A very weird capacitor association

In summary, the conversation discusses the calculation of equivalent capacitance in a capacitor association, specifically in cases A and B. The process involves calculating the capacitance of each individual part and then adding them together. However, some capacitances are ignored in the final calculation, and the reason for this is explained in terms of the definition of capacitance and the distribution of charge on metal plates.
  • #1
jaumzaum
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In the capacitor association a) and b), calculate the equivalent capacitance
Given: area = A, vacuum permissivity = E, distance between each plate = d[PLAIN]http://img714.imageshack.us/img714/7073/semttulojznw.jpg In the first I've calculated the capacitance of AB, AC, AD, BE, CE, DE and added them. In the second the capacitance EF, EH, FG, FI, FH, HI and added

However the feedback only added AB and DE (in the first) and EF, FG, GH, HI in the second. Why have some capacitances been ignored?
 
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  • #2
You can start from the definition of the capacitance: C=Q/U, charge on one plate divided by the potential difference between the plates. The potential difference is defined by the source, connected between points + and -. You need to determine the net charge on the plates connected together. The charge is distributed on the surfaces of the metal plates, and the surface charge density σ is equal to the electric field strength multiplied by the permittivity of vacuum: σ=ε0E where E=U/d.

ehild
 

Related to A very weird capacitor association

What is a capacitor association?

A capacitor association is a group of capacitors that are connected together in a specific arrangement. This arrangement can affect the overall capacitance and behavior of the capacitors.

What makes a capacitor association "weird"?

A capacitor association may be considered "weird" if it has an unusual arrangement or if it exhibits unexpected behavior. This could be due to the combination of different types of capacitors or the use of unconventional connections.

What are the advantages of using a capacitor association?

A capacitor association can provide a higher capacitance than a single capacitor, making it useful for applications that require larger capacitance values. It can also improve the efficiency and stability of a circuit by reducing voltage fluctuations and filtering out unwanted frequencies.

How do you calculate the total capacitance of a capacitor association?

The total capacitance of a capacitor association can be calculated by adding the individual capacitance values of each capacitor. However, this can become more complicated if the capacitors are connected in a series or parallel arrangement. In these cases, the equivalent capacitance formula must be used.

What are some common uses for a capacitor association?

A capacitor association can be found in a variety of electronic devices, such as power supplies, filters, and audio equipment. It can also be used in electrical systems to improve power factor and reduce harmonic distortion. Additionally, capacitor associations are used in research and development to study the effects of different capacitor arrangements on circuit behavior.

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