Spring & Capacitor Homework: Equations & Solutions

In summary, the conversation discusses the calculation of the force of attraction between plates of a capacitor when the switch is open or closed. It is found that the force increases when the switch is closed due to a change in capacitance and potential, resulting in a spring force that is (16/9) times the initial force. The spring also stretches more in this case.
  • #1
Vibhor
971
40

Homework Statement



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Homework Equations



Force of attraction between the plates = (1/2)(QV)/d

The Attempt at a Solution



Initial charge on the capacitor Q1=CV
Final charge on the capacitor Q2=2CV

When switch is open force between the plates F1 = (1/2)(Q1V)/d1 = (1/2)(CV2)/d1

When switch is closed force between the plates F2 = (1/2)(Q2V)/d2 = (1/2)(2CV2)/d2

d2 = (3/2)d1

F1/F2 = 3/4 or F2 = (4/3)F1

The spring force also becomes 4/3 times of the initial force i.e (4/3)F0

Is it correct ?

Many Thanks
 

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  • #2
Vibhor said:
inal charge on the capacitor Q2=2CV
Be careful here, the capacitance changes.
The potential changes as well, which influences the calculation of F2.
 
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Likes Vibhor
  • #3
mfb said:
Be careful here, the capacitance changes.
The potential changes as well, which influences the calculation of F2.

:sorry:

F1/F2 = 8/9 or F2 = (9/8)F1

The spring force also becomes 9/8 times of the initial force i.e (9/8)F0

Is it correct now?
 
  • #4
Can you show your steps? I get a different result.
 
  • #5
Sorry once again .

It should be (16/9)F0 .

If it is wrong , i will surely show you the steps :smile: .
 
  • #6
That agrees with the answer I got.
 
  • #7
Thanks mfb .
 
  • #8
The spring stretches in both the situations . More in the latter case , as attractive force between the plates gets stronger.

Right ?
 
  • #9
Right. Which also means the system has to be moved a bit, otherwise the solution doesn't make sense.
 

Related to Spring & Capacitor Homework: Equations & Solutions

1. What is a spring?

A spring is an elastic object that can be stretched or compressed by an external force. It stores potential energy when stretched or compressed and returns to its original shape when the force is removed.

2. What is a capacitor?

A capacitor is an electrical component that stores energy in an electric field. It consists of two conductive plates separated by an insulating material, known as a dielectric.

3. What is the relationship between force and displacement in a spring?

The relationship between force and displacement in a spring is described by Hooke's Law, which states that the force exerted by a spring is directly proportional to the distance it is stretched or compressed.

4. How do you calculate the energy stored in a capacitor?

The energy stored in a capacitor can be calculated using the equation E = 1/2 * C * V^2, where E is the energy in joules, C is the capacitance in farads, and V is the voltage across the capacitor in volts.

5. How can I determine the equivalent capacitance of capacitors in series or parallel?

The equivalent capacitance of capacitors in series can be calculated by adding the reciprocals of the individual capacitances and taking the reciprocal of the sum. For capacitors in parallel, the equivalent capacitance is the sum of the individual capacitances.

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