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Chemistry: An Introduction to General, Organic, and Biological Chemistry (12th Edition) - Standalone book
12th Edition
ISBN: 9780321908445
Author: Karen C. Timberlake
Publisher: PEARSON
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Question
Chapter 18.2, Problem 18.7QAP
Interpretation Introduction
To determine:
The general type of reaction that occurs during the digestion of carbohydrates.
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Students have asked these similar questions
You have now performed a liquid-liquid extraction protocol in Experiment 4. In doing so, you
manipulated and exploited the acid-base chemistry of one or more of the compounds in your
mixture to facilitate their separation into different phases. The key to understanding how liquid-
liquid extractions work is by knowing which layer a compound is in, and in what protonation state.
The following liquid-liquid extraction is different from the one you performed in Experiment
4, but it uses the same type of logic. Your task is to show how to separate apart Compound
A and Compound B.
. Complete the following flowchart of a liquid-liquid extraction. Handwritten work is
encouraged.
•
Draw by hand (neatly) only the appropriate organic compound(s) in the boxes.
.
Specify the reagent(s)/chemicals (name is fine) and concentration as required in Boxes 4
and 5.
•
Box 7a requires the solvent (name is fine).
•
Box 7b requires one inorganic compound.
• You can neatly complete this assignment by hand and…
b) Elucidate compound D w) mt at 170 nd shows c-1 stretch at 550cm;'
The compound has the ff electronic transitions: 0%o* and no a*
1H NMR Spectrum
(CDCl3, 400 MHz)
3.5
3.0
2.5
2.0
1.5
1.0
0.5 ppm
13C{H} NMR Spectrum
(CDCl3, 100 MHz)
Solvent
80
70
60
50
40
30
20
10
0 ppm
ppm
¹H-13C me-HSQC Spectrum
ppm
(CDCl3, 400 MHz)
5
¹H-¹H COSY Spectrum
(CDCl3, 400 MHz)
0.5
10
3.5
3.0
2.5
2.0
1.5 1.0
10
15
20
20
25
30
30
-35
-1.0
1.5
-2.0
-2.5
3.0
-3.5
0.5
ppm
3.5
3.0
2.5
2.0
1.5
1.0
0.5
ppm
Show work with explanation. don't give Ai generated solution
Chapter 18 Solutions
Chemistry: An Introduction to General, Organic, and Biological Chemistry (12th Edition) - Standalone book
Ch. 18.1 - Prob. 18.1QAPCh. 18.1 - Prob. 18.2QAPCh. 18.1 - Prob. 18.3QAPCh. 18.1 - Prob. 18.4QAPCh. 18.1 - Prob. 18.5QAPCh. 18.1 - Prob. 18.6QAPCh. 18.2 - Prob. 18.7QAPCh. 18.2 - Prob. 18.8QAPCh. 18.2 - Prob. 18.9QAPCh. 18.2 - Prob. 18.10QAP
Ch. 18.2 - Prob. 18.11QAPCh. 18.2 - Prob. 18.12QAPCh. 18.3 - Prob. 18.13QAPCh. 18.3 - Prob. 18.14QAPCh. 18.3 - Prob. 18.15QAPCh. 18.3 - Prob. 18.16QAPCh. 18.4 - Prob. 18.17QAPCh. 18.4 - Prob. 18.18QAPCh. 18.4 - Prob. 18.19QAPCh. 18.4 - Prob. 18.20QAPCh. 18.4 - Prob. 18.21QAPCh. 18.4 - Prob. 18.22QAPCh. 18.4 - Prob. 18.23QAPCh. 18.4 - Prob. 18.24QAPCh. 18.4 - Prob. 18.25QAPCh. 18.4 - Prob. 18.26QAPCh. 18.4 - Prob. 18.27QAPCh. 18.4 - Prob. 18.28QAPCh. 18.4 - Prob. 18.29QAPCh. 18.4 - Prob. 18.30QAPCh. 18.5 - Prob. 18.31QAPCh. 18.5 - Prob. 18.32QAPCh. 18.5 - Prob. 18.33QAPCh. 18.5 - Prob. 18.34QAPCh. 18.5 - Prob. 18.35QAPCh. 18.5 - Prob. 18.36QAPCh. 18.5 - Prob. 18.37QAPCh. 18.5 - Prob. 18.38QAPCh. 18.5 - Prob. 18.39QAPCh. 18.5 - Prob. 18.40QAPCh. 18.6 - Prob. 18.41QAPCh. 18.6 - Prob. 18.42QAPCh. 18.6 - Prob. 18.43QAPCh. 18.6 - Prob. 18.44QAPCh. 18.6 - Prob. 18.45QAPCh. 18.6 - Prob. 18.46QAPCh. 18.6 - Prob. 18.47QAPCh. 18.6 - Prob. 18.48QAPCh. 18.6 - Prob. 18.49QAPCh. 18.6 - Prob. 18.50QAPCh. 18.6 - Prob. 18.51QAPCh. 18.6 - Prob. 18.52QAPCh. 18.6 - Prob. 18.53QAPCh. 18.6 - Prob. 18.54QAPCh. 18.7 - Prob. 18.55QAPCh. 18.7 - Prob. 18.56QAPCh. 18.7 - Prob. 18.57QAPCh. 18.7 - Prob. 18.58QAPCh. 18.7 - Prob. 18.59QAPCh. 18.7 - Prob. 18.60QAPCh. 18.7 - Prob. 18.61QAPCh. 18.7 - Prob. 18.62QAPCh. 18.7 - Prob. 18.63QAPCh. 18.7 - Prob. 18.64QAPCh. 18.8 - 18.65 Draw the condensed structural formula for...Ch. 18.8 - 18.66 Draw the condensed structural formula for...Ch. 18.8 - 18.67 Why does the body convert NH4+ to urea?
Ch. 18.8 - Prob. 18.68QAPCh. 18.8 - Prob. 18.69QAPCh. 18.8 - Prob. 18.70QAPCh. 18 - Prob. 18.71UTCCh. 18 - Prob. 18.72UTCCh. 18 - Prob. 18.73UTCCh. 18 - Prob. 18.74UTCCh. 18 - Prob. 18.75AQAPCh. 18 - Prob. 18.76AQAPCh. 18 - Prob. 18.77AQAPCh. 18 - Prob. 18.78AQAPCh. 18 - Prob. 18.79AQAPCh. 18 - Prob. 18.80AQAPCh. 18 - Prob. 18.81AQAPCh. 18 - Prob. 18.82AQAPCh. 18 - Prob. 18.83AQAPCh. 18 - Prob. 18.84AQAPCh. 18 - Prob. 18.85AQAPCh. 18 - Prob. 18.86AQAPCh. 18 - Prob. 18.87AQAPCh. 18 - Prob. 18.88AQAPCh. 18 - Prob. 18.89AQAPCh. 18 - Prob. 18.90AQAPCh. 18 - Prob. 18.91CQCh. 18 - Prob. 18.92CQCh. 18 - Prob. 18.93CQCh. 18 - Prob. 18.94CQCh. 18 - Prob. 18.95CQCh. 18 - Prob. 18.96CQCh. 18 - Prob. 33CICh. 18 - Prob. 34CICh. 18 - Prob. 35CICh. 18 - Prob. 36CICh. 18 - Prob. 37CICh. 18 - Prob. 38CICh. 18 - Prob. 39CICh. 18 - Thalassemia is an inherited genetic mutation that...Ch. 18 - CI.34 In response to signals from the nervous...
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- Redraw the flowchartarrow_forwardredraw the flowchart with boxes and molecules written in themarrow_forwardPart I. a) Elucidate the structure of compound A using the following information. • mass spectrum: m+ = 102, m/2=57 312=29 • IR spectrum: 1002.5 % TRANSMITTANCE Ngg 50 40 30 20 90 80 70 60 MICRONS 5 8 9 10 12 13 14 15 16 19 1740 cm M 10 0 4000 3600 3200 2800 2400 2000 1800 1600 13 • CNMR 'H -NMR Peak 8 ppm (H) Integration multiplicity a 1.5 (3H) triplet b 1.3 1.5 (3H) triplet C 2.3 1 (2H) quartet d 4.1 1 (2H) quartet & ppm (c) 10 15 28 60 177 (C=0) b) Elucidate the structure of compound B using the following information 13C/DEPT NMR 150.9 MHz IIL 1400 WAVENUMBERS (CM-1) DEPT-90 DEPT-135 85 80 75 70 65 60 55 50 45 40 35 30 25 20 ppm 1200 1000 800 600 400arrow_forward
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