A potassium ion (K) moves in the xy-plane with a speed of 2.30 x 10 m/s. If a constant magnetic field is directed along the z-axis with a magnitude of 3.25 x 10 T, find the magnitude of the magnetic force acting on the lon and the magnitude of the lon's acceleration. HINT (a) the magnitude (in N) of the magnetic force acting on the lon 0000000000000✔✔ The magnetic force has magnitude fqvil only when the particle's velocity is perpendicular to the magnetic field. In general, Fqvisin(0) where is the angle between 1 and v. N (b) the magnitude (in m/s2) of the lon's acceleration 18830000 x m/s²

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter22: Magnetic Forces And Magnetic Fields
Section: Chapter Questions
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A potassium ion (K) moves in the xy-plane with a speed of 2.30 x 10 m/s. If a constant magnetic field is directed along the z-axis with a magnitude of 3.25 x 10 T, find
the magnitude of the magnetic force acting on the ion and the magnitude of the lon's acceleration,
HINT
(a) the magnitude (in N) of the magnetic force acting on the lon
0000000000000✔✔ The magnetic force has magnitude fqvil only when the particle's velocity is perpendicular to the magnetic field. In general, F-qvisin(0) where is the
angle between 1 and v. N
(b) the magnitude (in m/s2) of the lon's acceleration
18830000
x m/s²
Transcribed Image Text:A potassium ion (K) moves in the xy-plane with a speed of 2.30 x 10 m/s. If a constant magnetic field is directed along the z-axis with a magnitude of 3.25 x 10 T, find the magnitude of the magnetic force acting on the ion and the magnitude of the lon's acceleration, HINT (a) the magnitude (in N) of the magnetic force acting on the lon 0000000000000✔✔ The magnetic force has magnitude fqvil only when the particle's velocity is perpendicular to the magnetic field. In general, F-qvisin(0) where is the angle between 1 and v. N (b) the magnitude (in m/s2) of the lon's acceleration 18830000 x m/s²
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