Question

A spherical conductor has a radius of 14.0 cm and a charge of 22.0 µC. Calculate...

A spherical conductor has a radius of 14.0 cm and a charge of 22.0 µC. Calculate the electric field (MN/C) and the electric potential (MV) at the following distances from the center.

1. 8cm

2. 28cm

3. 14cm

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
A spherical conductor has a radius of 14.0 cm and a charge of 58.0 µC. Calculate...
A spherical conductor has a radius of 14.0 cm and a charge of 58.0 µC. Calculate the electric field and the electric potential at the following distances from the center. (a) r = 8.0 cm magnitude direction electric field MN/C ---Select--- inward outward there is no direction electric potential MV ---Select--- inward outward there is no direction (b) r = 30.0 cm magnitude direction electric field MN/C ---Select--- inward outward there is no direction electric potential MV ---Select--- inward outward...
A solid spherical no-conductor of radius 14.5cm has a uniform charge density of p=3.70uC/m**3 (a) Find...
A solid spherical no-conductor of radius 14.5cm has a uniform charge density of p=3.70uC/m**3 (a) Find the magnitude of the electric field af a distance of 8.5 cm from the center of the sphere. B-find the electric field at a distance of 21.0 cm from the center of the sphere C-Now consider a solid sphere conductor of same radius with the same total charge as the non conductor sphere in part (a) Find the electric field at the two distance...
A solid sphere of radius 40.0 cm has a total positive charge of 37.6 µC uniformly...
A solid sphere of radius 40.0 cm has a total positive charge of 37.6 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 (d) 65.0 cm from the center of the sphere kN/C
A solid sphere of radius 40.0 cm has a total positive charge of 38.4 µC uniformly...
A solid sphere of radius 40.0 cm has a total positive charge of 38.4 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 (d) 63.5 cm from the center of the sphere kN/C
12-A rod 16.0 cm long is uniformly charged and has a total charge of -21.0 µC....
12-A rod 16.0 cm long is uniformly charged and has a total charge of -21.0 µC. Determine the magnitude and direction of the electric field along the axis of the rod at a point 40.0 cm from its center. magnitude 17-The charge per unit length on a long, straight filament is -94.7 µC/m. (a) Find the electric field 10.0 cm from the filament, where distances are measured perpendicular to the length of the filament. (Take radially inward toward the filament...
A thin spherical metal shell of radius 8.0 cm carries 7.5 µC of excess charge. What...
A thin spherical metal shell of radius 8.0 cm carries 7.5 µC of excess charge. What is the magnitude of the electric field it produces at the following places? (k = 1/4 0 = 9.0 × 109 N  m2/C2) (a) at 1.0 cm above the surface (b) at 7.0 cm from the center of the sphere
A spherical cavity with a radius of 4.50 cm is located in the center of a...
A spherical cavity with a radius of 4.50 cm is located in the center of a metallic sphere with a radius of 18 cm. A point charge Q = +5.50 μC is located in the center of the cavity, while the net charge in the metallic conductor is Q '= -4.50 μC. a) Determine the load on the surface of the conductor around the cavity and on the outer surface of the conductor. b) Find the magnitude of the electric...
A uniformly charged disk of radius 35.0 cm carries a charge density of 8.70 ✕ 10-3...
A uniformly charged disk of radius 35.0 cm carries a charge density of 8.70 ✕ 10-3 C/m2. Calculate the electric field on the axis of the disk at the following distances from the center of the disk. (a) 5.00 cm MN/C (b) 10.0 cm MN/C (c) 50.0 cm MN/C (d) 200 cm MN/C
A uniformly charged disk of radius 35.0 cm carries a charge density of 7.10 ✕ 10-3...
A uniformly charged disk of radius 35.0 cm carries a charge density of 7.10 ✕ 10-3 C/m2. Calculate the electric field on the axis of the disk at the following distances from the center of the disk. (a) 5.00 cm MN/C (b) 10.0 cm MN/C (c) 50.0 cm MN/C (d) 200 cm MN/C
A 2 cm radius conductor, a filled sphere has a total load of 8 μC. The...
A 2 cm radius conductor, a filled sphere has a total load of 8 μC. The inner radius of a conductive sphere layer centered with this sphere is 4 cm, its outer radius is 5 cm, and its net charge is -4 μC. From the center of this load distribution; a) r = 1 cm, b) r = 3 cm, c) r = 7 cm Find the size of the electric field from these three distances using Gauss's law?