TEL Evaluate the magnitude of the net magnetic force on a current loop of 1₁7.3R, 1₂ = 7.8R, and r = 2.7R in an external magnetic field B = 6.3 B,(-i) in terms of B. RI. Express your answer using two decimal places. Please note that a current of 41 runs on the wire. 12 r 0 41
TEL Evaluate the magnitude of the net magnetic force on a current loop of 1₁7.3R, 1₂ = 7.8R, and r = 2.7R in an external magnetic field B = 6.3 B,(-i) in terms of B. RI. Express your answer using two decimal places. Please note that a current of 41 runs on the wire. 12 r 0 41
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Question
![■
■
ay, 28 May 2023, 2:02 PM
LIL
4 secs
M
■
WA
45 Mag KRI
Evaluate the magnitude of the net magnetic force on a current loop of
THE
2
= 7.3R, 1₂ = 7.8R, and r = 2.7 R in an external magnetic field
B
B = 6.3 B,(-i) in terms of B. RI. Express your answer using two
decimal places. Please note that a current of 41 runs on the wire.
1₂
IT
FIZ
Answer: 264.60
13
0
SE
===
162
I
I
*Y
►X
Two identical positively-charged particles are moving in circles within a
uniform magnetic field. Particle A has a radius that is one-half that of
concerning these
ments](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0694005b-3cc2-452c-9b75-517869d0a9bb%2Fb4fdee0d-ef25-4836-819c-80de7bca4109%2Fyerhije_processed.jpeg&w=3840&q=75)
Transcribed Image Text:■
■
ay, 28 May 2023, 2:02 PM
LIL
4 secs
M
■
WA
45 Mag KRI
Evaluate the magnitude of the net magnetic force on a current loop of
THE
2
= 7.3R, 1₂ = 7.8R, and r = 2.7 R in an external magnetic field
B
B = 6.3 B,(-i) in terms of B. RI. Express your answer using two
decimal places. Please note that a current of 41 runs on the wire.
1₂
IT
FIZ
Answer: 264.60
13
0
SE
===
162
I
I
*Y
►X
Two identical positively-charged particles are moving in circles within a
uniform magnetic field. Particle A has a radius that is one-half that of
concerning these
ments
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