Calculating Work Done with a Series RC Circuit with Variable Plate Spacing

In summary, the conversation involves a newcomer joining a group and asking for help with a physics question involving a battery, resistor, and capacitor. They also provide a link for others to read before posting their response. The question asks for the work required to increase the spacing of a parallel-plate capacitor and the energy stored before and after the change. The charge is assumed to be constant since the change occurs too quickly for it to react.
  • #1
wheatmaster
1
0
hey everyone just joined! glad to be here! i just don't get one part of the question and once i get it, i should be able to get the rest.

A battery with an emf of 20 volts is connected in series with a resistor of 300,0000 ohms and an air-filled parallel-plate capacitor of capacitance 6 microfarads.

The spacing between the capacitor plates is suddenly increased (in a time short compared to the time constant of the circuit) to four times its original value.

b. determine the work that must be done in increasing the spacing in this fashion.

thanks!
 
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  • #2
read this first
https://www.physicsforums.com/showthread.php?t=28
b4 your posting...

calculate the energy store in the capacitor before and after the change... Q is constant since the charge is not fast enough to react
 
  • #3


Hi there! Welcome to the group. Happy to have you here. It's great that you have joined us to learn and grow together.

To answer your question, let's first understand what work is in the context of physics. Work is defined as the energy transferred to an object by a force acting on that object. In this case, the work done in increasing the spacing between the capacitor plates is the energy transferred to the capacitor by the force that is pulling the plates apart.

To calculate the work done, we can use the formula W = 0.5 * C * V^2, where W is the work done, C is the capacitance, and V is the voltage across the capacitor. We know that the capacitance remains constant in this scenario, so we just need to calculate the change in voltage.

Initially, the voltage across the capacitor is equal to the battery's emf, which is 20 volts. When the spacing is increased, the capacitance decreases, which means the voltage across the capacitor will also decrease. The new voltage can be calculated using the formula V = Q/C, where Q is the charge on the capacitor. Since the charge on the capacitor remains constant, the new voltage will be 1/4th of the original voltage, which is 5 volts.

Now, we can plug in the values in the formula for work done and get:

W = 0.5 * 6 * (20^2 - 5^2)
W = 0.5 * 6 * (400 - 25)
W = 0.5 * 6 * 375
W = 1125 Joules

So, the work done in increasing the spacing between the capacitor plates is 1125 Joules. I hope this helps you understand the concept better. Let me know if you have any further questions. Good luck with your studies!
 

Related to Calculating Work Done with a Series RC Circuit with Variable Plate Spacing

1. What is a series RC circuit with variable plate spacing?

A series RC circuit is a circuit that contains a resistor (R) and a capacitor (C) connected in series. The variable plate spacing refers to the distance between the plates of the capacitor, which can be adjusted to change the capacitance of the circuit.

2. How do you calculate the work done in a series RC circuit with variable plate spacing?

The work done in a series RC circuit can be calculated using the formula W = ½CV2, where C is the capacitance of the circuit and V is the voltage applied to the circuit. The capacitance can be calculated using the equation C = ε0εrA/d, where ε0 is the permittivity of free space, εr is the relative permittivity of the material between the plates of the capacitor, A is the area of the plates, and d is the distance between the plates.

3. Why is the work done in a series RC circuit dependent on the plate spacing?

The work done in a series RC circuit is dependent on the plate spacing because it affects the capacitance of the circuit. As the plate spacing increases, the capacitance decreases, and therefore, the amount of work required to charge the capacitor decreases. This is because the larger distance between the plates reduces the electric field, resulting in a lower potential difference between the plates.

4. How does the work done in a series RC circuit change when the plate spacing is varied?

The work done in a series RC circuit decreases as the plate spacing is increased. This is because the capacitance decreases with an increase in plate spacing, resulting in a lower amount of energy stored in the capacitor. As a result, less work is required to charge the capacitor to a certain voltage.

5. What are the practical applications of calculating work done in a series RC circuit with variable plate spacing?

The calculation of work done in a series RC circuit with variable plate spacing is important in understanding the behavior and performance of capacitors in various electronic devices. It is also useful in designing circuits with specific energy storage requirements, such as in power supplies, filters, and timers.

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