For the line of charge of length L, and uniform linear charge density > in the figure below, make an analysis of what situation would be obtained if the field is measured very far from the line of charge (this is z >> L). Determine the analytical expression for this situation, using expression (2) given in this exercise. Also perform the analysis when now the length of the line becomes very large compared to the distance at which the field is measured (this is L>> z). Again, use the expression (2) corresponding to the value of the electric field at a point P as seen in the grap. X, 2. Ele) = Ken L ĵ (2)

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For the line of charge of length L, and uniform linear charge density > in the figure below, make an
analysis of what situation would be obtained if the field is measured very far from the line of charge
(this is z >> L). Determine the analytical expression for this situation, using expression (2) given in
this exercise. Also perform the analysis when now the length of the line becomes very large
compared to the distance at which the field is measured (this is L>> z). Again, use the expression
(2) corresponding to the value of the electric field at a point P as seen in the grap.
X,
2.
ElZ) =
Ken L
ĵ (2)
Transcribed Image Text:For the line of charge of length L, and uniform linear charge density > in the figure below, make an analysis of what situation would be obtained if the field is measured very far from the line of charge (this is z >> L). Determine the analytical expression for this situation, using expression (2) given in this exercise. Also perform the analysis when now the length of the line becomes very large compared to the distance at which the field is measured (this is L>> z). Again, use the expression (2) corresponding to the value of the electric field at a point P as seen in the grap. X, 2. ElZ) = Ken L ĵ (2)
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