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Circuit Analysis

Tuesday, October 19, 2010. Combining Resistors and Voltage/Current Division. Series Resistors: If resistors are connected in series with each other, that is if they share the same node back-to-back exclusively, than the sum of their resistance values is the equivalent resistance and both resistors can be replaced by the equivalent resistor. Req = R1 R2 . Rn. Req = (R1)(R2) / (R1 R2). Vn = [Rn / (R1 R2 . Rn)] * V. For other classes/notes in the engineering field click here. Kirchhoff's Voltage Law(KVL): t...

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Circuit Analysis | circuit-analysis-1.blogspot.com Reviews
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Tuesday, October 19, 2010. Combining Resistors and Voltage/Current Division. Series Resistors: If resistors are connected in series with each other, that is if they share the same node back-to-back exclusively, than the sum of their resistance values is the equivalent resistance and both resistors can be replaced by the equivalent resistor. Req = R1 R2 . Rn. Req = (R1)(R2) / (R1 R2). Vn = [Rn / (R1 R2 . Rn)] * V. For other classes/notes in the engineering field click here. Kirchhoff's Voltage Law(KVL): t...
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Circuit Analysis | circuit-analysis-1.blogspot.com Reviews

https://circuit-analysis-1.blogspot.com

Tuesday, October 19, 2010. Combining Resistors and Voltage/Current Division. Series Resistors: If resistors are connected in series with each other, that is if they share the same node back-to-back exclusively, than the sum of their resistance values is the equivalent resistance and both resistors can be replaced by the equivalent resistor. Req = R1 R2 . Rn. Req = (R1)(R2) / (R1 R2). Vn = [Rn / (R1 R2 . Rn)] * V. For other classes/notes in the engineering field click here. Kirchhoff's Voltage Law(KVL): t...

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Circuit Analysis: Combining Resistors & Voltage/Current Division

http://www.circuit-analysis-1.blogspot.com/2010/10/combining-resistors-voltagecurrent.html

Tuesday, October 19, 2010. Combining Resistors and Voltage/Current Division. Series Resistors: If resistors are connected in series with each other, that is if they share the same node back-to-back exclusively, than the sum of their resistance values is the equivalent resistance and both resistors can be replaced by the equivalent resistor. Req = R1 R2 . Rn. Req = (R1)(R2) / (R1 R2). Vn = [Rn / (R1 R2 . Rn)] * V. For other classes/notes in the engineering field click here.

2

Circuit Analysis: Laws

http://www.circuit-analysis-1.blogspot.com/2010/10/laws.html

Tuesday, October 19, 2010. Ohm's Law: voltage across a resistor is proportional to the current through it. Voltage = current multiplied by resistance. V = iR. Kirchhoff's Current Law(KCL): the sum of currents entering a node is zero. Kirchhoff's Voltage Law(KVL): the sum of voltages around a loop is zero. Branch: any single element (example: resistor, voltage source, etc.). Node: point of connection between two or more branches. Loop: closed path in a circuit. Subscribe to: Post Comments (Atom).

3

Circuit Analysis: Basics

http://www.circuit-analysis-1.blogspot.com/2010/10/basics.html

Tuesday, October 19, 2010. Circuit analysis is the study of electric circuits, which is the interconnection of circuit elements. An element is any component of the circuit(resistor, voltage source, etc.). Voltage(volts): the energy/work to move charge through an element. 1 volt = 1 joule per coulomb. Current(amperes): the rate of charge flow. 1 amp = 1 coulomb per second. Charge(coulombs): the charge on an proton/electron is /- 1.602*10 -19. Energy(joule): the capacity to do work.

4

Circuit Analysis: October 2010

http://www.circuit-analysis-1.blogspot.com/2010_10_01_archive.html

Tuesday, October 19, 2010. Combining Resistors and Voltage/Current Division. Series Resistors: If resistors are connected in series with each other, that is if they share the same node back-to-back exclusively, than the sum of their resistance values is the equivalent resistance and both resistors can be replaced by the equivalent resistor. Req = R1 R2 . Rn. Req = (R1)(R2) / (R1 R2). Vn = [Rn / (R1 R2 . Rn)] * V. For other classes/notes in the engineering field click here. Kirchhoff's Voltage Law(KVL): t...

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Engineering Notes: Engineering Notes

http://notes-for-engineering.blogspot.com/2010/06/engineering-notes.html

Friday, June 25, 2010. Here I've compiled a list of engineering classes and links to their notes. Processes and Materials in Manufacturing. Subscribe to: Post Comments (Atom). Simple template. Powered by Blogger.

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Engineering Notes: June 2010

http://notes-for-engineering.blogspot.com/2010_06_01_archive.html

Friday, June 25, 2010. Here I've compiled a list of engineering classes and links to their notes. Processes and Materials in Manufacturing. Subscribe to: Posts (Atom). Simple template. Powered by Blogger.

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Circuit Analysis

Tuesday, October 19, 2010. Combining Resistors and Voltage/Current Division. Series Resistors: If resistors are connected in series with each other, that is if they share the same node back-to-back exclusively, than the sum of their resistance values is the equivalent resistance and both resistors can be replaced by the equivalent resistor. Req = R1 R2 . Rn. Req = (R1)(R2) / (R1 R2). Vn = [Rn / (R1 R2 . Rn)] * V. For other classes/notes in the engineering field click here. Kirchhoff's Voltage Law(KVL): t...

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CIRCUIT

Monday, May 19, 2014. This page explains the operation of transistors in circuits. Practical matters such as testing, precautions when soldering and identifying leads are covered by the Transistors. There are two types of standard transistors, NPN. The leads are labelled base. These terms refer to the internal operation of a transistor but they are not much help in understanding how a transistor is used, so just treat them as labels! Is two transistors connected together to give a very high current gain.

circuit-ar.cet.ac.il circuit-ar.cet.ac.il

סוגרים מעגל

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