1. Of the three scenarios described below, pick the ONE where Ampere's Law can be used, and find B OUTSIDE the object. Show all your work for full credit. a. A very long cylindrical wire of radius a carries a current density J = Jos 2. The wire is not magnetizable. b. A very long cylindrical wire of radius a carries a current density J magnetizable. = Jo sin o 2. The wire is not c. A sphere with surface charge density is rotating with angular velocity w.

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1. Of the three scenarios described below, pick the ONE where Ampere's Law can be used, and find B
OUTSIDE the object. Show all your work for full credit.
a. A very long cylindrical wire of radius a carries a current density J = Jos 2. The wire is not
magnetizable.
b. A very long cylindrical wire of radius a carries a current density J
magnetizable.
=
Jo sin o 2. The wire is not
c. A sphere with surface charge density is rotating with angular velocity w.
Transcribed Image Text:1. Of the three scenarios described below, pick the ONE where Ampere's Law can be used, and find B OUTSIDE the object. Show all your work for full credit. a. A very long cylindrical wire of radius a carries a current density J = Jos 2. The wire is not magnetizable. b. A very long cylindrical wire of radius a carries a current density J magnetizable. = Jo sin o 2. The wire is not c. A sphere with surface charge density is rotating with angular velocity w.
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