*10. | An electron is a subatomic particle (m = 9.11 × 10-3' kg) that is subject to electric forces. An electron moving in the +x direction accelerates from an initial velocity of +5.40 × 10° m/s to a final velocity of +2.10 × 10° m/s while traveling a distance of 0.038 m. The elec- tron's acceleration is due to two electric forces parallel to the x axis: F, = +7.50 × 10-1" N, and F2, which points in the –x direction. Find the magnitudes of (a) the net force acting on the electron and (b) the electric force F2.

icon
Related questions
Question
*10.
| An electron is a subatomic particle (m = 9.11 × 10-3' kg) that
is subject to electric forces. An electron moving in the +x direction
accelerates from an initial velocity of +5.40 × 10° m/s to a final velocity
of +2.10 × 10° m/s while traveling a distance of 0.038 m. The elec-
tron's acceleration is due to two electric forces parallel to the x axis:
F, = +7.50 × 10-1" N, and F2, which points in the –x direction. Find
the magnitudes of (a) the net force acting on the electron and (b) the
electric force F2.
Transcribed Image Text:*10. | An electron is a subatomic particle (m = 9.11 × 10-3' kg) that is subject to electric forces. An electron moving in the +x direction accelerates from an initial velocity of +5.40 × 10° m/s to a final velocity of +2.10 × 10° m/s while traveling a distance of 0.038 m. The elec- tron's acceleration is due to two electric forces parallel to the x axis: F, = +7.50 × 10-1" N, and F2, which points in the –x direction. Find the magnitudes of (a) the net force acting on the electron and (b) the electric force F2.
Expert Solution
trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 4 steps

Blurred answer