Al kene choies A₁ (5)-3-etyl cyclobantene 1-etyl cyclobutene C: (K)- 3-chuye cyclobutene B: RAN Londitions I 130+ II сњон, Hesat III 1.0504 2. Nahtsin3 D: (R)-1,4-dictyl cyclobutene TV H₂/Pd E: (6) - 1,4 - didetihy (eyclobutene V MCPBA F: VI G=(R)-3-etul pent-1-ene VII 1. Btty 2. HBV, H₂0₂ 2. H2O2 at, 1₂0 4. 7 4: (E)-4-metyl pent-2-ene VIII 1. Hy/(A)₂, H2₂0 2. Nattlef I: (2)-4-metyl pent-2-ene IX. 1. glaA=₂2, City 2. Nathy J: 2-metul peut-1-eve X B-C1 IN CC14 K: (E)-3 metyl pent-2-ene XL Bv₂ in CH₂OH L: (2)-3-methylpent-2-ene XII Br₂ iN H₂0

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Question

Which alkene choices and reaction condition created this product?

The image shows a hand-drawn chemical structure with the following details:

- A square with an open bottom, representing a tetrahydrofuran (THF) ring.
- Attached to the bottom right corner of the square is an OH group, indicating a hydroxyl group.
- There is a set of three lines radiating from the bottom left corner, which may represent a bond to another molecule or part of a larger structure.
- The number "5" is written next to the structure, possibly indicating a step or example number in a sequence.

This diagram likely illustrates a chemical structure or step in an organic chemistry reaction, possibly focusing on a specific alcohol-functionalized compound.
Transcribed Image Text:The image shows a hand-drawn chemical structure with the following details: - A square with an open bottom, representing a tetrahydrofuran (THF) ring. - Attached to the bottom right corner of the square is an OH group, indicating a hydroxyl group. - There is a set of three lines radiating from the bottom left corner, which may represent a bond to another molecule or part of a larger structure. - The number "5" is written next to the structure, possibly indicating a step or example number in a sequence. This diagram likely illustrates a chemical structure or step in an organic chemistry reaction, possibly focusing on a specific alcohol-functionalized compound.
### Alkene Choices

**A:** (S)-3-ethyl cyclopentene  
**B:** 1-ethyl cyclobutene  
**C:** (R)-3-ethyl cyclobutene  
**D:** (R)-1,4-dethyl cyclohexene  
**E:** (S)-1,4-diethylcyclohexene  
**F:** Cyclohexene (represented by a skeletal structure)

**G:** (R)-3-ethyl pent-1-ene  
**H:** (E)-4-methyl pent-2-ene  
**I:** (Z)-4-methyl pent-2-ene  
**J:** 2-methyl pent-1-ene  
**K:** (E)-3-methyl pent-2-ene  
**L:** (Z)-3-methyl pent-2-ene

### RXN Conditions

**I:** \( I_2 \), \( h \nu \)  
**II:** \( CH_3OH \), \( H_2SO_4 \)  
**III:** 1. \( OsO_4 \), 2. \( NaHSO_3 \)  
**IV:** \( H_2 \) / \( Pd \)  
**V:** \( m \)-CPBA  
**VI:** \( HBr \), \( H_2O_2 \)  
**VII:** 1. \( BH_3 \), 2. \( H_2O_2 \), \( OH^- \), \( H_2O \)  
**VIII:** 1. \( Hg(OAc)_2 \), \( H_2O \) 2. \( NaBH_4 \)  
**IX:** 1. \( Hg(OAc)_2 \), \( CH_3OH \) 2. \( NaBH_4 \)  
**X:** \( Br-Cl \) in \( CCl_4 \)  
**XI:** \( Br_2 \) in \( CH_3OH \)  
**XII:** \( Br_2 \) in \( H_2O \)

### Diagram Explanation

The diagram in section F represents a simple skeletal structure typically used for cyclohexene. The line diagram shows a hexagon, indicating a six-membered carbon ring with alternating single and double bonds, characteristic of a simple cycloalkene structure.
Transcribed Image Text:### Alkene Choices **A:** (S)-3-ethyl cyclopentene **B:** 1-ethyl cyclobutene **C:** (R)-3-ethyl cyclobutene **D:** (R)-1,4-dethyl cyclohexene **E:** (S)-1,4-diethylcyclohexene **F:** Cyclohexene (represented by a skeletal structure) **G:** (R)-3-ethyl pent-1-ene **H:** (E)-4-methyl pent-2-ene **I:** (Z)-4-methyl pent-2-ene **J:** 2-methyl pent-1-ene **K:** (E)-3-methyl pent-2-ene **L:** (Z)-3-methyl pent-2-ene ### RXN Conditions **I:** \( I_2 \), \( h \nu \) **II:** \( CH_3OH \), \( H_2SO_4 \) **III:** 1. \( OsO_4 \), 2. \( NaHSO_3 \) **IV:** \( H_2 \) / \( Pd \) **V:** \( m \)-CPBA **VI:** \( HBr \), \( H_2O_2 \) **VII:** 1. \( BH_3 \), 2. \( H_2O_2 \), \( OH^- \), \( H_2O \) **VIII:** 1. \( Hg(OAc)_2 \), \( H_2O \) 2. \( NaBH_4 \) **IX:** 1. \( Hg(OAc)_2 \), \( CH_3OH \) 2. \( NaBH_4 \) **X:** \( Br-Cl \) in \( CCl_4 \) **XI:** \( Br_2 \) in \( CH_3OH \) **XII:** \( Br_2 \) in \( H_2O \) ### Diagram Explanation The diagram in section F represents a simple skeletal structure typically used for cyclohexene. The line diagram shows a hexagon, indicating a six-membered carbon ring with alternating single and double bonds, characteristic of a simple cycloalkene structure.
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Step 1: Predict arrow movement

An arrow always depicts from a region of high electron density to low electron density ; that is tail depicts region of high electron density and head depicts region of low electron density.

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