Electrical Engineering Gcopper = 5.813×10" (Nm)', µo=4xx107 H/m, o-8.85x1012 F/m a) Find the high frequency model of a 500 2 resistor with 2.5 cm copper wire connections (radius = .2032 mm) and a stray capacitance Ca of 5 pF. Give an expression for the equivalent impedance. b) Sketch the impedance magnitude as a function of frequency. In your sketch also include the ideal behavior of the capacitor.

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Electrical Engineering
Ocopper = 5.813x10" (Am)', lo = 4TX107 H/m, 2o = 8.85x101? F/m
a) Find the high frequency model of a 500 2 resistor with 2.5 cm copper wire connections (radius =
.2032 mm) and a stray capacitance Ca of 5 pF. Give an expression for the equivalent impedance.
b) Sketch the impedance magnitude as a function of frequency. In your sketch also include the ideal
behavior of the capacitor.
Transcribed Image Text:Electrical Engineering Ocopper = 5.813x10" (Am)', lo = 4TX107 H/m, 2o = 8.85x101? F/m a) Find the high frequency model of a 500 2 resistor with 2.5 cm copper wire connections (radius = .2032 mm) and a stray capacitance Ca of 5 pF. Give an expression for the equivalent impedance. b) Sketch the impedance magnitude as a function of frequency. In your sketch also include the ideal behavior of the capacitor.
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