Solved Problem 6 A Thin Plastic Rod Of Length 4 M Lies

Question: (6%) problem 12: a thin plastic rod of length d = 2.1 m lies along the x axis with its midpoint at the origin. the rod carries a uniform charge density of 1 = 6.5 nc m. the point p is located along the y axis at (0.y = 45 cm). 33% part (a) enter an expression for the electric potential at point p due to a small segment of the rod. (6%) problem 12: a thin plastic rod of length d=1.1 m lies along the x axis with its midpoint at the origin. the rod carries a uniform charge density of 1 = 9.5 nc m. the point pis located along the y axis at (0.y = 65 cm). (17%) problem 1: a thin plastic rod of length d= 1.1 m lies along the x axis with its midpoint at the origin. the rod carries a uniform charge density of 1 = 5.5 nc m. A plastic rod of length d = 2.5 m lies along the x axis with its midpoint at the origin.the rod carries a uniform linear charge density λ = 6.5 nc m. the point p is located on the postive y axis at a distance y 0 = 55 cm from the origin. (8%) problem 8: a thin plastic rod of length d= 1.5 m lies along the x axis with its midpoint at the origin. the rod carries a uniform charge density of 1 = 7.5 nc m. the point p is located along the y axis at (0y = 25 cm). 4 33% part (a) enter an expression for the electric potential at point p due to a small segment of the rod, of thickness.

Solved 1096 Problem 6 A Thin Rod Of Length L 2 4 M L

A thin plastic rod of length d = 0.65 m lies along the x axis with its midpoint at the origin.the rod carries a uniform charge density of λ = 6.5 nc m.the point p is located along the y axis at (0,y = 75 cm). Home work solutions 4 5 1. figure 24 42 shows a thin plastic rod of length l = 12.0 cm and uniform positive charge q = 56.1 fc lying on an x axis. with v = 0 at infinity, find the electric potential at point p 1 on the axis, at distance d = 2.50 cm from one end of the rod. figure 24 42 sol. The thin, uniformly charged rod shown in figure p25.63 has a linear charge density \lambda . find an expression for the electric potential at p . our discord hit 10k members! 🎉 meet students and ask top educators your questions.

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