Ifosfamide is a pharmaceutical used in the treatment of testicular cancer. Identify the number of sigma bonds in this structure. CH2 .N. CH2

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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**Question 28 of 39**

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

Identify the number of sigma bonds in this structure.

**Chemical Structure Description:**

The image shows the structural formula of ifosfamide. It includes:

- A phosphorus atom (P) with a double bond to an oxygen atom (O) and two single bonds to nitrogen atoms (N).
- The phosphorus atom is also connected to an oxygen atom in a ring structure.
- There are several carbon (C) and hydrogen (H) atom chains attached to nitrogen atoms, forming parts of the molecular structure.
- Two chlorine atoms (Cl) are bonded to carbon atoms in the structure.

**Task:**

Count the number of sigma bonds in the depicted chemical structure. 

**Note:**

- Sigma bonds represent single covalent bonds formed between two atoms.
- In a molecular structure, each line or single bond represents one sigma bond. 
- To determine the total number of sigma bonds, add up all the single lines connecting the atoms.
Transcribed Image Text:**Question 28 of 39** Ifosfamide is a pharmaceutical used in the treatment of testicular cancer. Identify the number of sigma bonds in this structure. **Chemical Structure Description:** The image shows the structural formula of ifosfamide. It includes: - A phosphorus atom (P) with a double bond to an oxygen atom (O) and two single bonds to nitrogen atoms (N). - The phosphorus atom is also connected to an oxygen atom in a ring structure. - There are several carbon (C) and hydrogen (H) atom chains attached to nitrogen atoms, forming parts of the molecular structure. - Two chlorine atoms (Cl) are bonded to carbon atoms in the structure. **Task:** Count the number of sigma bonds in the depicted chemical structure. **Note:** - Sigma bonds represent single covalent bonds formed between two atoms. - In a molecular structure, each line or single bond represents one sigma bond. - To determine the total number of sigma bonds, add up all the single lines connecting the atoms.
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