015 A Van de Graaff generator is charged so that the electric field at its surface is 92000 N/C. What is the magnitude of the electric force on a proton released at the surface of the generator? The mass of a proton is 1.6726 x 10-27 kg and the fundamental charge is 1.602 × 10-1⁹ C. Answer in units of N.
015 A Van de Graaff generator is charged so that the electric field at its surface is 92000 N/C. What is the magnitude of the electric force on a proton released at the surface of the generator? The mass of a proton is 1.6726 x 10-27 kg and the fundamental charge is 1.602 × 10-1⁹ C. Answer in units of N.
Chapter5: Electric Charges And Fields
Section: Chapter Questions
Problem 94P: A proton enters the uniform electric field produced by the two charged plates shown below. The...
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Transcribed Image Text:015
A Van de Graaff generator is charged so that
the electric field at its surface is 92000 N/C.
What is the magnitude of the electric
force on a proton released at the surface
of the generator? The mass of a proton
is 1.6726 × 10-27 kg and the fundamental
charge is 1.602 × 10-19 C.
Answer in units of N.
016 (p
Find the proton's acceleration at this instant.
Answer in units of m/s².
017
Two alpha particles (helium nuclei), each
consisting of two protons and two neu-
trons, have an electrical potential energy of
6.08 x 10-19 J.
What is the distance between these par-
ticles at this time? The Coulomb constant
is 8.98755 × 10⁹ Nm²/C², the elemental
charge is 1.6021 x 10-19 C, and the accel-
eration due to gravity is 9.8 m/s².
Answer in units of m.
018 (F
An electron initially at rest moves from one
plate of a capacitor to another, through a
potential difference of 2006 V.
Find the speed with which the electron
strikes the positive plate. The electron's mass
is 9.109 x 10-31 kg and the elemental charge
is 1.602 x 10-19 C.
Answer in units of m/s.
019
If a proton similarly moves from the positive
plate to the negative plate, find the speed with
which the proton strikes the negative plate.
Answer in units of m/s.
020 (P
A pair of oppositely charged parallel plates is
separated by 5.6 mm. A potential difference
of 628 V exists between the plates.
What is the strength of the electric field
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