1. 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.
1. 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.
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![1. 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.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3738e16a-10fd-4378-b4a3-b8733d2d5bb5%2Fb9bfece9-d6d5-431f-a1ee-f1e20a9b8c2e%2Fqmrdq8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. 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.
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