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(a)
Interpretation:
The structure of quinine in
Concept introduction:
Aliphatic
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Answer to Problem 26.33AP
The structure of quinine in
Explanation of Solution
When quinine reacts with
Figure 1
The structure of quinine in
(b)
Interpretation:
The structure of nicotine in
Concept introduction:
Aliphatic amines are more basic than aromatic amines. In aliphatic amines, the nitrogen atom is attached to a methyl group which is electron donating group; therefore, it increases the electron density on nitrogen by
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Answer to Problem 26.33AP
The structure of nicotine in
Explanation of Solution
When nicotine reacts with
Figure 2
The structure of nicotine in
(c)
Interpretation:
The structure of tryptamine in
Concept introduction:
Aliphatic amines are more basic than aromatic amines. In aliphatic amines, the nitrogen atom is attached to a methyl group which is electron donating group; therefore, it increases the electron density on nitrogen by
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Answer to Problem 26.33AP
The structure of tryptamine in
Explanation of Solution
The aliphatic amine present on the side chain of tryptamine gets protonated in
Figure 3
The structure of tryptamine in
(d)
Interpretation:
The structure of
Concept introduction:
Aliphatic amines are more basic than aromatic amines. In aliphatic amines, the nitrogen atom is attached to a methyl group which is electron donating group; therefore, it increases the electron density on nitrogen by
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Answer to Problem 26.33AP
The structure of
Explanation of Solution
In the structure of
Figure 4
The structure of
(e)
Interpretation:
The structure of
Concept introduction:
Aliphatic amines are more basic than aromatic amines. In aliphatic amines, the nitrogen atom is attached to a methyl group which is electron donating group; therefore, it increases the electron density on nitrogen by
![Check Mark](/static/check-mark.png)
Answer to Problem 26.33AP
The structure of
Explanation of Solution
In
Figure 5
The structure of
(f)
Interpretation:
The structure of
Concept introduction:
Aliphatic amines are more basic than aromatic amines. In aliphatic amines, the nitrogen atom is attached to a methyl group which is electron donating group; therefore, it increases the electron density on nitrogen by
![Check Mark](/static/check-mark.png)
Answer to Problem 26.33AP
The structure of
Explanation of Solution
In
The formation of conjugated acid of
Figure 6
The structure of
(g)
Interpretation:
The structure of imitanib in
Concept introduction:
Aliphatic amines are more basic than aromatic amines. In aliphatic amines, the nitrogen atom is attached to a methyl group which is electron donating group; therefore, it increases the electron density on nitrogen by
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Answer to Problem 26.33AP
The structure of imitanib in
Explanation of Solution
In imitanib, the aliphatic amine will be protonated than aromatic amine since the basicity of aliphatic amines is more. The aliphatic amine present adjacent to the methyl group will be protonated as it is electron rich due to the
Figure 7
The structure of imitanib in
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Chapter 26 Solutions
Organic Chemistry Study Guide and Solutions
- Please correct answer and don't use hand ratingarrow_forwardSafari File Edit View History Bookmarks Window Help く < mylabmastering.pearson.com Wed Feb 12 8:44 PM ✩ + Apple Q Bing Google SignOutOptions M Question 36 - Lab HW BI... P Pearson MyLab and Mast... P Course Home Error | bartleby b Answered: If the biosynth... Draw a free-radical mechanism for the following reaction, forming the major monobromination product: ScreenPal - 2022 CHEM2... Access Pearson 2 CH3 Br-Br CH H3 Draw all missing reactants and/or products in the appropriate boxes by placing atoms on the canvas and connecting them with bonds. Add charges where needed. Electron- flow arrows should start on the electron(s) of an atom or a bond and should end on an atom, bond, or location where a new bond should be created. Include all free radicals by right-clicking on an atom on the canvas and then using the Atom properties to select the monovalent radical. ▸ View Available Hint(s) 0 2 DE [1] H EXP. CONT. H. Br-Br H FEB 12arrow_forwardPlease correct answer and don't use hand ratingarrow_forwardNonearrow_forwardQ1: For each molecule, assign each stereocenter as R or S. Circle the meso compounds. Label each compound as chiral or achiral. + CI Br : Н OH H wo་ཡིག་ཐrow HO 3 D ။။ဂ CI Br H, CI Br Br H₂N OMe R IN I I N S H Br ជ័យ CI CI D OHarrow_forwardPlease correct answer and don't use hand ratingarrow_forwardNonearrow_forward%Reflectance 95 90- 85 22 00 89 60 55 50 70 65 75 80 50- 45 40 WA 35 30- 25 20- 4000 3500 Date: Thu Feb 06 17:21:21 2025 (GMT-05:0(UnknownD Scans: 8 Resolution: 2.000 3000 2500 Wavenumbers (cm-1) 100- 2981.77 1734.25 2000 1500 1000 1372.09 1108.01 2359.09 1469.82 1181.94 1145.20 1017.01 958.45 886.97 820.49 668.25 630.05 611.37arrow_forwardNonearrow_forwardCH3 CH H3C CH3 H OH H3C- -OCH2CH3 H3C H -OCH3 For each of the above compounds, do the following: 1. List the wave numbers of all the IR bands in the 1350-4000 cm-1 region. For each one, state what bond or group it represents. 2. Label equivalent sets of protons with lower-case letters. Then, for each 1H NMR signal, give the 8 value, the type of splitting (singlet, doublet etc.), and the number protons it represents. of letter δ value splitting # of protons 3. Redraw the compound and label equivalent sets of carbons with lower-case letters. Then for each set of carbons give the 5 value and # of carbons it represents. letter δ value # of carbonsarrow_forwardDraw the correct ionic form(s) of arginine at the pKa and PI in your titration curve. Use your titration curve to help you determine which form(s) to draw out.arrow_forwardPlease correct answer and don't use hand ratingarrow_forwardarrow_back_iosSEE MORE QUESTIONSarrow_forward_ios
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