Organic Chemistry Plus Masteringchemistry With Pearson Etext, Global Edition
9th Edition
ISBN: 9781292151229
Author: Wade, LeRoy G.
Publisher: PEARSON
expand_more
expand_more
format_list_bulleted
Concept explainers
Question
Chapter 21, Problem 21.67SP
Interpretation Introduction
Interpretation: The structure of an unknown compound, its consistency with the observed absorption and fragmentation that account for the prominent ion at
Concept introduction: A method by which structure of compound is determined by the interaction between matter and
To determine: The structure of an unknown compound, its consistency with the observed absorption and fragmentation that account for the prominent ion at
Expert Solution & Answer
Want to see the full answer?
Check out a sample textbook solutionStudents have asked these similar questions
Treatment of benzaldehyde (C6H5CHO) with Zn(Hg) in aqueous HCl forms a compound Z that has a molecular ion at 92 in its mass spectrum. Z shows absorptions at 3150–2950, 1605, and 1496 cm-1 in its IR spectrum. Give a possible structure for Z.
Reaction of butanenitrile (CH3CH2CH2CN) with methylmagnesium bromide (CH3MgBr), followed by treatment with aqueous acid, forms compound G. G has a molecular ion in its mass spectrum at m/z = 86 and a base peak at m/z = 43. G exhibits a strong absorption in its IR spectrum at 1721 cm−1 and has the 1H NMR spectrum given below. What is the structure of G? We will learn about the details of this reaction in Chapter 22.
Treatment of isobutene [(CH3)2C = CH2] with (CH3)3CLi forms a carbanion that reacts with CH2=O to form H after water is added to the reaction mixture. H has a molecular ion in its mass spectrum at m/z = 86, and shows fragments at 71 and 68. H exhibits absorptions in its IR spectrum at 3600–3200 and 1651 cm−1, and has the 1H NMR spectrum given below. Whatis the structure of H?
Chapter 21 Solutions
Organic Chemistry Plus Masteringchemistry With Pearson Etext, Global Edition
Ch. 21.2F - Name the following carboxylic acid derivatives,...Ch. 21.4A - Prob. 21.2PCh. 21.4A - Prob. 21.3PCh. 21.4A - Prob. 21.4PCh. 21.5C - Prob. 21.7PCh. 21.6 - When ethyl 4-hydroxybutyrate is heated in the...Ch. 21.6 - Propose a mechanism for the following ring-opening...Ch. 21.6 - Prob. 21.15PCh. 21.7B - Prob. 21.16PCh. 21.7C - Prob. 21.19P
Ch. 21.7C - Prob. 21.20PCh. 21.7C - Prob. 21.21PCh. 21.7D - Prob. 21.22PCh. 21.7D - The mechanism for acidic hydrolysis of a nitrile...Ch. 21.8A - Prob. 21.24PCh. 21.8C - Prob. 21.25PCh. 21.9 - Prob. 21.26PCh. 21.9 - Prob. 21.27PCh. 21.9 - Prob. 21.28PCh. 21.10 - Draw a mechanism for the acylation of anisole by...Ch. 21.10 - Prob. 21.30PCh. 21.11 - Prob. 21.31PCh. 21.11 - Prob. 21.32PCh. 21.12 - Problem 21-33 Propose a mechanism for the...Ch. 21.12 - Suggest the most appropriate reagent for each...Ch. 21.12 - Show how you would synthesize each compound,...Ch. 21.13 - Prob. 21.36PCh. 21.13 - Prob. 21.37PCh. 21.14 - Prob. 21.38PCh. 21.14 - Prob. 21.39PCh. 21.16 - Prob. 21.40PCh. 21.16 - Prob. 21.41PCh. 21 - Prob. 21.42SPCh. 21 - Give appropriate names for the following...Ch. 21 - Predict the major products formed when benzoyl...Ch. 21 - Predict the products of the following reactions....Ch. 21 - Prob. 21.46SPCh. 21 - Prob. 21.47SPCh. 21 - Prob. 21.48SPCh. 21 - Propose mechanisms for the following reactions.Ch. 21 - Prob. 21.51SPCh. 21 - An ether extraction of nutmeg gives large...Ch. 21 - Prob. 21.53SPCh. 21 - Show how you would accomplish the following...Ch. 21 - Prob. 21.55SPCh. 21 - Prob. 21.56SPCh. 21 - Prob. 21.57SPCh. 21 - Prob. 21.58SPCh. 21 - Prob. 21.59SPCh. 21 - Explain this curious result. What does this...Ch. 21 - Prob. 21.61SPCh. 21 - Prob. 21.62SPCh. 21 - Prob. 21.63SPCh. 21 - A chemist was called to an abandoned aspirin...Ch. 21 - Prob. 21.67SPCh. 21 - The IR spectrum, 13ONTVTR spectrum, and 1HNMR...Ch. 21 - Prob. 21.69SPCh. 21 - Prob. 21.70SPCh. 21 - Prob. 21.71SP
Knowledge Booster
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.Similar questions
- compound with the molecular formula C7H9N exhibits IR bands at 3450 cm-1 (medium, doublet), and 855 cm-1 (strong) and shows the following major mass spectral signals (m/z): 106 (base); 107 (M+, about 70% of base), 91 (40% of base), and 77 (about 20% of base). Deduce a reasonable structure from this data.arrow_forwardReaction of pentanoyl chloride (CH3CH2CH2CH2COCl) with lithium dimethyl cuprate [LiCu(CH3)2] forms a compound J that has a molecular ion in its mass spectrum at 100, as well as fragments at m/z = 85, 57, and 43 (base). The IR spectrum of J has strong peaks at 2962 and 1718 cm-1. Propose a structure for J.arrow_forwardReaction of butanenitrile (CH3CH2CH2CN) with methylmagnesium bromide (CH3MgBr), followed by treatment with aqueous acid, forms compound G. G has a molecular ion in its mass spectrum at m/z = 86 and a base peak at m/z = 43. G exhibits a strong absorption in its IR spectrum at 1721 cm−1 and has the 1H NMR spectrum given below. What is the structure of G?arrow_forward
- Reaction of BrCH2CH2CH2CH2NH2 with NaH forms compound W, which gives the IR and mass spectra shown below. Propose a structure for W.arrow_forwardTreatment of 2-methylpropanenitrile [(CH3)2CHCN] with CH3CH2CH2MgBr, followed by aqueous acid, affords compound V, which has molecular formula C7H14O. V has a strong absorption in its IR spectrum at 1713 cm−1, and gives the following 1H NMR data: 0.91 (triplet, 3 H), 1.09 (doublet, 6 H), 1.6 (multiplet, 2 H), 2.43 (triplet, 2 H), and 2.60 (septet, 1 H) ppm. What is the structure of V? We will learn about this reaction in Chapter 20.arrow_forwardReaction of 2-methylpropanoic acid [(CH3)2CHCO2H] with SOCl2 followed by 2-methylpropan-1-ol forms X. X has a molecular ion at 144 and IR absorptions at 2965, 2940, and 1739 cm-1. Propose a structure for X.arrow_forward
- A compound gives the following IR spectrum. Upon reaction with sodium borohydride followed by acidification, it forms the product with the 1H NMRspectrum shown below. Identify the starting material and the product.arrow_forwardA student performed a reaction using 2-methoxyethanol as solvent under acid catalyst. When the solvent was redistilled, a higher boiling fraction (bp=162 °C) was also recovered. The mass spectrum showed a molecular ion at 134 m/z. The H nmr spectrum showed a triplet integrating for 2 at 3.55 ppm, a second triplet integrating for 2 at 3.65 ppm, and a singlet integrating for 3 at 3.4 ppm. Give the structure of the newly formed material that is consistent with this data.arrow_forwardA hydrocarbon, compound B, has molecular formula C6H6, and gave an NMR spectrum with two signals: delta 6.55 pm and delta 3.84 pm with peak ratio of 2:1. When warmed in pyridine for three hr, compound B quantitatively converts to benzene. Mild hydrogenation of B yielded another compound C with mass spectrum of m/z 82. Infrared spectrum showed no double bonds; NMR spectrum showed one broad peak at delta 2.34 ppm. With this information, address the following questions. a) How many rings are in compound C? b) How many rings are probably in B? How many double bonds are in B? c) Can you suggest a structure for compounds B and C? d) In the NMR spectrum of B, the up-field signal was a quintet, and the down field signal was a triplet. How must you account for these splitting patterns?arrow_forward
arrow_back_ios
arrow_forward_ios
Recommended textbooks for you
- Macroscale and Microscale Organic ExperimentsChemistryISBN:9781305577190Author:Kenneth L. Williamson, Katherine M. MastersPublisher:Brooks Cole
Macroscale and Microscale Organic Experiments
Chemistry
ISBN:9781305577190
Author:Kenneth L. Williamson, Katherine M. Masters
Publisher:Brooks Cole
NMR Spectroscopy; Author: Professor Dave Explains;https://www.youtube.com/watch?v=SBir5wUS3Bo;License: Standard YouTube License, CC-BY