An insulating rod having linear charge density 2-60.0 µC/m and linear mass density u -0.20 kg/m is released from rest in a uniform electric field E = 300 V/m directed perpendicular to the rod as shown In the Figure. The speed of the rod after it has traveled 3.0 m is %3D E a) 0.63 m/s, b) 1.04 m/s, c) 0.73 m/s d) 0.49 m/s. e) 0.85 m/s. f) 0.40 m/s.

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Chapter7: Electric Potential
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Problem 81P: A double charged ion is accelerated to an energy of 32.0 keV by the electric field between two...
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An insulating rod having linear
charge density 2-60.0 µC/m and
linear mass density u =0.20 kg/m
is released from rest in a uniform
electric field E = 300 V/m directed
perpendicular to the rod as shown
In the Figure. The speed of the rod
after it has traveled 3.0 m is
a) 0.63 m/s,
b) 1.04 m/s,
c) 0.73 m/s
d) 0.49 m/s,
A,
e) 0.85 m/s.
f) 0.40 m/s.
TOSHIBA
%24
4.
7 V
8A 9 9
YIU
R
Transcribed Image Text:An insulating rod having linear charge density 2-60.0 µC/m and linear mass density u =0.20 kg/m is released from rest in a uniform electric field E = 300 V/m directed perpendicular to the rod as shown In the Figure. The speed of the rod after it has traveled 3.0 m is a) 0.63 m/s, b) 1.04 m/s, c) 0.73 m/s d) 0.49 m/s, A, e) 0.85 m/s. f) 0.40 m/s. TOSHIBA %24 4. 7 V 8A 9 9 YIU R
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