(a) What property of the Electric Field E allows us E can be expressed as a gradient of a scalar (V). (b) If you integrate Electric Field E along a path, say from point A to B, you get the potential difference between points B and A. If you integrate E along a closed loop what do you get?
(a) What property of the Electric Field E allows us E can be expressed as a gradient of a scalar (V). (b) If you integrate Electric Field E along a path, say from point A to B, you get the potential difference between points B and A. If you integrate E along a closed loop what do you get?
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![(a) What property of the Electric Field E allows us E can be expressed as a gradient of a scalar (V).
(b) If you integrate Electric Field E along a path, say from point A to B, you get the potential difference between
points B and A. If you integrate E along a closed loop what do you get?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4b5ace3e-05a1-46a4-98fa-a372acfc8cda%2F17b90e75-dd10-4aa8-ae84-98ce5e175ace%2F9ose6ts_processed.jpeg&w=3840&q=75)
Transcribed Image Text:(a) What property of the Electric Field E allows us E can be expressed as a gradient of a scalar (V).
(b) If you integrate Electric Field E along a path, say from point A to B, you get the potential difference between
points B and A. If you integrate E along a closed loop what do you get?
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