(b) If potential between the two wires is 10 V when ri = a and 12 = B, determine; i. 12 in terms of a, ß and r¡ when V = 5 V ii. r2 in terms of a, ß and ri when V = 2 V as well as the work required to move point charge q C from reference to r2. (c) Determine electrostatic energy density between the wires.
(b) If potential between the two wires is 10 V when ri = a and 12 = B, determine; i. 12 in terms of a, ß and r¡ when V = 5 V ii. r2 in terms of a, ß and ri when V = 2 V as well as the work required to move point charge q C from reference to r2. (c) Determine electrostatic energy density between the wires.
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![(b) If potential between the two wires is 10 V when ri = a and
12 = B, determine;
i.
T2 in terms of a, ß and ri when V = 5 V
r2 in terms of a, ß and ri when V = 2 V as well as the
work required to move point charge q C from reference
ii.
to r2.
(c) Determine electrostatic energy density between the wires.
ri
r2
-Pi
+Pi
Figure Q.2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5779d871-af39-45b4-8ad0-cfbe84ca6f7e%2Fc612df81-eb11-41c8-af42-f37a789f6899%2Feiicgn6_processed.png&w=3840&q=75)
Transcribed Image Text:(b) If potential between the two wires is 10 V when ri = a and
12 = B, determine;
i.
T2 in terms of a, ß and ri when V = 5 V
r2 in terms of a, ß and ri when V = 2 V as well as the
work required to move point charge q C from reference
ii.
to r2.
(c) Determine electrostatic energy density between the wires.
ri
r2
-Pi
+Pi
Figure Q.2
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