Problem 1 Electrostatic Field A cylindrically symmetric charge distribution is given by: 1 Y = {POVP, 0, PV = ρ Σα p> a a X Cross-section: Please determine the electric field E at point P(p, q, z) for: p > a and pa.
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![Problem 1
Electrostatic Field
A cylindrically symmetric charge distribution is given by:
1 Y
= {PO√P,
PV =
ρ Σα
p> a
Cross-section:
a
X
D<a
Please determine the electric field E at point P(p, q, z) for: p > a and pa.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9305bed0-3f2e-4a1e-9a8e-bd460d9908d2%2F481adeb5-cf5b-4f43-896c-37f987952886%2Fu0qovxp.png&w=3840&q=75)
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- answer please vProblem 3 Consider a ring and a disk parallel to each other with their central axes along a common line. The disk, located at the origin (point O), has a uniform charge density σ =-5 nC/m² and radius Rdisk 11 m. The ring, located at x=d, has a uniform charge Gring -1 nc and radius Ring -9 m. The magnitude of the total electric field at the center of the ring (point A) is E-157 N/C Disk Ring d Ө Find the charge of the disk disk B Find the linear charge density of the ring Aring" Find the distance between the ring and the disk d= The total electric field vector Etat at x = d is in the direction. The total electric field vector Etotal at x=d+2 is in the direction. Find the electric field magnitude at point B located 9 m from point A, due to the ring only Ering 7. Find the electric field magnitude at x = 15 m from the origin, due to the disk only EdiskCould you please explain, why the electric field will be along - direction?
- ric Fields due to Point Charges An uneven dipole is located along the x-axis and centered on the origin as drawn. Its positive end has twice as much 2a 1 charge as its negative end. Each charge is located a distance a away from the origin along the x-axis. In terms of k, q, and a, find the electric field vector only at а POINT 1 and POINT 2. Your answers should be simplified 2 numerically until they are in the form: E = (0.123, -2.345), for example. -2a +29 2aDetermine the net charge inside a cube placed in a region with an electric field E = [6.00î + 7.00ĵ + ((2.80 m-¹)z + 4.00)Ê] N/C. Each side of the cube has a length L = 3.56 m. X What is the direction of the normal for each face of the cube? What is the flux through each face of the cube? Review Gauss's law. nCProblem #1 A hollow metal sphere of radius 4 cm has a charge of 20 nC distributed evenly on the entirety of the surface. Find the surface charge density (o).