E Potential, Field, and Energy -5.0 nC 2.0 cm Three charges are at the edges of a rectangle as drawn. Solve for the unknown charge q so that the electric potential (voltage) is zero at the location of the dot. 4.0 cm 5.0 nC

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**Electric Potential, Field, and Energy**

**2.** Three charges are at the edges of a rectangle as drawn. Solve for the unknown charge \( q \) so that the electric potential (voltage) is zero at the location of the dot.

**Diagram Explanation:**

- The diagram shows two positive charges and one negative charge positioned at three corners of a rectangle.
- The unknown charge \( q \) is at the top left corner and is positive.
- The negative charge, \(-5.0 \, \text{nC}\), is positioned 2.0 cm to the right of \( q \).
- A positive charge of \(5.0 \, \text{nC}\) is located 4.0 cm below \( q \).
- There is a dot located at the fourth corner, indicating the point where the electric potential should be zero.
Transcribed Image Text:**Electric Potential, Field, and Energy** **2.** Three charges are at the edges of a rectangle as drawn. Solve for the unknown charge \( q \) so that the electric potential (voltage) is zero at the location of the dot. **Diagram Explanation:** - The diagram shows two positive charges and one negative charge positioned at three corners of a rectangle. - The unknown charge \( q \) is at the top left corner and is positive. - The negative charge, \(-5.0 \, \text{nC}\), is positioned 2.0 cm to the right of \( q \). - A positive charge of \(5.0 \, \text{nC}\) is located 4.0 cm below \( q \). - There is a dot located at the fourth corner, indicating the point where the electric potential should be zero.
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