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Figured out the first two. Need the rest! An infinite line of charge with charge density...

Figured out the first two. Need the rest!

An infinite line of charge with charge density λ1 = -4 μC/cm is aligned with the y-axis

(a) What is Ex(P), the value of the x-component of the electric field produced by by the line of charge at point P which is located at (x,y) = (a,0), where a = 7.9 cm? Answer: -91139240.51

(b) What is Ey(P), the value of the y-component of the electric field produced by by the line of charge at point P which is located at (x,y) = (a,0), where a = 7.9 cm? Answer: 0

(c) A cylinder of radius a = 7.9 cm and height h = 8.7 cm is aligned with its axis along the y-axis as shown. What is the total flux Φ that passes through the cylindrical surface? Enter a positive number if the net flux leaves the cylinder and a negative number if the net flux enters the cylnder. Answer: ?

(d) Another infinite line of charge with charge density λ2 = 12 μC/cm parallel to the y-axis is now added at x = 3.95 cm as shown.

What is the new value for Ex(P), the x-component of the electric field at point P? Answer: ?

(e) What is the total flux Φ that now passes through the cylindrical surface? Enter a positive number if the net flux leaves the cylinder and a negative number if the net flux enters the cylnder. Answer: ?

(f) The initial infinite line of charge is now moved so that it is parallel to the y-axis at x = -3.95cm.

What is the new value for Ex(P), the x-component of the electric field at point P? Answer: ?

(g) What is the total flux Φ that now passes through the cylindrical surface? Enter a positive number if the net flux leaves the cylinder and a negative number if the net flux enters the cylnder. Answer: ?

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