sive force of a distance 4.3 x 10 10 m. Calculate the charge of each. The Coulomb constant is 8.98755 × 109 Nm²/C². Answer in units of C. 024 GIOI 10.0 points An electron is accelerated by a constant elec- tric field of magnitude 280 N/C. Find the magnitude of the acceleration of the electron. The mass of an electron is 9.109 x 10-31 kg and the elemental charge is 1.6 x 107 C. 19 Answer in units of m/s2. 025 (part 2 of 2) 10.0 points Find the electron's speed after 5.81 x 10-8 s, assuming it starts from rest. Answer in units of m/s. C

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
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Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter23: Electric Forces
Section: Chapter Questions
Problem 29PQ: Two particles with charges q1 and q2 are separated by a distance d, and each exerts an electric...
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Question
Two identical positive charges exert a
sive force of 6.3 x 10-9 N when separated by
a distance 4.3 x 10-10
m.
Calculate the charge of each. The Coulomb
constant is 8.98755 × 10⁹ Nm²/C².
Answer in units of C.
024
Iti of
10.0 points
An electron is accelerated by a constant elec-
tric field of magnitude 280 N/C.
Find the magnitude of the acceleration of
the electron. The mass of an electron is
9.109 x 10-31 kg and the elemental charge
is 1.6 x 10-19 C.
Answer in units of m/s².
025 (part 2 of 2) 10.0 points
Find the electron's speed after 5.81 x 10-8 s,
assuming it starts from rest.
Answer in units of m/s.
D
Transcribed Image Text:Two identical positive charges exert a sive force of 6.3 x 10-9 N when separated by a distance 4.3 x 10-10 m. Calculate the charge of each. The Coulomb constant is 8.98755 × 10⁹ Nm²/C². Answer in units of C. 024 Iti of 10.0 points An electron is accelerated by a constant elec- tric field of magnitude 280 N/C. Find the magnitude of the acceleration of the electron. The mass of an electron is 9.109 x 10-31 kg and the elemental charge is 1.6 x 10-19 C. Answer in units of m/s². 025 (part 2 of 2) 10.0 points Find the electron's speed after 5.81 x 10-8 s, assuming it starts from rest. Answer in units of m/s. D
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