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If you’ve dealt with reactance, you surely know the two equations for computing inductive and capacitive reactance. But unless you’ve really dug into it, you may only know the formula t… ...
The x-axis represents the series resistance and the y-axis represents the series reactance. Figure 2: Constant parallel resistance maps as a circle. (Click on image to enlarge) There are two circles ...
As with series circuits containing resistances, inductances, and capacitances, if the inductive reactance of a parallel circuit equals the capacitive reactance, the circuit is said to be resonant at ...
• For equivalent parallel capacitance C pe, its reactance X pe and equivalent parallel resistance R pe of the structure according to Equations 5, 9, and 6, we calculate C pe = 115 μF, X pe = 6. ...
This Power Tip shows you how to do a quick conversion of parallel-to-series complex impedances (and vice versa). It also shows that a graphical representation of this transformation as a function of ...
The elements between nodes B and C are connected in parallel, so it's now necessary to use parallel circuit analysis methods. Both impedance elements (Z 2 and Z 3 ) have the same voltage across them ...
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