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Lecture 3
Lecture 3

... MESH Analysis: • Assign a current variable to each MESH in a circuit • Apply KVL to each Mesh, using Ohm’s law to express each Voltage in terms of the assigned currents • Solve the resulting set of simultaneous equations ...
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department of electrical and electronic engineering - suzon-aust

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... Choose a lamp and three resistors such that the lamp is very bright with no resistors in the circuit and just glowing when three are connected in series. Choose meters that are visible to the entire class. Use a power supply rather than a battery pack so that the emf does not change significantly wi ...
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Electrical and Magnetic Modelling of a Power Transformer: A Bond

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a new topological method for determination of the equivalent

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... Create loop current labels that include every circuit branch where each loop contains a unique branch (not included by any other other loop) and no loops cross each other (but they can overlap in common branches). Perform KVL around each loop expressing all voltages in terms of loop currents. ...
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Linear Circuit Eleme..

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Topology (electrical circuits)



The topology of an electronic circuit is the form taken by the network of interconnections of the circuit components. Different specific values or ratings of the components are regarded as being the same topology. Topology is not concerned with the physical layout of components in a circuit, nor with their positions on a circuit diagram. It is only concerned with what connections exist between the components. There may be numerous physical layouts and circuit diagrams that all amount to the same topology.Strictly speaking, replacing a component with one of an entirely different type is still the same topology. In some contexts, however, these can loosely be described as different topologies. For instance, interchanging inductors and capacitors in a low-pass filter results in a high-pass filter. These might be described as high-pass and low-pass topologies even though the network topology is identical. A more correct term for these classes of object (that is, a network where the type of component is specified but not the absolute value) is prototype network.Electronic network topology is related to mathematical topology, in particular, for networks which contain only two-terminal devices, circuit topology can be viewed as an application of graph theory. In a network analysis of such a circuit from a topological point of view, the network nodes are the vertices of graph theory and the network branches are the edges of graph theory.Standard graph theory can be extended to deal with active components and multi-terminal devices such as integrated circuits. Graphs can also be used in the analysis of infinite networks.
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