ORGANIC CHEMISTRY
5th Edition
ISBN: 9781259977596
Author: SMITH
Publisher: MCG
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Chapter 30, Problem 30.32P
Interpretation Introduction
Interpretation: The structure of the
Concept introduction: An
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Draw the structure of the polymer that results from anionic polymerization of p-trichloromethylstyrene (CCl,CgH,CH=CH2) using
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Draw the structure of the polymer formed from ring-opening metathesis polymerization (ROMP) of each monomer.
Chapter 30 Solutions
ORGANIC CHEMISTRY
Ch. 30 - Prob. 30.1PCh. 30 - Prob. 30.2PCh. 30 - Prob. 30.3PCh. 30 - Draw the mechanism for the radical polymerization...Ch. 30 - Prob. 30.5PCh. 30 - Prob. 30.6PCh. 30 - Prob. 30.7PCh. 30 - Prob. 30.8PCh. 30 - Prob. 30.9PCh. 30 - Prob. 30.10P
Ch. 30 - Prob. 30.11PCh. 30 - Problem 30.12
What polymer is formed by anionic...Ch. 30 - Prob. 30.13PCh. 30 - Prob. 30.14PCh. 30 - Problem 30.15
What polyamide is formed from each...Ch. 30 - Prob. 30.16PCh. 30 - Prob. 30.17PCh. 30 - Prob. 30.18PCh. 30 - Prob. 30.19PCh. 30 - Prob. 30.20PCh. 30 - Prob. 30.21PCh. 30 - Prob. 30.22PCh. 30 - Prob. 30.23PCh. 30 - Prob. 30.24PCh. 30 - Prob. 30.25PCh. 30 - 30.26 Draw the structure of the polymer formed by...Ch. 30 - Prob. 30.27PCh. 30 - Prob. 30.28PCh. 30 - Prob. 30.29PCh. 30 - 30.30 Draw each polymer in Problem 30.29 using the...Ch. 30 - Prob. 30.31PCh. 30 - Prob. 30.32PCh. 30 - Prob. 30.33PCh. 30 - Prob. 30.34PCh. 30 - Prob. 30.35PCh. 30 - Prob. 30.36PCh. 30 - Prob. 30.37PCh. 30 - Prob. 30.38PCh. 30 - 30.39 Draw a stepwise mechanism for the...Ch. 30 - 30.40 Cationic polymerization of 3-phenylpropene ...Ch. 30 - Prob. 30.41PCh. 30 - Prob. 30.42PCh. 30 - 30.43 Although styrene undergoes both cationic and...Ch. 30 - 30.44 Rank the following compounds in order of...Ch. 30 - Prob. 30.45PCh. 30 - Prob. 30.46PCh. 30 - 30.47 Draw a stepwise mechanism for the following...Ch. 30 - 30.48 Draw a stepwise mechanism for the reaction...Ch. 30 - 30.49 Draw the products of each reaction.
a. e....Ch. 30 - Prob. 30.50PCh. 30 - Prob. 30.51PCh. 30 - 30.52 (a) Explain why poly (vinyl alcohol) cannot...Ch. 30 - 30.53 Devise a synthesis of terephthalic acid and...Ch. 30 - Prob. 30.54PCh. 30 - Prob. 30.55PCh. 30 - 30.56 Compound A is a novel poly (ester amide)...Ch. 30 - 30.57 Researchers at Rutgers University have...Ch. 30 - 30.58 Melmac, a thermosetting polymer formed from...Ch. 30 - 30.59 Although chain branching in radical...Ch. 30 - Prob. 30.60P
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- Draw a structural formula of the polymer resulting from base-catalyzed polymerization of each compound. Would you expect the polymers to be optically active? (S)-(+)-lactide is the dilactone formed from two molecules of (S)-(+)-lactic acid.arrow_forwardKodel is a condensation polymer made from terephthalic acid and 1,4-cyclohexanedimethanol. Write the structure of the resulting polymer.arrow_forwardIf a peroxide is added to styrene, the polymer known as polystyrene is formed. If a small amount of 1,4-divinylbenzene is added to the reaction mixture, a stronger and more rigid polymer is formed. Draw a short section of this more rigid polymer.arrow_forward
- Explain the effects the addition of glycerol (a triol) will have on the molecular architecture of the following polymerization reactions: a) Condensation polymerization of terephthalic acid + ethylene glycol b) Condensation polymerization of 6-hydroxyhexanoic acidarrow_forwardMaleic anhydride reacts with ethylene glycol to produce an alkyd resin. Draw the structure of the condensation polymer produced.arrow_forwardDraw a representative segment with four repeating units of the polymer prepared from N-vinyl pyrrolidone. H C=CH2 Narrow_forward
- Nomex, another aromatic polyamide (compare aramid), is prepared by polymerization of 1,3-benzenediamine and the diacid chloride of 1,3-benzenedicarboxylic acid. The physical properties of the polymer make it suitable for high-strength, high-temperature applications such as parachute cords and jet aircraft tires. Draw a structural formula for the repeating unit of Nomex. H,N. NH2 CI polymerization Nomex 1,3-Benzenediamine 1,3-Benzene- dicarbonyl chloridearrow_forwardRank the following groups of monomers from most able to least able to undergo cationic polymerization:arrow_forward(a) Hard contact lenses, which first became popular in the 1960s, were made by polymerizing methyl methacrylate [CH2 = C(CH3)CO2CH3] to form poly(methyl methacrylate) (PMMA). Draw the structure of PMMA. (b) More comfortable softer contact lenses introduced in the 1970s were made by polymerizing hydroxyethyl methacrylate [CH2 = C(CH3)CO2CH2CH2OH] to form poly(hydroxyethyl methacrylate) (poly-HEMA). Draw the structure of poly-HEMA. Since neither polymer allows oxygen from the air to pass through to the retina, newer contact lenses that are both comfortable and oxygen-permeable have now been developed.arrow_forward
- (a) Hard contact lenses, which first became popular in the 1960s, were made by polymerizing methyl methacrylate [CH2=C(CH3)CO2CH3] to form poly(methyl methacrylate) (PMMA). Draw the structure of PMMA. (b) More-comfortable softer contact lenses introduced in the 1970s were made by polymerizing hydroxyethyl methacrylate [CH2=C(CH3)CO2CH2CH2OH] to form poly(hydroxyethyl methacrylate) (poly-HEMA). Draw the structure of poly-HEMA. Because neither polymer allows oxygen from the air to pass through to the retina, newer contact lenses that are both comfortable and oxygen-permeable have now been developed.arrow_forwardDraw the structure for the polymer produced from the monomer vinylidene chloride (CH2=CCl2).arrow_forwardA thermosetting material called polyester is made when a carboxylic acid reacts with dialcohol. Write the condensation polymerization with byproduct. The monomers of carboxylic acid and dialcohol are respectively: HO-C -C-OH HO-CH,CH,-OHarrow_forward
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