Problem 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 o-5 nC/m² and radius Rdisk 11 m. The ring, located at x=d, has a uniform charge Gring -1 nC and radius Rring 9 m. The magnitude of the total electric field at the center of the ring (point A) is E-157 N/C Disk Ring A B d Find the charge of the disk чdiak Find the linear charge density of the ring Aring" Find the distance between the ring and the disk d
Problem 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 o-5 nC/m² and radius Rdisk 11 m. The ring, located at x=d, has a uniform charge Gring -1 nC and radius Rring 9 m. The magnitude of the total electric field at the center of the ring (point A) is E-157 N/C Disk Ring A B d Find the charge of the disk чdiak Find the linear charge density of the ring Aring" Find the distance between the ring and the disk d
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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
Transcribed Image Text:Problem 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 Edisk
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