ARE WE REAL 29. An electron is travelling at 100 km/s parallel to a long straight horizontal conductor a distance of 3.00 cm from the conductor. A current of 12.0 A runs through the wire as the electron travels parallel to it, in the same direction as the electron's velocity. Find the strength of the external electric field that will prevent the elec- tron from deviating from its original path. Express your answer in V/m. n
ARE WE REAL 29. An electron is travelling at 100 km/s parallel to a long straight horizontal conductor a distance of 3.00 cm from the conductor. A current of 12.0 A runs through the wire as the electron travels parallel to it, in the same direction as the electron's velocity. Find the strength of the external electric field that will prevent the elec- tron from deviating from its original path. Express your answer in V/m. n
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
Transcribed Image Text:MYMIVIVH uns w pui SIVIN IN WEHE
saw piwa ISMIMIN
29. An electron is travelling at 100 km/s parallel to a
long straight horizontal conductor a distance of 3.00 cm
from the conductor. A current of 12.0 A runs through
the wire as the electron travels parallel to it, in the same
direction as the electron's velocity. Find the strength
of the external electric field that will prevent the elec-
tron from deviating from its original path. Express your
answer in V/m.
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