Problem 2: A positive charge of magnitude Q, = 0.45 nC is located at the origin. A negative ge Q2 = -8.5 nC is located on the positive x-axis at x = 10.5 cm from the origin. The point P is ed y = 8.5 cm above charge Q2. y R Q X Part (a) Calculate the x-component of the electric field at point P due to charge Q1. Write your answer in units of N/C. Part (b) Calculate the y-component of the electric field at point P due to charge Q1. Write your answer in units of N/C.

Physics for Scientists and Engineers
10th Edition
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter23: Continuous Charge Distributions And Gauss's Law
Section: Chapter Questions
Problem 5P: Example 23.3 derives the exact expression for the electric field at a point on the axis of a...
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Problem 2: A positive charge of magnitude Q1 = 0.45 nC is located at the origin. A negative
charge Q, = -8.5 nC is located on the positive x-axis at x = 10.5 cm from the origin. The point P is
located y = 8.5 cm above charge Q2.-
y
Q2
X
Part (a) Calculate the x-component of the electric field at point P due to charge Q1. Write your answer in units of N/C.
Ex 1=
Part (b) Calculate the y-component of the electric field at point P due to charge Q1. Write your answer in units of N/C.
Part (c) Calculate the y-component of the electric field at point P due to the Charge Q2. Write your answer in units of N/C.
Ey2 =
Transcribed Image Text:Problem 2: A positive charge of magnitude Q1 = 0.45 nC is located at the origin. A negative charge Q, = -8.5 nC is located on the positive x-axis at x = 10.5 cm from the origin. The point P is located y = 8.5 cm above charge Q2.- y Q2 X Part (a) Calculate the x-component of the electric field at point P due to charge Q1. Write your answer in units of N/C. Ex 1= Part (b) Calculate the y-component of the electric field at point P due to charge Q1. Write your answer in units of N/C. Part (c) Calculate the y-component of the electric field at point P due to the Charge Q2. Write your answer in units of N/C. Ey2 =
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