A long cylindrical conductor of radius has a uniform charge density of f1:= 5.0cm °1:= 4.0 C m on it surface. This cylinder is surrounded by a concentric conducting cylinder of radius r2:= 8.0cm and uniform charge density of 2:=-2.5 on its surface 5) Find the Efield at a distance 'r" in between the two conductors r
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- 3- Consider a sphere with a radius of 0.1 m and a total charge of 1 mC distributed uniformly over the entire sphere. The center of the sphere is at the origin. I now hollow out a cavity of radius 0.04 m centered at x = 0.05m. What is the force on a 0.1 mC load located at x = 0.15m? At x = -0.15 m? What would be the force on this load if it were located at the center of the cavity?(10% ) Problem 7: An infinite conducting cylindrical shell of outer radius ri-0.10 m and inner radius r2 0.08 m initially carries a surface charge density 0.15 μC/m2 A thin wire with linear charge density 1.3 μC m s nserted along the shells' axis. The shell and the wire do not touch and these is no charge exchanged between them Banchi, Stephen - banchis3@students.rowan.edu @ theexpertta.com - tracking id: 2N74-2F-82-4A-BAAB-13083. In accordance with Expert TA's Terms of Service. copying this information to any solutions sharing website is strictly forbidden. Doing so may result in termination of your Expert TA Account. -a33% Part (a) What is the new surface charge density, in microcoulombs per square meter, on the inner surface of the cylindrical shell? -là 33% Part (b) What is the new surface charge density, in microcoulombs per square meter, on the outer surface of the cylindrical shell? 33% Part (c) Enter an expression for the magnitude of the electric field outside the cylinder (r…qa zero qc O Along the line joining q and qa O Along the line joining q and qb Along the line joining q and qc O Along the line joining q and qd (a) If qa = qd and qc = qb, the net force of the charge +q is Ozero qb O along the +x direction. O along the -x direction. O along the +y direction. O along the -y direction. qd (b) If qa and qb are positive, and qc and qd are negative, and the magnitude of all charges is the same, the net force on the positive charge +q is X
- Given a non-uniform SURFACE charge density 0= 0• sin 0 cos? p, oo = = constant, 0, oi e spherical coordinate angles: 11. Find the total "Q" placed on a sphere of radius "R" centered on the origin(a) Determine the electric field strength at a point 1.00 cm to the left of the middle charge shown in the figure below. (Enter the magnitude of the electric field only.) 6.00 μC 1.50 μC -2.00 μC N/C 3.00 cm -2.00 cm -Select--- Ⓡ (b) If a charge of -5.41 µC is placed at this point, what are the magnitude and direction of the force on it? magnitude N directionTwo particles, each with a charge +Q, that are located at the oppositecorner of a square of side d. Given Q = 9 nC and d = 0.5 m, what is the magnitude of electric field at point P? A) 611 N/CB) 324 N/CC) 458 N/CD) 432 N/CE) 764 N/C