A thin spherical shell with radius R1 = 4.00 cm is concentric with a larger thin spherical shell with radius R2 = 7.00 cm. Both shells are made of insulating material. The smaller shell has charge q1 =+6.00 nC distributed uniformly over its surface, and the larger shell has charge q2=-9.00 nC distributed uniformly over its surface. Take the electric potential to be zero at an infinite distance from both shells. For related problemsolving tips and strategies, you may want to view a Video Tutor Solution of Potential vsurface and field magnitude esurface at the surface. What is the electric potential due to the two shells at the following distance from their common center. r = 0? Express your answer with the appropriate units. ? V = Value Units What is the electric potential due to the two shells at the following distance from their common center. r = 5.00 cm? Express your answer with the appropriate units. V = Value Units What is the electric potential due to the two shells at the following distance from their common center. r = 8.00 cm? Express your answer with the appropriate units. ? V = Value Units

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Chapter1: Units, Trigonometry. And Vectors
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A thin spherical shell with radius R1 = 4.00 cm is
concentric with a larger thin spherical shell with radius
R2 = 7.00 cm. Both shells are made of insulating
material. The smaller shell has charge qi =+6.00 nC
distributed uniformly over its surface, and the larger
shell has charge q2
over its surface. Take the electric potential to be zero at
an infinite distance from both shells.
9.00 nC distributed uniformly
For related problemsolving tips and strategies, you may
want to view a Video Tutor Solution of Potential vsurface
and field magnitude esurface at the surface.
What is the electric potential due to the two shells at the following distance from their common center: r = 0?
Express your answer with the appropriate units.
V =
Value
Units
What is the electric potential due to the two shells at the following distance from their common center: r = 5.00 cm?
Express your answer with the appropriate units.
HÁ
?
V =
Value
Units
What is the electric potential due to the two shells at the following distance from their common center: r = 8.00 cm?
Express your answer with the appropriate units.
?
V =
Value
Units
What is the magnitude of the potential difference between the surfaces of the two shells?
Express your answer with the appropriate units.
AV =
Value
Units
Which shell is at higher potential: the inner shell or the outer shell?
O The inner shell is at higher potential.
O The outer shell is at higher potential.
Transcribed Image Text:A thin spherical shell with radius R1 = 4.00 cm is concentric with a larger thin spherical shell with radius R2 = 7.00 cm. Both shells are made of insulating material. The smaller shell has charge qi =+6.00 nC distributed uniformly over its surface, and the larger shell has charge q2 over its surface. Take the electric potential to be zero at an infinite distance from both shells. 9.00 nC distributed uniformly For related problemsolving tips and strategies, you may want to view a Video Tutor Solution of Potential vsurface and field magnitude esurface at the surface. What is the electric potential due to the two shells at the following distance from their common center: r = 0? Express your answer with the appropriate units. V = Value Units What is the electric potential due to the two shells at the following distance from their common center: r = 5.00 cm? Express your answer with the appropriate units. HÁ ? V = Value Units What is the electric potential due to the two shells at the following distance from their common center: r = 8.00 cm? Express your answer with the appropriate units. ? V = Value Units What is the magnitude of the potential difference between the surfaces of the two shells? Express your answer with the appropriate units. AV = Value Units Which shell is at higher potential: the inner shell or the outer shell? O The inner shell is at higher potential. O The outer shell is at higher potential.
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