage Learning
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Chapter 6.SE, Problem 24EDRM
The addition of water to ethylene to yield ethanol has the following
(a) Is the reaction exothermic or endothermic?
(b) Is the reaction favorable (spontaneous) or unfavorable (nonspontaneous) at room temperature (298 k)?
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Carbon–carbon bond dissociation enthalpies have been measured for many alkanes. Identify the alkane in each of the following pairs that has the lower carbon–carbon bond-dissociation enthalpy, and explain the reason for your choice. (a) Ethane or propane (b) Propane or 2-methylpropane (c) 2-Methylpropane or 2,2-dimethylpropane (d) Cyclobutane or cyclopentane
Calculate the enthalpy of benzene from its enthalpy of combustion and the enthalpy of combustion of cyclohexane
Considering each of the following values and neglecting entropy, tell whether the starting material or product is favored at equilibrium: (a) ΔH° = 80 kJ/mol; (b) ΔH° = −40 kJ/mol.
Chapter 6 Solutions
Organic Chemistry
Ch. 6.1 - Prob. 1PCh. 6.3 - Prob. 2PCh. 6.3 - Using curved fishhook arrows, propose a mechanism...Ch. 6.4 - Prob. 4PCh. 6.4 - An electrostatic potential map of boron...Ch. 6.5 - What product would you expect from reaction of...Ch. 6.5 - Reaction of HBr with 2-methylpropene yields...Ch. 6.6 - Prob. 8PCh. 6.6 - Predict the products of the following polar...Ch. 6.7 - Which reaction is more energetically favored, one...
Ch. 6.7 - Prob. 11PCh. 6.9 - Which reaction is faster, one with ∆G‡ = +45...Ch. 6.10 - Prob. 13PCh. 6.SE - Prob. 14VCCh. 6.SE - Prob. 15VCCh. 6.SE - Prob. 16VCCh. 6.SE - Look at the following energy diagram: (a) Is...Ch. 6.SE - Look at the following energy diagram for an...Ch. 6.SE - What is the difference between a transition state...Ch. 6.SE - Prob. 20EDRMCh. 6.SE - Prob. 21EDRMCh. 6.SE - Draw an energy diagram for a two-step exergonic...Ch. 6.SE - Draw an energy diagram for a reaction with keq =...Ch. 6.SE - The addition of water to ethylene to yield ethanol...Ch. 6.SE - When isopropylidenecyclohexane is treated with...Ch. 6.SE - Prob. 26EDRMCh. 6.SE - Draw the electron-pushing mechanism for each...Ch. 6.SE - Draw the complete mechanism for each polar...Ch. 6.SE - Prob. 29EDRMCh. 6.SE - Identify the functional groups in the following...Ch. 6.SE - Identify the following reactions as additions,...Ch. 6.SE - Identify the likely electrophilic and nucleophilic...Ch. 6.SE - For each reaction below identify the electrophile...Ch. 6.SE - Prob. 34APCh. 6.SE - Follow the flow of electrons indicated by the...Ch. 6.SE - Prob. 36APCh. 6.SE - Prob. 37APCh. 6.SE - Despite the limitations of radical chlorination of...Ch. 6.SE - Prob. 39APCh. 6.SE - Answer question 6-39 taking all stereoisomers into...Ch. 6.SE - Prob. 41APCh. 6.SE - Prob. 42APCh. 6.SE - Prob. 43APCh. 6.SE - The reaction of hydroxide ion with chloromethane...Ch. 6.SE - Prob. 45APCh. 6.SE - Ammonia reacts with acetyl chloride (CH3COCl) to...Ch. 6.SE - The naturally occurring molecule α-terpineol is...Ch. 6.SE - Prob. 48APCh. 6.SE - Prob. 49APCh. 6.SE - Draw the structures of the two carbocation...
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- 21.) Calculate the enthalpy of hydrogenation of benzene to cyclohexane from the following reactions A,H (kJ/mol) C6H6 (1) + 15/2 02 (g) → 6 CO2 (g) + 3 H20 (1) C6H12 (1) + 9 02 (g) → 6 CO2 (g) + 6 H20 (1) H2 (g) + ½ 02 (g) → H2O (1) -3268 -3920 -285.83 a.) -205 kJ/mol b.) -1507 kJ/mol c.) -938 kJ/mol d.) -366 kJ/molarrow_forward) The reaction of hydroxide ion with chloromethane to yield methanol and chloride ion is an example of a general reaction type called a nucleophilic substitution reaction: HO¯ + CH;CI = CH;OH + CI¯ The value of AHº for the reaction is -75 kJ/mol, and the value of ASº is +54 J/ (K- mol). What is the value of AG° (in kJ/mol) at 298 K? Is the reaction exothermic or endothermic? Is it exergonic or endergonic?arrow_forwardExplain why the bond dissociation enthalpy of a C-H bond in benzene is significantly greater than that in alkanesarrow_forward
- TRUE OR FALSE (a) Both ethylene and acetylene are planar molecules. (b) An alkene in which each carbon of the double bond has two different groups bonded to it will show cis-trans isomerism. (c) Cis-trans isomers have the same molecular formula but a different connectivity of their atoms. (d) Cis-2-butene and trans -2-butene can be interconverted by rotation about the carbon–carbon double bond. (e) Cis-trans isomerism is possible only among appropriately substituted alkenes. (f) Both 2-hexene and 3-hexene can exist as pairs of cis-trans isomers. (g) Cyclohexene can exist as a pair of cis-trans isomers. (h) 1-Chloropropene can exist as a pair of cis-trans isomers.arrow_forward(a) Discuss the feature of ionic and covalent bond. (b) Explain bonding of methanol in terms of hybridization.arrow_forwardCompounds B and C are hydrocarbons with the structural formulae as shown below. CH, „CH, в (a) Name compounds B and C according to the IUPAC nomenclature. (b) Both B and C can undergo oxidation reaction with the same oxidizing agent. Write chemical equations involved and explain the differences between these two reactions. (c) Name one reaction that converts B to methylcyclohexane.arrow_forward
- (a) Explain bonding of methanol in terms of hybridization.arrow_forwardArrange the following compounds in increasing order of their property as indicated :(i) CH3COCH3, C6H5COCH3, CH3CHO(reactivity towards nucleophilic addition reaction)(ii) Cl—CH2—COOH, F—CH2—COOH, CH3—COOH (acidic character)arrow_forwardWrite a balanced chemical equation based on the following description: propanol, C₃H₇OH(l) burns in airarrow_forward
- Alcohols can be produced by the hydration of:(a) Alkenes(b) alkynes(c) alkanes(d) acidsarrow_forwardWrite the balanced chemical equation for the complete combustion of ethane. Reactants Products C2H6 (g) + → Formulate (skeletal formula) the main products for the oxidation and dehydration reactions of the following compound: Reactant Oxidation product Dehydration products | OH CH3―CH2―CH―CH2―CH3arrow_forwardCH3COOH + 2H2 = C2H5OH + H2O %3D Acetate Ethanol Acetate may be hydrogenated to ethanol in industrial reaction systems using several catalysts: Select the most effective catalyst for this reaction system if the free energy of the reaction is -34 kJ/mol; Catalist effective at the temperature range 37-45°C, O Catalist effective at the temperature range 40-55°C, O Catalist effective at the temperature range 60-72°C,arrow_forward
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