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Q: Needs Complete solution with 100 % accuracy.
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- Subject: Ideal Conductors and Capacitors An infinite conducting plane has a hemispherical bump on it with radius R. A point charge Q is located a distance R above the top of the hemisphere, as shown in the figure below. a. Determine the location of the image charges needed to make the electric field perpendicular to the plane and the hemisphere at all points.b. Suppose that the distance A from the given charge Q to the plane is much larger than the radius R of the hemisphere. Show that in this limit, the surface charge density at the top of the hemisphere is 3 times as large as the surface charge density would be on the plane if we simply had a flat plane without the hemispherical bump.What is the net electric field at point P in the figure to the right? 4.0- P N 3.02a line of
- Inner sphere radius: R1 Shell radii: R2 and R31. If I draw a Gaussian surface surrounding the nucleus of an Oxygen atom, with an atomic number of 8, what is the electric flux through that surface? If I increase the size of that surface to enclose the entire atom, i.e., include the electrons too, what is the electric flux through the surface? What is the electric flux if the Oxygen atom oxidizes to 0²-?I need help with this problem, my professor won't help me and I need help. Can you help me with A and B and can you label which one is A and B