. Fill in the missing starting materials, products, or reagents as necessary. ii. Label each transformation as SN1, SN2, or acid/base. iii. Indicate if the product is racemic or a single enantiomer

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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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i. Fill in the missing starting materials, products, or reagents as necessary.

ii. Label each transformation as SN1, SN2, or acid/base.

iii. Indicate if the product is racemic or a single enantiomer

The image appears to be a part of a chemistry instructional material, demonstrating two transformations.

**Section c:**
- The reaction involves the use of sodium iodide (NaI) in acetone as a reagent. This typically indicates a nucleophilic substitution reaction where iodide replaces another leaving group.

**Section d:**
- The starting material is a sugar molecule with multiple acetate (Ac) groups attached. The notation indicates that "Ac" refers to an acetyl group (CH₃CO).
- There is a reaction indicated with excess thionyl chloride (SOCl₂) in the presence of pyridine. This step likely involves the conversion of alcohols to chlorides.
- The note explains that without Ac groups, this substance is glucose (table sugar).
- The final text indicates that once the acetyl groups are removed, glucose is transformed into a sweeter compound commonly known as Splenda. This is a reference to the conversion of glucose to sucralose, a non-caloric sweetener.

The diagrams illustrate chemical transformations, emphasizing structural changes in organic chemistry, particularly in the context of sugar modification.
Transcribed Image Text:The image appears to be a part of a chemistry instructional material, demonstrating two transformations. **Section c:** - The reaction involves the use of sodium iodide (NaI) in acetone as a reagent. This typically indicates a nucleophilic substitution reaction where iodide replaces another leaving group. **Section d:** - The starting material is a sugar molecule with multiple acetate (Ac) groups attached. The notation indicates that "Ac" refers to an acetyl group (CH₃CO). - There is a reaction indicated with excess thionyl chloride (SOCl₂) in the presence of pyridine. This step likely involves the conversion of alcohols to chlorides. - The note explains that without Ac groups, this substance is glucose (table sugar). - The final text indicates that once the acetyl groups are removed, glucose is transformed into a sweeter compound commonly known as Splenda. This is a reference to the conversion of glucose to sucralose, a non-caloric sweetener. The diagrams illustrate chemical transformations, emphasizing structural changes in organic chemistry, particularly in the context of sugar modification.
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