A charge of -25 µC is distributed uniformly over the surface of a spherical conductor of radius 11.0 cm. Determine the electric field (in N/C) due to this charge at the following distances from the center of the sphere. (Enter the radial component of the electric field.) (a) 7.0 cm E - (0 nc)P (b) 8.0 cm E - (0 (c) 22.0 cm ]× wc)*
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- A flat surface of area 3.10 m² is rotated in a uniform electric field of magnitude E = 6.65 x 105 N/C. (a) Determine the electric flux through this area when the electric field is perpendicular to the surface. N. m²/c (b) Determine the electric flux through this area when the electric field is parallel to the surface. N. m²/cWhat is the magnitude of the electric field 15 mm from the center? Give the numerical value when calculated in units of N/C.State what is meant by electric field strength at a point in space. How is its direction defined? Given that the magnitude field strength, E, at a distance r from a point charge Q is given by the formula: E = 4πεο r2 calculate the magnitude of the electric field at a point which is 10 cm from a positive 24 µC charge. Use E = = 9 × 10° m/F. 4πεο
- Find the flux in N.m².C-1 of a constant electric field E = (5.3180x10^3) i + (-5.514x10^3)j + (-1.5880x10^3) k N/C, passing through an area defined by the area vector A = (-4.7990x10^0) i + (-7.69x10^0) j + (4.2900x10^-1) k m².Two circular metal plates of diameter 10cm are seperated by a distance of 1mm. One carries a positive charge and the other and equal negative charge. If the electric field between them is 5x10^5 N/C, find the charge on each plate. Sketch the electric field lines.Problem 1: Part (a) Express the magnitude of the electric field between the two plates, E, in terms of the charge q on one plate, its area A, and ε0. E = ______ Part (b) Express the electric flux ΦE, in terms of q and ε0. ΦE = ______ Part (c) Express the derivative of ΦE with respect of time t in terms of I and ε0. dΦE/dt = ______ Part (d) What is the displacement current which is passing through the capacitor in amps? ID = ______ A
- y 0| X The positive charge Q is evenly distributed on the y-axis between y = 0 and y = a. Find the y- component of the electric field vector at a distance x from the origin on the positive x-axis.In the figure, a point charge 2.5 C is a distance d/2 directly above the center of a square of side 4.0 mm. What is the magnitude of the electric flux through the square?Electric field on a surface of a conducting sphere of radius R has magnitude 9000 N/C. What is the magnitude of the electric field at point r=R/2 from the center of the sphere? Type your numeric answer and submit 36000 ☑ You are incorrect