A very long uniform line of charge with charge per unit length λ = +5.00 μC/m lies along the xx-axis, with its midpoint at the origin. A very large uniform sheet of charge is parallel to the xy-plane; the center of the sheet is at z = +0.600 m. The sheet has charge per unit area σ = +8.00 μC/m2, and the center of the sheet is at x=0, y=0. Point A is on the z-axis at z = +0.300 m, and point B is on the z-axis at z = -0.200 m.What is the potential difference VAB=VA−VB between points A and B?
A very long uniform line of charge with charge per unit length λ = +5.00 μC/m lies along the xx-axis, with its midpoint at the origin. A very large uniform sheet of charge is parallel to the xy-plane; the center of the sheet is at z = +0.600 m. The sheet has charge per unit area σ = +8.00 μC/m2, and the center of the sheet is at x=0, y=0. Point A is on the z-axis at z = +0.300 m, and point B is on the z-axis at z = -0.200 m.What is the potential difference VAB=VA−VB between points A and B?
Chapter6: Gauss's Law
Section: Chapter Questions
Problem 52P: A long copper cylindrical shell of inner radius 2 cm and outer radius 3 cm surrounds concentrically...
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A very long uniform line of charge with charge per unit length λ = +5.00 μC/m lies along the xx-axis, with its midpoint at the origin. A very large uniform sheet of charge is parallel to the xy-plane; the center of the sheet is at z = +0.600 m. The sheet has charge per unit area σ = +8.00 μC/m2, and the center of the sheet is at x=0, y=0. Point A is on the z-axis at z = +0.300 m, and point B is on the z-axis at z = -0.200 m.What is the potential difference VAB=VA−VB between points A and B?
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