Part B:  Find the direction of the magnetic field this electon produces at the point AA.   into the paper the field iz zero out of the paper Part D:  Find the direction of the magnetic field this electon produces at the point BB.   into the paper out of the paper the field iz zero Part F: Find the direction of the magnetic field this electon produces at the point CC.   the field iz zero out of the paper into the paper

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Part B: 

Find the direction of the magnetic field this electon produces at the point AA.
 
into the paper
the field iz zero
out of the paper

Part D: 

Find the direction of the magnetic field this electon produces at the point BB.
 
into the paper
out of the paper

the field iz zero

Part F:

Find the direction of the magnetic field this electon produces at the point CC.
 
the field iz zero
out of the paper
into the paper

Part H: 

Find the direction of the magnetic field this electon produces at the point DD.
 
into the paper
the field iz zero
out of the paper
An electron moves at 0.150c as shown in the figure (Figure 1). There are points: A, B, C, and D 2.00 μm from the electron.

**Figure Explanation:**

The diagram illustrates an electron at the center, with a velocity vector \(\vec{v}\) pointing upwards. Four points, labeled A, B, C, and D, are positioned around the electron at equal distances of 2.00 μm. The points are arranged as follows:

- **Point A**: Located 60° above the horizontal axis on the right side.
- **Point B**: Located 60° below the horizontal axis on the right side.
- **Point C**: Directly along the horizontal axis to the right of the electron.
- **Point D**: Directly along the horizontal axis to the left of the electron.

The angles between lines connecting the electron with points A, C, and B are marked as 60°, while point D is positioned at 90° from the velocity vector along the horizontal axis.
Transcribed Image Text:An electron moves at 0.150c as shown in the figure (Figure 1). There are points: A, B, C, and D 2.00 μm from the electron. **Figure Explanation:** The diagram illustrates an electron at the center, with a velocity vector \(\vec{v}\) pointing upwards. Four points, labeled A, B, C, and D, are positioned around the electron at equal distances of 2.00 μm. The points are arranged as follows: - **Point A**: Located 60° above the horizontal axis on the right side. - **Point B**: Located 60° below the horizontal axis on the right side. - **Point C**: Directly along the horizontal axis to the right of the electron. - **Point D**: Directly along the horizontal axis to the left of the electron. The angles between lines connecting the electron with points A, C, and B are marked as 60°, while point D is positioned at 90° from the velocity vector along the horizontal axis.
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