1. A particle of charge -2.0 μC and mass 0.53 g is launched towards an infinite plane of uniform surface charge density, and moves along the straight line path indicated. Gravity cannot be neglected. Charge q launched towards plane with an initial velocity of 3.0 m/s 25 degrees below horizontal 9 3.0 m/s 25° down a. Calculate the magnitude of the electric field due to the plane of charge. b. Suppose the particle passes through a small hole in the plane of charge (i.e., the particle does not collide with the plane, but passes straight through it). Sketch the path of the particle after it passes through the hole. c. How far away from the plane of charge is the particle 2.0 s after it passes through the hole?

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Chapter1: Units, Trigonometry. And Vectors
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a. Calculate the magnitude of the electric field due to the plane of charge. b. Suppose the particle passes through a small hole in the plane of charge (i.e., the particle does not collide with the plane, but passes straight through it). Sketch the path of the particle after it passes through the hole. c. How far away from the plane of charge is the particle 2.0 s after it passes through the hole? Just want to show all work step by step
1. A particle of charge -2.0 μC and mass 0.53 g is
launched towards an infinite plane of uniform
surface charge density, and moves along the
straight line path indicated. Gravity cannot be
neglected.
Charge q launched towards plane with an initial
velocity of 3.0 m/s 25 degrees below horizontal
q. 25⁰
3.0 m/s
down
a. Calculate the magnitude of the electric field
due to the plane of charge.
b. Suppose the particle passes through a small
hole in the plane of charge (i.e., the particle
does not collide with the plane, but passes
straight through it). Sketch the path of the
particle after it passes through the hole.
c. How far away from the plane of charge is the
particle 2.0 s after it passes through the
hole?
Transcribed Image Text:1. A particle of charge -2.0 μC and mass 0.53 g is launched towards an infinite plane of uniform surface charge density, and moves along the straight line path indicated. Gravity cannot be neglected. Charge q launched towards plane with an initial velocity of 3.0 m/s 25 degrees below horizontal q. 25⁰ 3.0 m/s down a. Calculate the magnitude of the electric field due to the plane of charge. b. Suppose the particle passes through a small hole in the plane of charge (i.e., the particle does not collide with the plane, but passes straight through it). Sketch the path of the particle after it passes through the hole. c. How far away from the plane of charge is the particle 2.0 s after it passes through the hole?
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