b) Draw and label an Amperian loop and use it to determine the magnitude of the magnetic field at
b) Draw and label an Amperian loop and use it to determine the magnitude of the magnetic field at
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Include I1 and I2 in answer.
![Consider a very long non-conducting cylinder has an inner cylinder with radius R₁ and uniform charge
density p₁, and a cylindrical shell with inner radius R₁, outer radius R2, and uniform charge density p2.
The tube moves to the right with a constant velocity parallel to its axis, so that the moving charge in the
inner cylinder creates a constant current I₁, and the moving charge in the outer cylinder creates a constant
current I2.
b) Draw and label an Amperian loop and use it to determine the magnitude of the magnetic field at a
distance R₁ <r < R2 from the center of the central axis of the rod.
O
B(R1 <r<R₂) =](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff6a53db3-c060-4093-8251-3e3936495142%2Ff0e7e92b-908a-4e93-a3ca-e18b0e5dc329%2F20h74t3_processed.png&w=3840&q=75)
Transcribed Image Text:Consider a very long non-conducting cylinder has an inner cylinder with radius R₁ and uniform charge
density p₁, and a cylindrical shell with inner radius R₁, outer radius R2, and uniform charge density p2.
The tube moves to the right with a constant velocity parallel to its axis, so that the moving charge in the
inner cylinder creates a constant current I₁, and the moving charge in the outer cylinder creates a constant
current I2.
b) Draw and label an Amperian loop and use it to determine the magnitude of the magnetic field at a
distance R₁ <r < R2 from the center of the central axis of the rod.
O
B(R1 <r<R₂) =
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