1400 N C' between two charged metal plates at right angles to the field as shown in the diagram. The charge has been deflected vertically by 3.5 cm (0.035 m) by the time it leaves the plates. Positive charged Particle KE=131 J 3.5 cm deflection
1400 N C' between two charged metal plates at right angles to the field as shown in the diagram. The charge has been deflected vertically by 3.5 cm (0.035 m) by the time it leaves the plates. Positive charged Particle KE=131 J 3.5 cm deflection
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![20 A positive 1.2 C charge with a kinetic energy of 131 J enters an electric field of
1400 N C1 between two charged metal plates at right angles to the field as
shown in the diagram. The charge has been deflected vertically by 3.5 cm
(0.035 m) by the time it leaves the plates.
Positive charged
Particle
KE=131 J
3.5 cm
deflection
The kinetic energy of the charge as it leaves the plates is closest to:
(A) 58.8 J
(B) 72.2 J
(C) 180 J
(D) 190 J](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F19df6fa7-a231-4a18-87c8-ed1b80991b58%2F047e5695-a71b-4737-bb50-6328b7b9809d%2Fdrvcwdg_processed.png&w=3840&q=75)
Transcribed Image Text:20 A positive 1.2 C charge with a kinetic energy of 131 J enters an electric field of
1400 N C1 between two charged metal plates at right angles to the field as
shown in the diagram. The charge has been deflected vertically by 3.5 cm
(0.035 m) by the time it leaves the plates.
Positive charged
Particle
KE=131 J
3.5 cm
deflection
The kinetic energy of the charge as it leaves the plates is closest to:
(A) 58.8 J
(B) 72.2 J
(C) 180 J
(D) 190 J
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