Practice What is the direction of magnetic force acting on a positively charged particle moving to the right with velocity v at point P near a current carrying wire (current flowing to the right) as shown below? [Hint: First find the magnetic field produced by the wire using Simple RHR at point P, then use Force RHR!). P A. Into the screen B. Out of screen C. Upward D. Downward E. Zero magnetic force

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Chapter24: Magnetic Fields
Section: Chapter Questions
Problem 73A
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pls do both questions with explaanagtion thanks!!!

Practice
What is the direction of magnetic force acting on a positively
charged particle moving to the right with velocity v at point P near
a current carrying wire (current flowing to the right) as shown
below? [Hint: First find the magnetic field produced by the wire
using Simple RHR at point P, then use Force RHR!].
A. Into the screen
B. Out of screen
C. Upward
D. Downward
I
E. Zero magnetic force
Transcribed Image Text:Practice What is the direction of magnetic force acting on a positively charged particle moving to the right with velocity v at point P near a current carrying wire (current flowing to the right) as shown below? [Hint: First find the magnetic field produced by the wire using Simple RHR at point P, then use Force RHR!]. A. Into the screen B. Out of screen C. Upward D. Downward I E. Zero magnetic force
Practice
What is the direction of magnetic force acting on a negatively
charged particle moving to the right with velocity v at point P that
is located above the center of a current carrying loop (with
clockwise current) as shown below? [Hint: First find the magnetic
field produced by the wire loop using Simple (curling fingers) RHR at
point P, then use the open hand- Force RHR!].
b-
A. Into the screen
B. Out of screen
C. Upward
D. Downward
E. Zero magnetic force
Transcribed Image Text:Practice What is the direction of magnetic force acting on a negatively charged particle moving to the right with velocity v at point P that is located above the center of a current carrying loop (with clockwise current) as shown below? [Hint: First find the magnetic field produced by the wire loop using Simple (curling fingers) RHR at point P, then use the open hand- Force RHR!]. b- A. Into the screen B. Out of screen C. Upward D. Downward E. Zero magnetic force
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