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Give detailed Solution with explanation needed with structure..don't give Handwritten answer
![Is this compound chiral?
s1.
(a) yes
(b) no
H₁₁C=C=C₁
CH3
H
H3C](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F588cf256-c05b-4b8f-98cb-21c84779e9a8%2Fefc5b1b2-1c19-4b51-a16b-890d6662496c%2F6aazffb_processed.jpeg&w=3840&q=75)
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- Eight alcohols have the formula C5H12O. Draw them. Which are chiral?(a) Draw the nine isomers having the formula C7H16 . (Hint: There is one structure with a seven-carbon chain, two structures with six-carbon chains [one is illustrated in the margin above], five structures with a five-carbon chain, and one structure with a fourcarbon chain.)(b) Identify the isomers of C7H16 that are chiral.Q3. (A) Identify the following compounds as chiral or achiral.
- (a) (1R,2R)-1,2-dibromocyclohexane, star (*) each chiral center.Classify the pairs of molecules as not the same molecule, structural isomers, diastereomers, enantiomers or identical. Circle any molecules that are not achiral (a) (b) (c) Br... H CI H H Br H H3C Br H. CI Br H Br CI I I Br" "H H Br H CH3 Cr BrWhich of the following is/are chiral? OH OH H A O H CH 3 glycine C H B CH 3 H (Note: glycine = NH₂CH₂COOH; if the image above does not appear, click here.) OB and C A and C B A
- 5. (a) F H₂CH₂C (b) H ) Draw the three-dimensional structures for the following compounds. H CH3 & H3C NH₂ Br OH H CH3 BrYour chemistry professor draws a number of molecules on the board: (1) CH4 ; (2) H2C=CH2 ; (3) H2C=C=CH2 ; and (4) H2C=C=C=CH2. You muse about all the molecules that chemists draw on a two-dimensional board and wonder which ones are actually planar, existing basically as they appear on the board, and which ones are not plane but rather three-dimensional. Answer ALL of the following questions. What are the specific orbital overlaps (i.e., sp3-sp3) that are in each of the molecules? What are the bond angles for each central atom in each molecule? Which molecules are planar and which are non-planar?Your chemistry professor draws a number of molecules on the board: (1) CH4 ; (2) H2C=CH2 ; (3) H2C=C=CH2 ; and (4) H2C=C=C=CH2. You muse about all the molecules that chemists draw on a two-dimensional board and wonder which ones are actually planar, existing basically as they appear on the board, and which ones are not plane but rather three-dimensional. Answer the following questions. What is the geometry and hybridization of the carbon in CH4? What is the geometry and hybridization of each central carbon atom in the remaining molecules? Draw each molecule showing the bonds and identify each bond in all the molecules as s or p. What are the specific orbital overlaps (i.e., sp3-sp3) that are in each of the molecules? What are the bond angles for each central atom in each molecule? Which molecules are planar and which are non-planar?
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