1. A particle with a charge of -1.24 x 10* C is moving with instantaneous velocity v = (1.49 x 104) i + (-3.85 x 10+)j. What is the force exerted on this particle by a magnetic field (a) B = (1.40 T)î + (-2.30 T')k and (b) B = (-1,25 T')î + (2.00 T')f + (-3.50 T)k?

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Chapter19: Magnetism
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Problem 2P: (a) Find the direction of the force on a proton (a positively charged particle) moving through the...
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1. A particle with a charge of -1.24 x 10° C is moving with instantaneous velocity v =
x 10*) i + (-3.85 x 10+)j. What is the force exerted on this particle by a magnetic
(1.49
field (a) B = (1.40 T)î + (-2.30 T)k and (b) B = (-1.25 T)î + (2.00 T)j + (-3.50 T)k?
n4 m.
Transcribed Image Text:1. A particle with a charge of -1.24 x 10° C is moving with instantaneous velocity v = x 10*) i + (-3.85 x 10+)j. What is the force exerted on this particle by a magnetic (1.49 field (a) B = (1.40 T)î + (-2.30 T)k and (b) B = (-1.25 T)î + (2.00 T)j + (-3.50 T)k? n4 m.
1. A straight, vertical wire carries a current of 1.20 A downward in a region between the poles
of a large superconducting electromagnet, where the magnetic field has magnitude 0.588 T
and is horizontal. What are the magnitude and directlon of the magnetic force on a 1.00-cm
section of the wire that is in this uniform magnetic field, If the magnetic field direction is (a)
east; (b) south; (c) 30.0° S of W?
Transcribed Image Text:1. A straight, vertical wire carries a current of 1.20 A downward in a region between the poles of a large superconducting electromagnet, where the magnetic field has magnitude 0.588 T and is horizontal. What are the magnitude and directlon of the magnetic force on a 1.00-cm section of the wire that is in this uniform magnetic field, If the magnetic field direction is (a) east; (b) south; (c) 30.0° S of W?
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