The figure below shows two wires, each carrying a current. The first wire consists of o circular arc of radius R = 2.5m and two equal radial lengths of L-0.75R, it carries current I = 25 A. The second wire is long and straight; it carriers current 12 13A, and it is at distance d-0.5R from the center of the arc. At the instant shown a snapshot of a charged particle q moving at velocity = (4.9i+2.9j)m/s toward the straight wire. Find the magnitude of the magnetic force on the charged particle due to the wires in terms of quo. Express your final result using one decimal place. Sexf 45° Answer:

University Physics Volume 2
18th Edition
ISBN:9781938168161
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Chapter12: Sources Of Magnetic Fields
Section: Chapter Questions
Problem 46P: The accompanying figure shows a cross-section of a long, hollow, cylindrical conductor of inner...
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The figure below shows two wires, each carrying a current. The first wire consists of o circular arc of radius
R = 2.5m and two equal radial lengths of L=0.75R; it carries current I = 25 A. The second wire is long
and straight; it carriers current 1₂ H 13A, and it is at distance d=0.5R from the center of the arc. At the
instant shown a snapshot of a charged particle q moving at velocity = (4.9i + 2.9j)m/s toward the
straight wire. Find the magnitude of the magnetic force on the charged particle due to the wires in terms of
quo. Express your final result using one decimal place.
J
Answer:
R
45°
Transcribed Image Text:The figure below shows two wires, each carrying a current. The first wire consists of o circular arc of radius R = 2.5m and two equal radial lengths of L=0.75R; it carries current I = 25 A. The second wire is long and straight; it carriers current 1₂ H 13A, and it is at distance d=0.5R from the center of the arc. At the instant shown a snapshot of a charged particle q moving at velocity = (4.9i + 2.9j)m/s toward the straight wire. Find the magnitude of the magnetic force on the charged particle due to the wires in terms of quo. Express your final result using one decimal place. J Answer: R 45°
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