Check the box under each structure in ne table that is an enantiomer of the molecule shown below. If none of them are, check the table. HN R Molecule 1 NH Molecule 4 In NH none of the above Molecule 2 Molecule 5 NH Molecule 3 HN *... Molecule 6 m 0

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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The page is from a chemistry educational website related to stereochemistry, specifically focusing on identifying enantiomers of a simple organic molecule.

---

**Instructions:**

"Check the box under each structure in the table that is an enantiomer of the molecule shown below. If none of them are, check the box labeled 'none of the above.'"

---

**Main Molecule Illustration:**

- The main molecule is a cyclopentane ring with an NH group. The molecule features a chiral center indicated by wedge and dash bonds.

---

**Molecule Options (Diagrams):**

1. **Molecule 1:**
   - Cyclopentane with an NH group. The wedge and dash bonds are similar to the main molecule but in different orientations.

2. **Molecule 2:**
   - Cyclopentane with an NH group. The wedge and dash bonds are oriented differently compared to Molecule 1.

3. **Molecule 3:**
   - Cyclopentane with an NH group. The orientation of the wedge and dash bonds is distinct from both Molecules 1 and 2.

4. **Molecule 4:**
   - Cyclopentane with an NH group. This diagram presents another unique orientation for the wedge and dash bonds.

5. **Molecule 5:**
   - Cyclopentane with an NH group. The bonds are arranged distinctly, like the other molecules.

6. **Molecule 6:**
   - Cyclopentane with an NH group, once more with a different bond orientation.

---

- **Option:**
  - "none of the above" checkbox for the scenario where none of the shown structures are enantiomers.

---

**Buttons:**
- "Explanation"
- "Check" 

These options likely provide further clarification or confirm the choice.
Transcribed Image Text:The page is from a chemistry educational website related to stereochemistry, specifically focusing on identifying enantiomers of a simple organic molecule. --- **Instructions:** "Check the box under each structure in the table that is an enantiomer of the molecule shown below. If none of them are, check the box labeled 'none of the above.'" --- **Main Molecule Illustration:** - The main molecule is a cyclopentane ring with an NH group. The molecule features a chiral center indicated by wedge and dash bonds. --- **Molecule Options (Diagrams):** 1. **Molecule 1:** - Cyclopentane with an NH group. The wedge and dash bonds are similar to the main molecule but in different orientations. 2. **Molecule 2:** - Cyclopentane with an NH group. The wedge and dash bonds are oriented differently compared to Molecule 1. 3. **Molecule 3:** - Cyclopentane with an NH group. The orientation of the wedge and dash bonds is distinct from both Molecules 1 and 2. 4. **Molecule 4:** - Cyclopentane with an NH group. This diagram presents another unique orientation for the wedge and dash bonds. 5. **Molecule 5:** - Cyclopentane with an NH group. The bonds are arranged distinctly, like the other molecules. 6. **Molecule 6:** - Cyclopentane with an NH group, once more with a different bond orientation. --- - **Option:** - "none of the above" checkbox for the scenario where none of the shown structures are enantiomers. --- **Buttons:** - "Explanation" - "Check" These options likely provide further clarification or confirm the choice.
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