R(t l) A in spherical shell made of plastic carries a unifermly distrituted negative charge de-10 coulembs (indicated as -Q in the diagram). Twoe large thin disks made of glass carry uniformly distributed positive and negative charges 1.tees coulembs and 1.ie-0s coulembs (indicated as and in the figure). The radius R of the plastic spherical shelis mm, and the radius R of the glass disks is4 meters. The istance d from the center of the spherical shell to the positive disk is 17 mm (a) Find the potential eference V Vy. Point isat the center of the plastic sphere, and point 2is just eutside the sphere. 173 x vots (b) Find the potential efference Vy Vy Point 2 is just below the sphere, and point 3is right beside the positive glass disk. 45 x vots
R(t l) A in spherical shell made of plastic carries a unifermly distrituted negative charge de-10 coulembs (indicated as -Q in the diagram). Twoe large thin disks made of glass carry uniformly distributed positive and negative charges 1.tees coulembs and 1.ie-0s coulembs (indicated as and in the figure). The radius R of the plastic spherical shelis mm, and the radius R of the glass disks is4 meters. The istance d from the center of the spherical shell to the positive disk is 17 mm (a) Find the potential eference V Vy. Point isat the center of the plastic sphere, and point 2is just eutside the sphere. 173 x vots (b) Find the potential efference Vy Vy Point 2 is just below the sphere, and point 3is right beside the positive glass disk. 45 x vots
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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Question
B please
![-Q2
Rj << R2
3.
+Q2
R2 (not to scale)
A thin spherical shell made of plastic carries a uniformly distributed negative charge -6e-10 coulombs (indicated as -Q, in the diagram). Two large thin disks made of glass carry uniformly distributed positive and negative charges 1.1e-05 coulombs and -1.1e-05 coulombs (indicated as +Q, and -Q, in the figure). The radius R, of the plastic spherical shell is 8 mm, and the radius R, of the glass disks is 4 meters. The
distance d from the center of the spherical shell to the positive disk is 17 mm.
(a) Find the potential difference V, - V,. Point 1 is at the center of the plastic sphere, and point 2 is just outside the sphere.
|-173 X volts
(b) Find the potential difference V, - V3. Point 2 is just below the sphere, and point 3 is right beside the positive glass disk.
|-625
X volts
Remember that the sign of the potential difference is important.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd53b5d21-36fa-4ee2-932f-fd40dc0982c5%2Fcf000002-da90-48fb-8656-9db764d7cb7d%2F2hbrn48_processed.png&w=3840&q=75)
Transcribed Image Text:-Q2
Rj << R2
3.
+Q2
R2 (not to scale)
A thin spherical shell made of plastic carries a uniformly distributed negative charge -6e-10 coulombs (indicated as -Q, in the diagram). Two large thin disks made of glass carry uniformly distributed positive and negative charges 1.1e-05 coulombs and -1.1e-05 coulombs (indicated as +Q, and -Q, in the figure). The radius R, of the plastic spherical shell is 8 mm, and the radius R, of the glass disks is 4 meters. The
distance d from the center of the spherical shell to the positive disk is 17 mm.
(a) Find the potential difference V, - V,. Point 1 is at the center of the plastic sphere, and point 2 is just outside the sphere.
|-173 X volts
(b) Find the potential difference V, - V3. Point 2 is just below the sphere, and point 3 is right beside the positive glass disk.
|-625
X volts
Remember that the sign of the potential difference is important.
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