As you saw in the Electric Potential Lab, you can relate the Electric Field of a system to a map of the potential. Mathematically we can do this as well when we have a function for the Electric Potential Difference in all space. There is a function below for the Electric Potential Difference. The letters A, B and C are constant values shown below the function. AV = Ax²y² + Bxz³ – Cxyz² A = -2.60 V/m4 B = 5.30 V/m4 C = -3.7 V/m4 Cor thic problom vou pood to find th e comp onont of the Eloctric Ciold in the y
As you saw in the Electric Potential Lab, you can relate the Electric Field of a system to a map of the potential. Mathematically we can do this as well when we have a function for the Electric Potential Difference in all space. There is a function below for the Electric Potential Difference. The letters A, B and C are constant values shown below the function. AV = Ax²y² + Bxz³ – Cxyz² A = -2.60 V/m4 B = 5.30 V/m4 C = -3.7 V/m4 Cor thic problom vou pood to find th e comp onont of the Eloctric Ciold in the y
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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
Transcribed Image Text:As you saw in the Electric Potential Lab, you can relate the Electric Field of a system
to a map of the potential. Mathematically we can do this as well when we have a
function for the Electric Potential Difference in all space. There is a function below
for the Electric Potential Difference. The letters A, B and C are constant values
shown below the function.
ду — Ах?у? + Вxz3 - Схуz?
AV =
Bxz³
3 — Схуг?
A = -2.60 V/m4
B = 5.30 V/m4
C = -3.7 V/m4
For this problem, you need to find the component of the Electric Field in the y
direction at a position (0.70 m, 5.00 m, -9.00 m). Be careful that you do the math in
the correct order (i.e. - don't plug in the position first).
Make sure to put units with your answer and include a negative sign if your answer
gives you one. Make sure to give your answer with an appropriate number of
significant figures.
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