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What is the electric field inside an infinitely long cylindrical conductor with radius r and uniform surface charge density?

The electric field inside an infinitely long cylindrical conductor with radius r and uniform surface charge density is zero.


If a current of 19 A flows through a long wire of radius 2 mm what is the flux density produced 18 cm away from the surface of the wire?

16.8


How long is a radius?

A radius is half of the diameter.


What type of a bone is the radius?

The radius is a long bone.


If the diameter is 8cm how long is its radius?

Its radius would be 4cm long. You split it in half.


What is diameter of a circle measures 16in how long is the radius?

diameter=2*radius 16 in = 2*radius 8 in = radius


If a radius is 15 inches long how long is the diameter?

30 inches. The diameter is twice the length of the radius.


If the diameter of a circle is 12 cm long how long is the radius?

The radius would be 6 cm because the diameter is 2 times bigger than the radius.


How would a person find the density of a wooden cube?

Density is weight divided by volume. The weight is found with a scale, and the volume is the length of any edge multiplied by itself twice, for example, if the edge is 3" long, 3"x3"x3" = 9 cubic inches.


Size of a wooden lath?

it is about 3 or 4 feet long but its not wooden its metal


What is the formula for a long radius elbow?

The formula for a long radius elbow, commonly used in piping systems, is based on the radius of curvature. The long radius elbow typically has a radius that is 1.5 times the nominal pipe diameter (D), expressed as: [ R = 1.5D ] where ( R ) is the radius of the elbow. This design helps to minimize pressure loss and turbulence in fluid flow compared to short radius elbows.


What is the formula for a long radius 90?

The formula for a long radius 90-degree elbow in piping is typically described by its radius and angle. The radius (R) is measured from the centerline of the pipe to the centerline of the elbow, with long radius elbows typically having a radius that is 1.5 times the nominal pipe diameter (1.5D). This design minimizes pressure loss and turbulence in fluid flow compared to short radius elbows.