The drawing shows four point charges. The value of q is 2.18 µC, and the distance d is 1.02 m. Find the total potential at the location P. Assume that the potential of a point charge is zero at infinity.

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Chapter1: Units, Trigonometry. And Vectors
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The drawing shows four point charges. The value of q is 2.18 µC, and the distance d is 1.02 m. Find the total potential at the location P. Assume that the potential of a point charge is zero at infinity.

The diagram illustrates a charge configuration involving point charges and distances in a coordinate system.

- Four point charges are depicted, labeled \( q \), \( q \), \( -q \), and \( -q \). 
- These charges are positioned in a characteristic "Y" shape around a central point labeled \( P \).
- Each line segment connecting the charges to point \( P \) is labeled with the distance \( d \).
- The charge labeled \( q \) is located at the top left of the diagram.
- Directly below it, at a distance \( d \), is another charge labeled \( q \).
- To the right, forming an angle, another charge labeled \( -q \) is located, also at a distance \( d \) from the central point \( P \).
- Below the central charge, at the same distance \( d \), is another charge labeled \( -q \).

This configuration can be used to explore electrostatic interactions, forces, and potential at point \( P \).
Transcribed Image Text:The diagram illustrates a charge configuration involving point charges and distances in a coordinate system. - Four point charges are depicted, labeled \( q \), \( q \), \( -q \), and \( -q \). - These charges are positioned in a characteristic "Y" shape around a central point labeled \( P \). - Each line segment connecting the charges to point \( P \) is labeled with the distance \( d \). - The charge labeled \( q \) is located at the top left of the diagram. - Directly below it, at a distance \( d \), is another charge labeled \( q \). - To the right, forming an angle, another charge labeled \( -q \) is located, also at a distance \( d \) from the central point \( P \). - Below the central charge, at the same distance \( d \), is another charge labeled \( -q \). This configuration can be used to explore electrostatic interactions, forces, and potential at point \( P \).
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