A cylinder of length 210 m and radius 5.50 cm carries a uniform volume charge density...
A cylindrical shell of length 160 m and radius 8 cm carries a uniform surface charge density of σ = 11 nC/m2. (a) What is the total charge on the shell? nC Find the electric field at the ends of the following radial distances from the long axis of the cylinder. (b) r = 4 cm N/C (c) r = 7.9 cm N/C (d) r = 8.1 cm N/C (e) r = 12 cm N/C
A long, conductive cylinder of radius R 2.70 cm and uniform charge per unit length 151 pC/m is coaxial with a long, cylindrical, nonconducting shell of inner and outer radii R2 9.45 cm and R3 10.8 cm, respectively. If the cylindrical shell carries a uniform charge density of p 79.8 pC/m3, find the magnitude of the electric field at the following radial distances from the central axis: Number 1.51 cm 0 N/C Number RR, R 6.08 cm 44.65 N/C Incorrect....
An infinitely long cylinder of radius R = 3 cm carries a uniform charge density p = 17 Cm. Calculate the electric field at distance r = 18 cm from the axis of the cylinder. Select one: O a. 8.8x10° NC b. 2.8x10NC c. 6.8x103 N/C d. 0.8x10° NIC O O e. 4.8x10 N/C
0, + -/5 points Tipler6 22.P.049 A cylindrical shell of length 240 m and radius 4 cm carries a uniform surface charge density of σ 14 nC/m. (a) What is the total charge on the shell? nC Find the electric field at the ends of the following radial distances from the long axis of the cylinder. (b)r- 2 cm N/C (c) r 3.9 cm N/C (d) r4.1 cm N/C (e) r = 8 cm N/C eBook
Three solid plastic cylinders all have radius 2.41 cm and length 5.46 cm. Find the charge of each cylinder given the following additional information about each one Cylinder (a) carries charge with uniform density 16.1 nC/m2 everywhere on its surface Cylinder (b) carries charge with uniform density 16.1 nC/m2 on its curved lateral surface only. Cylinder (c) carries charge with uniform density 465 nC/m3 throughout the plastic.
Three solid plastic cylinders all have radius 2.65 cm and length 5.88 cm Find the charge of each cylinder given the following additional information about each one. Cylinder (a) carries charge with uniform density 15.3 nC/m2 everywhere on its surface. Cylinder (b) carries charge with uniform density 15.3 nC/m2 on its curved lateral surface only. Cylinder (c) carries charge with uniform density 495 nC/m3 throughout the plastic
A long, conductive cylinder of radius R1 = 3.00 cm and uniform charge per unit length λ = 604 pC/m is coaxial with a long, cylindrical, non-conducting shell of inner and outer radii R2 = 10.5 cm and R3 = 12.0 cm, respectively. If the cylindrical shell carries a uniform charge density of p = 79.8 pC/m, find the magnitude of the electric field at the following radial distances from the central axis:
Three solid plastic cylinders all have radius 2.59 cm and length 5.58 cm. Find the charge of each cylinder given the following additional information about each one Cylinder (a) carries charge with uniform density 14.8 nC/m2 everywhere on its surface linder (b) carries charge with uniform density 14.8 nC/m2 on its curved lateral surface only. Cylinder (c) carries charge with uniform density 530 nC/m3 throughout the plastic
(I only need D and E thank you!) A cylindrical shell of length 135 m and radius 6 cm carries a uniform surface charge density of σ = 12 nC/m2. a) What is the total charge on the shell? 610.73nC . b) Find the electric field at the ends of the following radial distances from the long axis of the cylinder. r = 3 cm 0 N/C c)r = 5.9 cm 0 N/C d) r = 6.1 cm _____N/C e)...
The figure below shows a spherical shell with uniform volume charge density ρ = 2.00 nC/m3, inner radius a = 5.0 cm, and outer radius b = 2.60a.What is the magnitude of the electric field at the following radial distances:(a) r = 0:(b) r = a/2.00:(c) r = a:(d) r = 1.50a:(e) r = b:(f) r = 3.00b: