What is the hybridization at each of the carbon atoms? Drag the appropriate labels to their respective targets. Note: not all labels will be used. sp sp² sp³ d sp³ d²

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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**Understanding Hybridization in Carbon Atoms**

**Activity: Determine the Hybridization at Each Carbon Atom**

In this interactive exercise, you are tasked with identifying the type of hybridization present in the carbon atoms of a given molecule. Drag the appropriate labels to their respective targets on the diagram. Note that not all of the provided labels will be used.

**Hybridization Labels:**
- sp
- sp²
- sp³
- sp³d
- sp³d²

**Diagram Explanation:**

The diagram features a five-membered ring structure with an oxygen atom at the top. The carbon atoms in the ring are indicated by the positions where you need to place your hybridization labels. Four empty boxes, positioned with arrows, point to specific carbon atoms in the ring. Your task is to determine and assign the correct hybridization for each carbon atom based on the structure and bonding.

Remember, understanding the hybridization of atoms is essential for predicting molecular geometry and reactivity. Use your knowledge of chemical bonding to solve this activity!
Transcribed Image Text:**Understanding Hybridization in Carbon Atoms** **Activity: Determine the Hybridization at Each Carbon Atom** In this interactive exercise, you are tasked with identifying the type of hybridization present in the carbon atoms of a given molecule. Drag the appropriate labels to their respective targets on the diagram. Note that not all of the provided labels will be used. **Hybridization Labels:** - sp - sp² - sp³ - sp³d - sp³d² **Diagram Explanation:** The diagram features a five-membered ring structure with an oxygen atom at the top. The carbon atoms in the ring are indicated by the positions where you need to place your hybridization labels. Four empty boxes, positioned with arrows, point to specific carbon atoms in the ring. Your task is to determine and assign the correct hybridization for each carbon atom based on the structure and bonding. Remember, understanding the hybridization of atoms is essential for predicting molecular geometry and reactivity. Use your knowledge of chemical bonding to solve this activity!
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