A spherical, non-conducting shell of inner radius= 10 cm and outer radius= 15 cm carries a total charge Q = 17.3 μC distributed uniformly throughout the volume of the shell. What is the magnitude of the electric field at a distance r = 12.0 cm from the center of the shell? (ε0 = 8.85 x 10-12 C²/N m²) (Give your answer to the nearest 0.01 MN/C)
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- A charge q = 2.00 µC is placed at the origin in a region where there is already a uniform electric field É = (100 N/C) i . Calculate the flux of the net electric field through a Gaussian sphere of radius R = 10.0 cm centered at the origin. (Eo = 8.85 x 10-12 C²/N • m2) O 2.26 x 105 N • m²/C zero O 5.52 x 105 N • m?/C O 1.13 x 105 N • m²/CA hollow spherical shell with a diameter of 3.8 cm has a charge of 1.91 n C placed at its center. Calculate the electric flux through a portion of the shell with an area of 1.40 X 10-2 m2 zero 80 Nm^2/C 56 2 Nm^2/C 215.8 Nm^2/CA solid sphere of radius 40.0 cm has a total positive charge of 25.0 µC uniformly distributed throughout its volume. Calculate the magnitude of the electric field at the following distances. (a) 0 cm from the center of the sphere kN/C(b) 10.0 cm from the center of the sphere kN/C(c) 40.0 cm from the center of the sphere kN/C
- On the x axis, a point charge Q is placed at the origin x = 0.00 m. The electric field at x = 2.50 m is measured to be 6.77E-3 N/C in the –xdirection. What is the electric field E at x = –1.00 m (in N/C; use positive sign if E points in the +x direction, and negative sign if E points in the –xdirection)?= 3.95 μC. Express your answer in vector form.) The figure below shows three charged spheres arranged along the y axis. (Assume q₁ = 2.90 μC and 92 91 75.0 cm -4.80 μC X 22.0 cm 92 (a) What is the electric field at x = 0, y = 2.80 m? N/C (b) What is the electric field at x = 2.80 m, y = 0? = N/CA 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 = (b) 8.0 cm E = (c) 22.0 cm E = X N/C f
- A total charge 7.1 ✕ 10−6 C is distributed uniformly throughout a cubical volume whose edges are 8.0 cm long. What is the electric flux (in N · m2/C) through a spherical surface of radius 4.0 cm that is also concentric with the charge distribution?An unknown charge sits on a conducting solid sphere of radius 9.5 cm. If the electric field 13 cm from the center of the sphere has magnitude 4.3 × 103 N/C and is directed radially inward, what is the net charge on the sphere?A charge q = +3.05 ?C is located at the center of a regular tetrahedron (a four-sided surface) as in figure below. (a) Find the magnitude of the total electric flux through the tetrahedron. Answer in N · m2/C (b) Find the magnitude of the electric flux through one face of the tetrahedron. Answer in N · m2/C
- Four solid plastic cylinders all have radius 2.55 cm and length 6.48 cm. Find the charge of each cylinder given the following additional information about each one. Cylinder (a) carries charge with uniform density 15.8 nC/m² everywhere on its surface. Cylinder (b) carries charge with uniform density 15.8 nC/m² on its curved lateral surface only. Cylinder (c) carries charge with uniform density 525 nC/m3 throughout the plastic. Cylinder (d) carries charge with uniform linear density 54.2 nC/m along the length of the plastic.The electric field between two parallel square metal plates is 240 N/C. The plates have an area of 0.64m2 on a side and are separated by 0.02m. What is the charge on each plate (assume equal and opposite)? Neglect edge effects. (Hint : The electric field in parallel plates is E 2, where o is the surface charge density ) €0 O 3.75 x 10-8 C O 1.36 x 10-8 C 8.83 x 10-8 C O 1.36 × 10-9 CA solid conducting sphere of radius 2.00 cm has a charge of 7.66 ?C. A conducting spherical shell of inner radius 4.00 cm and outer radius 5.00 cm is concentric with the solid sphere and has a charge of −2.84 ?C. Find the electric field at the following radii from the center of this charge configuration. find magnitude N/C and direction for all please. (a) r = 1.00 cm (b) r = 3.00 cm (c) r = 4.50 cm (d) r = 7.00 cm