A particle of mass m1=43×10−9kg and charge q1=48μC is moving in a uniform magnetic field along +x axis with speed 67×105m/s. The figure shows the axis direction and direction of the magnetic field. Question: If we apply an electric field along the +y axis then what will be the path of the particle? Explain your answer briefly. Consider the new mass of the particle if needed.

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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A particle of mass m1=43×10−9kg and charge q1=48μC is moving in a uniform magnetic field along +x axis with speed 67×105m/s. The figure shows the axis direction and direction of the magnetic field.

Question: If we apply an electric field along the +y axis then what will be the path of the particle? Explain your answer briefly. Consider the new mass of the particle if needed.

uniform B field
Transcribed Image Text:uniform B field
Expert Solution
Step 1

Given:

1. Mass of particle = m = 43×10-9 kg2. Charge of particle = q = 48 μC=48×10-6 C3. Velocity of particle = v = 67 ×105 i^ m/s4. Magnetic field = Bk^ T

 If we apply an electric field along the +y axis then what will be the path of the particle?

Suppose the electric field is Ej^ N/C

 

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