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and Charged Cylindrical Shell ne 1 2 3 4 5 6 7 8 9 An infinite line of charge with linear density λ1-7.1 pC/m is positioned along the axis of a thick insulating shell of inner radius a -2.1 cm and outer radius b- 4 cm. The insulating shell is uniformly charged with a volume density of ρ-.599 pC/m 1) what is λ2, the linear charge density of the insulating shell? m Submit 2) What is Ex(P), the value of the x-component of the electric field at point P located a distance 7.4 cm along the y-axis from the line of charge? N/C Submit 3) What is EylP), the value of the y-component of the electric field at point P, located a distance 7.4 cm along the y-axis from the line of charge? N/C Submit
3) What is Ey(P), the value of the from the line of charge? C | Submit 4) What is E,(R), the value of the x-component of the electric field at point R, located a distance 1.05 cm along a line that makes an angle of 30° with the x-axis? N/C Submit that makes an angle of 30° with the x-axis? N/C Submit 6) For how many values of r: (2.1 cm er 4 cm) is the magnitude of the electric field equal to o? Submit 7) if we were to double λ1 a-14,2 pC/m), how would E, the magnitude of the electric field at point R change? OE would increase by more than a factor of two E increases by less than a factor of two E decreases by less than a factor of two E decreases by more than a factor of two Submit
7) If we were to double λι a1-14.2 c/m), how would E, the magnitude of the electric field at point R change? OE would double OE would increase by more than a factor of two OE increases by less than a factor of two OE decreases by less than a factor of two OE decreases by more than a factor of two 8) In order to produce an electric field of zero at some point r > 4 cm, how would Ay have to change? -Change its sign and increase its magnitude Change its sign and decrease its magnitude Keep its sign the same and increase its magnitude Keep its sign the same and decrease its magnitude Submit 9) Below is some space to write notes on this problem.
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