A uniform electric field of magnitude 295 V/m is directed in the negative y direction as shown in the figure below. The coordinates of pointare (-0.500,-0.600) m, and those of point are (0.700, 0.450) m. Calculate the electric potential difference VB - VA US the dashed-line path. V #

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Chapter1: Units, Trigonometry. And Vectors
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A uniform electric field of magnitude 295 V/m is directed in the negative y direction as shown in the figure below. The coordinates of point \( \mathrm{A} \) are \((-0.500, -0.600)\) m, and those of point \( \mathrm{B} \) are \((0.700, 0.450)\) m. Calculate the electric potential difference \( V_B - V_A \) using the dashed-line path.

### Diagram Explanation:

- The diagram features an x-y coordinate plane.
- An electric field \( \vec{E} \) is represented by orange arrows pointing downward along the negative y-axis, indicating its direction.
- Two points, \( \mathrm{A} \) and \( \mathrm{B} \), are marked on the plane:
  - Point \( \mathrm{A} \) is located at coordinates \((-0.500, -0.600)\) m.
  - Point \( \mathrm{B} \) is located at coordinates \((0.700, 0.450)\) m.
- A dashed line represents a path between points \( \mathrm{A} \) and \( \mathrm{B} \).
Transcribed Image Text:A uniform electric field of magnitude 295 V/m is directed in the negative y direction as shown in the figure below. The coordinates of point \( \mathrm{A} \) are \((-0.500, -0.600)\) m, and those of point \( \mathrm{B} \) are \((0.700, 0.450)\) m. Calculate the electric potential difference \( V_B - V_A \) using the dashed-line path. ### Diagram Explanation: - The diagram features an x-y coordinate plane. - An electric field \( \vec{E} \) is represented by orange arrows pointing downward along the negative y-axis, indicating its direction. - Two points, \( \mathrm{A} \) and \( \mathrm{B} \), are marked on the plane: - Point \( \mathrm{A} \) is located at coordinates \((-0.500, -0.600)\) m. - Point \( \mathrm{B} \) is located at coordinates \((0.700, 0.450)\) m. - A dashed line represents a path between points \( \mathrm{A} \) and \( \mathrm{B} \).
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