A constant intensity I current flows along the oz-axis. At t = 0, a material point of mass m and electric charge q was ejected in the z-axis direction with velocity Vo from a point K, which is up to the 0Z-axis. a) Indicate in which direction the load will deviate, explaining the reason (Fig.1). b) Let a constant 1 current flow along a line at a distance b to the oz-axis. Calculate the value of 11 for the charged particle q will move along a straight line. (Fig.2) a

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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A constant intensity I current flows along the oz-axis. At t = 0, a material point of mass m and electric
charge q was eiected in the z-axis direction with velocity VO from a point K, which is up to the oz-axis.
www
a) Indicate in which direction the load will deviate, explaining the reason (Fig.1).
b) Let a constant 11 current flow along a line at a distance b to the oz-axis. Calculate the value of
wwww
11 for the charged particle q will move along a straight line. (Fig.2)
Vr
Vote
a
a
Transcribed Image Text:A constant intensity I current flows along the oz-axis. At t = 0, a material point of mass m and electric charge q was eiected in the z-axis direction with velocity VO from a point K, which is up to the oz-axis. www a) Indicate in which direction the load will deviate, explaining the reason (Fig.1). b) Let a constant 11 current flow along a line at a distance b to the oz-axis. Calculate the value of wwww 11 for the charged particle q will move along a straight line. (Fig.2) Vr Vote a a
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