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A conductor in the shape of an equilateral triangle, whose sides are of length 0.784 m, carries a counter-clockwise 23.9 A current as shown in the figure above. The permeability of free space 4*3.14*10-7 T·m/A.
-What is the magnitude of the magnetic field at point P (at the center of the triangular loop) due to the current in the wire? Answer in units of μT.
-What is the direction of the magnetic field at point P due to the downward current in the left-hand side of the triangular wire?
-If this conductor is formed into a single circular turn and carries the same current, what is the magnitude of the magnetic field at the center? Answer in units of μT.
A sphere of radius R is uniformly charged to a total charge of Q. It is made to spin about an axis that passes through its center with an angular speed ω. Find the magnitude of the resulting magnetic field at the center of the sphere.
A resistor is in the shape of a cube, with each side of resistance R . Find the equivalent resistance between any two of its adjacent corners.
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