Ax 3 A strip of invisible tape 0.14 m long by 0.014 m wide is charged uniformly with a total net charge of 8 nC (nano - 1e-9) and is suspended horizontally, so it lies along the x axis, with its center at the origin, as shown in the diagram. Calculate the approximate electric field at location <0, 0.03, 0>m (location A) due to the strip of tape. Do this by dividing the strip into three equal sections, as shown in the diagram, and approximating each section as a point charge. What is the approximate electric field at A due to piece #1? E₁<7-103,4.5-103,0> × N/C What is the approximate electric field at A due to piece #2? E2<0, 2.6-104,0> × N/C What is the approximate electric field at A due to piece #3? N/C What is the approximate net electric field at A? Enet <2.95 104, 0, 0> × N/C

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter19: Electric Forces And Electric Fields
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Problem 75P: A solid, insulating sphere of radius a has a uniform charge density throughout its volume and a...
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Ax
3
A strip of invisible tape 0.14 m long by 0.014 m wide is charged uniformly with a total net charge of 8 nC (nano - 1e-9) and is suspended horizontally, so it lies along the x axis, with its center at the origin, as shown
in the diagram.
Calculate the approximate electric field at location <0, 0.03, 0>m (location A) due to the strip of tape. Do this by dividing the strip into three equal sections, as shown in the diagram, and approximating each
section as a point charge.
What is the approximate electric field at A due to piece #1?
E₁<7-103,4.5-103,0> × N/C
What is the approximate electric field at A due to piece #2?
E2<0, 2.6-104,0> × N/C
What is the approximate electric field at A due to piece #3?
N/C
What is the approximate net electric field at A?
Enet
<2.95 104, 0, 0> × N/C
Transcribed Image Text:Ax 3 A strip of invisible tape 0.14 m long by 0.014 m wide is charged uniformly with a total net charge of 8 nC (nano - 1e-9) and is suspended horizontally, so it lies along the x axis, with its center at the origin, as shown in the diagram. Calculate the approximate electric field at location <0, 0.03, 0>m (location A) due to the strip of tape. Do this by dividing the strip into three equal sections, as shown in the diagram, and approximating each section as a point charge. What is the approximate electric field at A due to piece #1? E₁<7-103,4.5-103,0> × N/C What is the approximate electric field at A due to piece #2? E2<0, 2.6-104,0> × N/C What is the approximate electric field at A due to piece #3? N/C What is the approximate net electric field at A? Enet <2.95 104, 0, 0> × N/C
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