Two thin conducting plates, each 28 cm on a side, are situated parallel to one another and 5 mm apart. If 8·1011 electrons are moved from one plate to the other, what is the electric field between the plates? (b)    Calculate the surface charge density of the plates. (c)    What is the electric field between the plates?

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Chapter24: Gauss’s Law
Section: Chapter Questions
Problem 24.46P: A thin, square, conducting plate 50.0 cm on a side lies in the xy plane. A total charge of 4.00 108...
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Two thin conducting plates, each 28 cm on a side, are situated parallel to one another and 5 mm apart. If 8·1011 electrons are moved from one plate to the other, what is the electric field between the plates?

(b)    Calculate the surface charge density of the plates.

(c)    What is the electric field between the plates?

1. Two thin conducting plates, each 28 cm on a side, are situated parallel to one another and 5 mm
apart. If 8- 1011 electrons are moved from one plate to the other, what is the electric field between
the plates?
(a) In your notebook, draw the two conducting plates and draw the electric field lines between the
plates.
How is the electric field directed?
A. From the
(b) Calculate the surface charge density of the plates.
o = 2.04 x 1013 X C/m²
(c) What is the electric field between the plates?
E = 1.15 x 1024 X N/C
Transcribed Image Text:1. Two thin conducting plates, each 28 cm on a side, are situated parallel to one another and 5 mm apart. If 8- 1011 electrons are moved from one plate to the other, what is the electric field between the plates? (a) In your notebook, draw the two conducting plates and draw the electric field lines between the plates. How is the electric field directed? A. From the (b) Calculate the surface charge density of the plates. o = 2.04 x 1013 X C/m² (c) What is the electric field between the plates? E = 1.15 x 1024 X N/C
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