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Please help me with this problem. I don't understand how to set it up and how to calculate the solutions.

An infinitely long solid insulating cylinder of radius a 3.3 cm is positioned with its symmetry axis along the z-axis as shown. The cylinder is uniformly charged with a charge density ρ = 43 HC/m3. Concentric with the cylinder is a cylindrical conducting shell of inner radius b 12.6 cm, and outer radius c-15.6 cm. The conducting shell has a linear charge density λ -0.35uC/m. R(0,d) (d, d) 1) What is Ey(R), the y-component of the electric field at point R, located a distance d 58 cm from the origin along the y-axis as shown? -6)/(2*3.14*.58*8.85E-12)州N/C Submit Your submissions: | ((43E-6)*(3.14)(.0332))+((-35E-6)/(2°3.14.588.85E-12)-(-35E-6.03) ㄨ Computed value: -10857.6824733223 Submitted: Monday, February 5 at 12:45 PM Feedback: It looks like you have correctly calculated the y-component of the electric field at point R produced by the conducting shell. You need to add the contribution from the insulating cylinder.

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