cm B --- 22 A Q3 x At a particular moment, one negative and two positive charges are located as shown in the figure. Your answers to each part of this problem should be vectors. It helps a great deal to make a diagram with arrows representing the various electric field contributions, and then check the signs of your components against these arrows. Let Q₁ = 1 μC, Q₂ = 6 μC, and Q3 = -3 μC. Find the electric field at the location of Q1, due to Q2 and Q3. What is Ę? <-21576000,10788000 0 > N/C Use the electric field you calculated in part (a) to find the force on Q1. Find F < 0 0 0 > N

College Physics
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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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cm
B
---
22
A
Q3
x
At a particular moment, one negative and two positive charges are located as shown in the figure. Your answers to each part of this problem should be vectors. It helps a
great deal to make a diagram with arrows representing the various electric field contributions, and then check the signs of your components against these arrows.
Let Q₁ = 1 μC, Q₂ = 6 μC, and Q3 = -3 μC.
Find the electric field at the location of Q1, due to Q2 and Q3.
What is Ę?
<-21576000,10788000
0
> N/C
Use the electric field you calculated in part (a) to find the force on Q1.
Find F
< 0
0
0
> N
Transcribed Image Text:cm B --- 22 A Q3 x At a particular moment, one negative and two positive charges are located as shown in the figure. Your answers to each part of this problem should be vectors. It helps a great deal to make a diagram with arrows representing the various electric field contributions, and then check the signs of your components against these arrows. Let Q₁ = 1 μC, Q₂ = 6 μC, and Q3 = -3 μC. Find the electric field at the location of Q1, due to Q2 and Q3. What is Ę? <-21576000,10788000 0 > N/C Use the electric field you calculated in part (a) to find the force on Q1. Find F < 0 0 0 > N
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