Use valence bond theory to predict the hybridization of the circled atom. A) p CH2 B) sp C) sp D) sp CI E) sp of fo

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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**Question 17 of 39**

**Context:** Ifosfamide is a pharmaceutical used in the treatment of testicular cancer.

**Task:** Use valence bond theory to predict the hybridization of the circled atom.

**Diagram Explanation:**

- The image contains the chemical structure of ifosfamide.
- The structure highlights a phosphorus (P) atom with a circle around it to indicate the atom in question for hybridization analysis.
- The surrounding atoms and molecular structure, including nitrogen (N), oxygen (O), hydrogen (H), carbon (C), and chlorine (Cl), are connected to the phosphorus atom, forming a part of the broader molecular architecture of ifosfamide.

**Options:**

A) p  
B) sp  
C) sp²  
D) sp³  
E) sp⁴
Transcribed Image Text:**Question 17 of 39** **Context:** Ifosfamide is a pharmaceutical used in the treatment of testicular cancer. **Task:** Use valence bond theory to predict the hybridization of the circled atom. **Diagram Explanation:** - The image contains the chemical structure of ifosfamide. - The structure highlights a phosphorus (P) atom with a circle around it to indicate the atom in question for hybridization analysis. - The surrounding atoms and molecular structure, including nitrogen (N), oxygen (O), hydrogen (H), carbon (C), and chlorine (Cl), are connected to the phosphorus atom, forming a part of the broader molecular architecture of ifosfamide. **Options:** A) p B) sp C) sp² D) sp³ E) sp⁴
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