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- What is a proton? Where does it normally exist in an atom, and what is its charge?Show that electric potential for a shell whose radius is R, has charge q uniformly distributed on its entire surface, is the same as electric potential for a conductor (Solid) has radius R and charge q. Note: Make diagram Explain completly step by stepThere is an arrangement of three charges distributed along a perimeter of a circumference, the charge q1, is located at the point r1 = r with an angle of 900, q2, is located at the point r2 = r with an angle of 1500, q3, is located at the point r3 = r with an angle of 300. Calculate the electric potential on charge q1. Consider that the charges q1, q2 and q3 are equal to q.
- Determine the potential difference, in V, in moving a charge against the electric field due to a point charge 7 mC at (1, 1, 1) m from A(-4, -4, -4) m to B(-2, -4, -2) m.Find the electric potential at point P at a distance L = 30 cm from the end of a bar charged with a charge Q = 9μC and of the same length L,There is an arrangement of three charges distributed along a perimeter of a circumference, the charge q1, is located at the point r1 = r with an angle of 900, q2, is located at the point r2 = r with an angle of 1500, q3, is located at the point r3 = r with an angle of 300. Calculate the electric field on charge q1. Consider that the charges q1, q2 and q3 are equal to q.
- Q1) A charge q = 2µC is placed at a = 0.1m from an infinite grounded conducting plane sheet. Find;i) The total charge induced on the sheet.ii) The force on the charge q.iii) The total work required to remove the charge slowly to an infinite distance from the plane.Two 1.20 m non-conductive wires form a right angle. A segment has +2.50 µC of charge, distributed evenly along its length; while the other segment has -2.50 µC of charge, distributed uniformly along its length, as illustrated in the figure. Find the magnitude and direction of the electric field produced by these wires at point P, which is 60.0 cm from each wire.Find the total current flowing (in ampere) in a cylindrical conductor (solid wire) 1 meter long and a diameter of 1mm. Given also that its charge density (De) is 1029 carriers/m3 and its carrier velocity (u) is 19.9x10-6 m/s.
- Determine the potential difference, in V, in moving a charge from A(-4, 2, 1) m to B(-2, 4, -4) m against the electric field due to an infinite sheet charge of density 9 nC/m2 at x = 3 m.A sphere has radius of R. The sphere also has a uniform charge of 4Q. There is a point charge of -Q at sphere's center. Derive an equation for E at points where the radius is less then R.Four equal point charges q1 = q2 = q3 = q4 = −1μC, are located as shown in the figure below. (a) Calculate the net force exerted on the charge q4, which is located midway between q1 and q3. (b) Calculate the magnitude and direction of thenet force on the charge q2.