An infinitely long charged wire produces an electric field of magnitude 4.47 103 N/C at a distance of 52.7 cm perpendicular to the wire. The direction of the electric field is toward the wire. (You may enter your calculation using scientific notation.) (a) What is the linear charge density on the wire? C/m (b) How many electrons per unit length are on the wire in electrons per meter?
An infinitely long charged wire produces an electric field of magnitude 4.47 103 N/C at a distance of 52.7 cm perpendicular to the wire. The direction of the electric field is toward the wire. (You may enter your calculation using scientific notation.) (a) What is the linear charge density on the wire? C/m (b) How many electrons per unit length are on the wire in electrons per meter?
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
Transcribed Image Text:An infinitely long charged wire produces an electric field of magnitude 4.47 103 N/C at a distance of 52.7 cm perpendicular to the
wire. The direction of the electric field is toward the wire. (You may enter your calculation using scientific notation.)
(a) What is the linear charge density on the wire?
C/m
(b) How many electrons per unit length are on the wire in electrons per meter?
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