Question

A very large nonconducting plate lying in the xy-plane carries a charge per unit area of...

A very large nonconducting plate lying in the xy-plane carries a charge per unit area of 3σ. A second such plate located at z = 2.95 cm and oriented parallel to the xy-plane carries a charge per unit area of −4σ. Find the electric field for the following. (a) z < 0 σ/ε0 (b) 0 < z < 2.95 cm σ/ε0 (c) z > 2.95 cm σ/ε0

Homework Answers

Answer #2

Electric field due to large non conducting plate is given by

E=/2o

answered by: anonymous
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
Plane A carries a uniform surface charge density of -8.30 μC/m^2 , and Plane B, which...
Plane A carries a uniform surface charge density of -8.30 μC/m^2 , and Plane B, which is to the right of A, carries a uniform charge density of +13.6 μC/m^2 . Assume that the planes are large enough to be treated as infinite.The distance between large parallel planes is 5.00 cm. Part A)   Find the magnitude of the net electric field these planes produce at a point 4.00 cm to the right of plane A. Express your answer with the...
Two very large parallel sheets are 5.00 cm apart. Sheet A carries a uniform surface charge...
Two very large parallel sheets are 5.00 cm apart. Sheet A carries a uniform surface charge density of -7.30 μC/m2 , and sheet B, which is to the right of A, carries a uniform charge density of -13.6 μC/m2 . Assume that the sheets are large enough to be treated as infinite. A) Find the magnitude and direction of the net electric field these sheets produce at a point 4.00 cm to the right of sheet A. B) Find the...
A very large plane carries a surface charge density of +350 nC/m^2. 5 cm above and...
A very large plane carries a surface charge density of +350 nC/m^2. 5 cm above and parallel to this plane is a thin disk with a diameter of 3 cm and a total charge of -2.5 nC. 5 cm above the disk, and on the axis of th disk, is a 1.5 nC point charge. Find the net force (magnitude and direction) acting on a proton halfway between the center of the disk and the 1.5 nC point charge.
Two very large parallel sheets are 5.00 cm apart. Sheet A carries a uniform surface charge...
Two very large parallel sheets are 5.00 cm apart. Sheet A carries a uniform surface charge density of -8.30 μC/m^2 , and sheet B, which is to the right of A, carries a uniform charge density of -12.1 μC/m^2 . Assume that the sheets are large enough to be treated as infinite. A)Find the magnitude of the net electric field these sheets produce at a point 4.00 cm to the right of sheet A. Express your answer with the appropriate...
Consider two infinite plates, both parallel to the xy plane of a coordinate system. The top...
Consider two infinite plates, both parallel to the xy plane of a coordinate system. The top plate is at the height z = +5cm and carries a uniform charge distribution of ?= +3nC/m2. The bottom plate is at height z = - 5cm and carries a uniform charge distribution of ?= -3nC/m2. The space between the plates is filled with air. Between the plates runs a long wire along the y-axis (at z=0 and x=0), carrying a current of 10A....
An infinitely large positively charged nonconducting sheet 1 has uniform surface charge density σ1 = +130...
An infinitely large positively charged nonconducting sheet 1 has uniform surface charge density σ1 = +130 nC/m2 and is located in the xz plane of a Cartesian coordinate system. An infinitely large positively charged nonconducting sheet 2 has uniform surface charge density σ2 = +90.0 nC/m2 and intersects the xz plane at the z axis, making an angle θ = 30∘ with sheet 1. Part A Determine the expression for the electric field in the region between the sheets for...
Two very large parallel sheets are 5.00 cmcm apart. Sheet A carries a uniform surface charge...
Two very large parallel sheets are 5.00 cmcm apart. Sheet A carries a uniform surface charge density of -8.80 μC/m2μC/m2 , and sheet B, which is to the right of A, carries a uniform charge of -12.3 μC/m2μC/m2 . Assume the sheets are large enough to be treated as infinite. a)Find the magnitude of the net electric field these sheets produce at a point 4.00 cmcm to the right of sheet A. c)Find the magnitude of the net electric field...
Two very large parallel sheets are 5.00 cm apart. Sheet A carries a uniform surface charge...
Two very large parallel sheets are 5.00 cm apart. Sheet A carries a uniform surface charge density of -6.80 μC/m2 , and sheet B, which is to the right of A, carries a uniform charge density of -11.6 μC/m2 . Assume that the sheets are large enough to be treated as infinite. Part A Find the magnitude of the net electric field these sheets produce at a point 4.00 cm to the right of sheet A. Express your answer with...
Q A thin arc is located in the xy-plane and contains a linear charge density of...
Q A thin arc is located in the xy-plane and contains a linear charge density of ρℓ = 4ε0 C/m. The arc dimensions are defined by ρ = 5 m and 0 ≤ φ ≤ π. Draw below the arc within its respective coordinate system. Also draw the position vector from a position along the arc to the point (0, 0, z) along the z-axis. Express mathematically the position vector from part (a). Use Coulomb’s law to find the electric...
A large, flat, horizontal sheet of charge has a charge per unit area of 6.40 µC/m2....
A large, flat, horizontal sheet of charge has a charge per unit area of 6.40 µC/m2. Find the electric field just above the middle of the sheet. magnitude kN/C direction ---Select--- upward downward