1) Use the 3D structure below to determine whether BH2CI is polar. To do this, you must use arrows to indicate polar bonds, and either use an arrow to indicate the net dipole moment or state that the molecule is non-polar. Cl B H.

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**Task: Determine if BH₂Cl is Polar**

1. **Instructions:**
   - Use the 3D structure below to determine whether BH₂Cl is polar.
   - To do this, you must use arrows to indicate polar bonds.
   - Either use an arrow to indicate the net dipole moment or state that the molecule is non-polar.

2. **Structure:**
   - The chemical structure shows Boron (B) as the central atom.
   - It is bonded to two Hydrogen (H) atoms and one Chlorine (Cl) atom.
   - The Hydrogens are positioned at an angle, with Chlorine on the top.

**Diagram Explanation:**
- There are three straight lines, representing chemical bonds:
  - A vertical line connects Boron (B) to Chlorine (Cl).
  - Two angled lines connect Boron (B) to the Hydrogen (H) atoms.

**Analysis:**
- Evaluate the electronegativity differences to determine the direction of polar bonds.
- Consider the geometry to determine the net dipole moment.
Transcribed Image Text:**Task: Determine if BH₂Cl is Polar** 1. **Instructions:** - Use the 3D structure below to determine whether BH₂Cl is polar. - To do this, you must use arrows to indicate polar bonds. - Either use an arrow to indicate the net dipole moment or state that the molecule is non-polar. 2. **Structure:** - The chemical structure shows Boron (B) as the central atom. - It is bonded to two Hydrogen (H) atoms and one Chlorine (Cl) atom. - The Hydrogens are positioned at an angle, with Chlorine on the top. **Diagram Explanation:** - There are three straight lines, representing chemical bonds: - A vertical line connects Boron (B) to Chlorine (Cl). - Two angled lines connect Boron (B) to the Hydrogen (H) atoms. **Analysis:** - Evaluate the electronegativity differences to determine the direction of polar bonds. - Consider the geometry to determine the net dipole moment.
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