A spherical conductor shown in the figure with a radius of 1 cm, will be simulated...
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A spherical conductor shown in the figure with a radius of 1 cm, will be simulated using two point charges. The voltage of 10 kV is applied to this conductor. (so-8.854x10-12) Determine the potential and electric field at the point P(3,3), using Charge Simulation Method. (30 P) P(3,3) em Center of sphere : o (0, 2) m Simulated charge 1:4(-0.5,1.5) m Simulated charge 2:q, (0.6,2.6) m Radius of sphere: r=1em U- 10 kv V=0 A spherical conductor shown in the figure with a radius of 1 cm, will be simulated using two point charges. The voltage of 10 kV is applied to this conductor. (so-8.854x10-12) Determine the potential and electric field at the point P(3,3), using Charge Simulation Method. (30 P) P(3,3) em Center of sphere : o (0, 2) m Simulated charge 1:4(-0.5,1.5) m Simulated charge 2:q, (0.6,2.6) m Radius of sphere: r=1em U- 10 kv V=0
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