A proton is acted on by a uniform electric field of magnitude 323 N/C pointing in the negative x direction. The particle is initially at rest. (a) In what direction will the charge move? -Select-- (b) Determine the work done by the electric field when the particle has moved through a distance of 2.45 cm from its initial position. (c) Determine the change in electric potential energy of the charged particle. (d) Determine the speed of the charged particle. m/s
A proton is acted on by a uniform electric field of magnitude 323 N/C pointing in the negative x direction. The particle is initially at rest. (a) In what direction will the charge move? -Select-- (b) Determine the work done by the electric field when the particle has moved through a distance of 2.45 cm from its initial position. (c) Determine the change in electric potential energy of the charged particle. (d) Determine the speed of the charged particle. m/s
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![A proton is acted on by a uniform electric field of magnitude 323 N/C pointing in the negative x direction. The particle is initially
at rest.
(a) In what direction will the charge move?
--Select---
(b) Determine the work done by the electric field when the particle has moved through a distance of 2.45 cm from its
initial position.
(c) Determine the change in electric potential energy of the charged particle.
(d) Determine the speed of the charged particle.
m/s](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F49a3f886-5843-4971-a881-41b2ba018dcc%2F64e3f2c1-4d38-4a27-96be-96f5320bd671%2F8cuup8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A proton is acted on by a uniform electric field of magnitude 323 N/C pointing in the negative x direction. The particle is initially
at rest.
(a) In what direction will the charge move?
--Select---
(b) Determine the work done by the electric field when the particle has moved through a distance of 2.45 cm from its
initial position.
(c) Determine the change in electric potential energy of the charged particle.
(d) Determine the speed of the charged particle.
m/s
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