5 GO An electron moves through a uniform magnetic field given by B = B¸î + (3.0B). At a particular instant, the electron has ve- locity v = (2.01 + 4.0ĵ) m/s and the magnetic force acting on it is (64 X 10-19 N)k Find B
5 GO An electron moves through a uniform magnetic field given by B = B¸î + (3.0B). At a particular instant, the electron has ve- locity v = (2.01 + 4.0ĵ) m/s and the magnetic force acting on it is (64 X 10-19 N)k Find B
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Question
For problem 5, calculate the x component of
the magnetic field in Tesla using a velocity in m/s
of 2.0 i + 2.4 j. (5 sig figs)

Transcribed Image Text:5 GO An electron moves through a uniform magnetic field given
by B = B¸î + (3.0B.)ĵ. At a particular instant, the electron has ve-
locity v
(2.01 + 4.0)) m/s and the magnetic force acting on it is
(6.4 × 10-19 N)k. Find B¸.
=

Transcribed Image Text:QUESTION 1
For problem 28.5, calculate the x component of
the magnetic field in Tesla using a velocity in m/s
of 2.0 i + 2.4 j. 5 sig. figs.
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