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mario62 [17]
2 years ago
3

calculate the displacement current id between the square plates, 7.0 cm on a side, of a capacitor if the electric field is chang

ing at a rate of 3.0×106 v/m⋅s .
Physics
1 answer:
inessss [21]2 years ago
8 0

The separation between the plates is 8.51*10^{-8}.

Information: The distance between the square plates is 8.6 cm, and the rate at which the electric field changes is 1.3 x 106 V/m.s.

using formula: d=eA(E/t), d=8.85*10¬¹²*(0.086)²*1.30*10⁶

d=8.51*10⁻⁸m.

<h3>What do you mean by Current?</h3>

A flow of electrical charge carriers, often electrons or atoms deficient in electrons, is referred to as current. The capital letter I is a typical sign for current. The ampere, represented by the letter A, is the common unit.

<h3>Does "current" refer to the present time?</h3>

It is current if it is true at the moment, right now, and in the present. The term current's origins all relate to its "present" sense. Things that are current are now occurring; they are a part of the present. Since past events are history and no longer news, news reporting focuses on "present affairs."

To know more about Currents visit;

brainly.com/question/13076734

#SPJ4

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A very rigid material—one that stretches or compresses only slightly under large forces—has a large value of __________.
Dahasolnce [82]

Answer: young's modulus

Explanation: A very rigid material—one that stretches or compresses only slightly under large forces—has a large value of young's modulus .

7 0
2 years ago
An object is moving at a speed of 20 m/s and has a kinetic energy of 10,000 J. What is the mass of the object?
Ratling [72]

Answer:

m=100kg

Explanation:

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10000=1/2m(400)

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50=1/2m

100=m

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Read 2 more answers
In the drawing below, e = 4.0n/c and d = 1.5m. calculate the work done by the electric field in moving a +5.0x10-9c charge from
inn [45]

solution:

F=q*e

=5*10^-9*4

=2*10^-8

therefore work done=F*d

=2*10^-8*1.5

=3*10^-8J

6 0
3 years ago
A battery charger is connected to a dead battery and delivers a current of 3.5 a for 4 hours, keeping the voltage across the bat
oksano4ka [1.4K]
The power delivered is equal to the product between the voltage V and the current I:
P=VI=(16 V)(3.5 A)=56 W

This power is delivered for a total time of t=4h=4 \cdot 3600 s = 14400 s, so the total energy delivered to the battery is
E=Pt = (56 W)(14400 s)=806400 J=806.4 kJ
5 0
3 years ago
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