Calculate the magnitude and direction of the force on a doubly ionized (++) carbon-14 isotope moving with velocity v = 1000i+500j - 500k [m/sec] through a magnetic field B = 2i − 4j + 3k [T]. Express your answer in standard unit vector form AND specifically give the magnitude. In the previous problem, calculate the vector acceleration of the carbon-14 atom as a result of this force. What is the magnitude of the acceleration?

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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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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Calculate the magnitude and direction of the force on a doubly ionized (++) carbon-14 isotope moving
with velocity v = 1000i + 500j – 500k [m/sec] through a magnetic field B = 2i − 4j + 3k [T]. Express
your answer in standard unit vector form AND specifically give the magnitude.
In the previous problem, calculate the vector acceleration of the carbon-14 atom as a result of this
force. What is the magnitude of the acceleration?
Transcribed Image Text:Calculate the magnitude and direction of the force on a doubly ionized (++) carbon-14 isotope moving with velocity v = 1000i + 500j – 500k [m/sec] through a magnetic field B = 2i − 4j + 3k [T]. Express your answer in standard unit vector form AND specifically give the magnitude. In the previous problem, calculate the vector acceleration of the carbon-14 atom as a result of this force. What is the magnitude of the acceleration?
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