Q3) A spherical conductor shown in the figure with a radius of 2 cm, will be simulated using two point charges. The voltage of 5 kV is applied to this conductor. Determine the potential and electric field at the point P(2,5), using Charge Simulation Method. (ɛ"Co=8.854x1012)

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Electrical Engineering - High voltage system EENG451 Please solve the question quickly
Q3) A spherical conductor shown in the figure with a radius of 2 cm, will be simulated using two point charges. The
voltage of 5 kV is applied to this conductor. Determine the potential and electric field at the point P(2,5) , using
Charge Simulation Method.
(ɛ=£o=8.854×10-12)
Center of shpere:0 (0 , 3) cm
P(2,5) cm
Simulated charge1:q; (-0.8 , 3) «m
Simulated charge 2:q; (1.7 , 3) m
Radius of sphere: r=2 cm
U=5 kV
V= 0
Transcribed Image Text:Q3) A spherical conductor shown in the figure with a radius of 2 cm, will be simulated using two point charges. The voltage of 5 kV is applied to this conductor. Determine the potential and electric field at the point P(2,5) , using Charge Simulation Method. (ɛ=£o=8.854×10-12) Center of shpere:0 (0 , 3) cm P(2,5) cm Simulated charge1:q; (-0.8 , 3) «m Simulated charge 2:q; (1.7 , 3) m Radius of sphere: r=2 cm U=5 kV V= 0
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