The figure below shows a region of space with an electric field. The dashed lines indicate equipotential surfaces. A particle with a charge of +5.0x10-6 C is moved from point A to point B at constant speed. (You may assume point A falls exactly halfway between the two nearest equipotential surfaces and that there is no gravitational force). Draw an energy bar chart showing how the energy in the system consisting of the charged particle and the electric field changes as the particle is moved from position A to position
The figure below shows a region of space with an electric field. The dashed lines indicate equipotential surfaces. A particle with a charge of +5.0x10-6 C is moved from point A to point B at constant speed. (You may assume point A falls exactly halfway between the two nearest equipotential surfaces and that there is no gravitational force). Draw an energy bar chart showing how the energy in the system consisting of the charged particle and the electric field changes as the particle is moved from position A to position
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The figure below shows a region of space with an electric field. The dashed lines indicate equipotential surfaces. A particle with a charge of +5.0x10-6 C is moved from point A to point B at constant speed. (You may assume point A falls exactly halfway between the two nearest equipotential surfaces and that there is no gravitational force).
- Draw an energy bar chart showing how the energy in the system consisting of the charged particle and the electric field changes as the particle is moved from position A to position B.
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