Two uncharged conducting spheres of radius r, and r, = 2m are placed long enough apart and connected by a wire. The sphere of radius r, is under the electron rain only. Electrons move towards the sphere of radius r,, with the velocity ve = 100m/s. Find the maximum charge that can be found on the sphere of radius r2. mẹ = 9,11x10-3'kg, 9x10° (Nm 9e = 1,6x10-1ºc, ke= %3D %3D

University Physics Volume 2
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Author:OpenStax
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Chapter6: Gauss's Law
Section: Chapter Questions
Problem 68P: Two parallel conducting plates, each of cross-sectional area 400 cm2, are 2.0 cm apart and...
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Two undharged conducting spheres of radius r, and r, = 2m are placed long
enough apart and connected by a wire. The sphere of radius r, is under the
electron rain only. Electrons move towards the sphere of radius r,, with the
velocity ve = 100m/s. Find the maximum charge that can be found on the
sphere of radius r2. me = 9,11x10-31kg,
9x10° ()
9. = 1,6x10-1ºC, ke =
a) 6,33x10-18C
b) 2,53x10-17C
c) 5,69x10-17C
d) 1,01x10-1°C
e) 1,58x10-16C
Transcribed Image Text:wire Two undharged conducting spheres of radius r, and r, = 2m are placed long enough apart and connected by a wire. The sphere of radius r, is under the electron rain only. Electrons move towards the sphere of radius r,, with the velocity ve = 100m/s. Find the maximum charge that can be found on the sphere of radius r2. me = 9,11x10-31kg, 9x10° () 9. = 1,6x10-1ºC, ke = a) 6,33x10-18C b) 2,53x10-17C c) 5,69x10-17C d) 1,01x10-1°C e) 1,58x10-16C
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