A plastic rod has been bent into a circle of radius R = 8.20 cm. It has a charge Q 1 = +4.20 pC uniformly distributed along one-quarter of its circumference and a charge Q 2 = –6 Q 1 uniformly distributed along the rest of the circumference (Fig. 24-44). With V = 0 at infinity, what is the electric potential at (a) the center C of the circle and (b) point P , on the central axis of the circle at distance D = 6.71 cm from the center? Figure 24-44 Problem 25.
A plastic rod has been bent into a circle of radius R = 8.20 cm. It has a charge Q 1 = +4.20 pC uniformly distributed along one-quarter of its circumference and a charge Q 2 = –6 Q 1 uniformly distributed along the rest of the circumference (Fig. 24-44). With V = 0 at infinity, what is the electric potential at (a) the center C of the circle and (b) point P , on the central axis of the circle at distance D = 6.71 cm from the center? Figure 24-44 Problem 25.
A plastic rod has been bent into a circle of radius R = 8.20 cm. It has a charge Q1 = +4.20 pC uniformly distributed along one-quarter of its circumference and a charge Q2 = –6Q1 uniformly distributed along the rest of the circumference (Fig. 24-44). With V = 0 at infinity, what is the electric potential at (a) the center C of the circle and (b) point P, on the central axis of the circle at distance D = 6.71 cm from the center?
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If an object is accelerating, it must be experiencing a nonzero ΣF
If an object is remaining at rest, it must be experiencing zero ΣỄ
If an object is moving, it must be experiencing a nonzero ΣỄ
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