About Capacitors Baltimore MD

An equation can be derived for the capacitance of one capacitor that would have the equivalent capacitance of these two capacitors.

Local Companies

Baltimore International College
410-752-4710
17 Commerce Street
Baltimore, MD
Alternative Education School
410-396-8500
200 E North Ave
Baltimore, MD
AGAPE Driving School
410-385-9666
10 N Calvert Street Suite 249
Baltimore, MD
Superior Driving Academy LLC
410-327-1146
529 South Broadway
Baltimore, MD
Safe Haven Too Daycare Center Inc
410-525-0099
2422 W Patapsco Ave
Baltimore, MD
Cross Keys Tennis Club
410-433-1800
5100 Falls Rd
Baltimore, MD
Fun with Foreign Language
443-616-7343
6622 Loch Raven Boulevard
Towson, MD
Catonsville Education Center
410-368-7900
605 S Chapelgate Ln
Baltimore, MD
Maryland Educational Opportunity
410-728-3400
2500 E Northern Parkway
Baltimore, MD
TESST College of Technology
888-735-6930
1520 S. Canton Avenue
Baltimore, MD

A capacitor is an electrical device for storing charge. In general, capacitors are made from two or more plates of conducting material separated by a layer or layers of insulators. The capacitor can store energy to be given to a circuit when needed.

Capacitance

The capacitance (C) is defined as the ratio of the stored charge (Q) to the potential difference (V) between the conductors:




Capacitance is measured in farads (F) and 1 farad

Parallel plate capacitor

In its simplest form, the capacitor is a set of oppositely charged parallel plates separated by a distance (d). From the equation for the potential difference of parallel plates and the definition of capacitance, the capacitance for parallel plates is




Strictly speaking, this equation is valid only when there is a vacuum between the plates.

When a nonconducting material is placed between the capacitor plates, more charge can be stored because of the induced charge on the surface of the electrical insulator. The ratio of the capacitance with the insulator to the vacuum capacitance is called the dielectric constant (κ, the Greek letter kappa). The values for the dielectric constants can be found in tables of properties of materials. The equation for the parallel plate capacitor with a dielectric that fills the space between the plates is




The energy stored in a capacitor can be found by any of the following three equations, which are each in terms of different variables:




Parallel and series capacitors

Capacitors can be connected either in parallel or in series. Two capacitors are in parallel if the negative plates are connected and the positive plates are connected, as shown in Figure 1 .





Figure 1

Two capacitors connected in parallel. The drawing (a) is equivalent to the schematic (b).


An equation can be derived for the capacitance of one capacitor that would have the equivalent capacitance of these two capacitors. The total charge stored on the two capacitors is Q = Q1 + Q2. The voltage across each capacitor is the same and is equal to the voltage of the battery (V); therefore, Q1 = C1 V and Q2 = C2 V, or for the equivalent capacitor, Q = C eq V. Substituting into the equation for total charge yields C eq V = C1 V + C2 V, or C eq = C1 + C2. This result can be generalized to state that the equivalent capacitance for a set of capacitances in parallel is simply the sum of the individual capacitances.

Capacitors are connected in series if the positive plate of one is connected to the negative plate, as shown in Figure 2 .





Figure 2

Two capacitors connected in series. The drawing (a) is equivalent to the schematic (b).


In series combinations, all the capacitors have the same charge. The potential differences across the capacitors add to equal the potential difference between the terminals of the battery; therefore,




Substituting these equations into the equation for potential difference gives




Canceling the charge gives the following expression for the equivalent capacitance for series combinations:




Note: A common mistake in calculating series capacitance is to forget to take the reciprocal to find the equivalent capacitance after adding the reciprocals of the individual capacitors.

Cliffs Notes Online

Featured Local Company

Baltimore International College

410-752-4710
17 Commerce Street
Baltimore, MD
http://www.bic.edu

Related Local Events
Ghandi and Thoreau:Signals and Affinities
Dates: 12/2/2009 - 12/2/2009
Location: York College
York, PA
View Details

ALA - American Library Association Annual Conference and Exhibition
Dates: 1/24/2010 - 1/30/2010
Location: Walter E. Washington Convention Center
Washington, DC
View Details

MIlitary Health Managment
Dates: 1/26/2010 - 1/28/2010
Location: Sheraton National Hotel, Arlington
Arlington, VA
View Details

BookExpo America - Trade Show
Dates: 6/3/2010 - 6/6/2010
Location: Walter E. Washington Convention Center
Washington, DC
View Details

ALA - American Library Association Annual Conference and Exhibition 2010
Dates: 6/24/2010 - 6/30/2010
Location: Walter E. Washington Convention Center
Washington, DC
View Details