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II An electric circuit, whether it's a simple lightbulb or a complex amplifier, has two input terminals that are connected to the two output terminals of the voltage source. The impedance between the two input terminals (often a function of frequency) is the circuit's input impedance. Most circuits are designed to have a large input impedance. To see why, suppose you need to amplify the output of a high-pass filter that is constructed with a 1.2kΩ resistor and a 15μF capacitor. The amplifier you've chosen has a purely resistive input impedance. For a 60Hz signal, what is the ratio VRload/VRno loadof the filter's peak voltage output with (load) and without (no load) the amplifier connected if the amplifier's input impedance is (a) 1.5kΩand (b) 150kΩ ?

Short Answer

Expert verified

(a)1.5°ìΩinput terminal is

localid="1649164794842" VRloadVRnoload=0.9770

(b)150°ìΩinput terminal is

localid="1649164800982" VRloadVRnoload=0.9997

Step by step solution

01

Step1:definition of electric field:

A region associated with an electric charge distribution or a varying magnetic field in which forces caused by that charge or field act on other electric charges Sentence Examples of Electric Fields

02

find w:(part a)

R1=1.2°ìΩ→1200Ω

C=15μF→1.5×10−5F

f=60Hz

First, we find value for Ó¬

Ó¬=2Ï€f

Ó¬=2Ï€(60Hz)

(Substitute values in equation.

Ó¬=377Hz

Next, we find value forXC

XC=1Ó¬CXC=12Ï€fC

XC=1(377Hz)1.5×10−5F

(Substitute values in equation.)

XC=176.8Ω

03

Step2:Find value XC(part a)

R2=1.5°ìΩ:

Req=1R1+1R2−1

Req=11.2°ìΩ+11.5°ìΩ−1

Req=11200Ω+11500Ω−1

Req=5+46000Ω−1

Req=96000Ω−1

Req=666.66Ω
04

Step4:Find 150kΩ(part b)

VRloadVRnoload:

VRloadVRnoload=ReqRR2+XC2Req2+XC2

VRloadVRnoload=666.66Ω1200Ω(1200Ω)2+(176.8Ω)2(666.66Ω)2+(176.8)2

VRloadVRnoload=0.9997

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a 2.1mH inductor, and a 550nF capacitor. It is connected to a 50V rms oscillating voltage source with an adjustable frequency. An oscillating magnetic field is observed at a point 2.5mm from the center of one of the circuit wires, which is long and straight. What is the maximum magnetic field amplitude that can be generated?

A series RLC circuit has a 200kHz resonance frequency. What is the resonance frequency if

a. The resistor value is doubled?

b. The capacitor value is doubled?

For what absolute value of the phase angle does a source deliver 75%of the maximum possible power to an RLC circuit?

A series RLC circuit attached to a 120V/60Hzpower line draws a 2.4Arms current with a power factor of 0.87. What is the value of the resistor?

You’re the operator of a 15000Vrms, 60HZ electrical substation. When you get to work one day, you see that the station is delivering 6MWof power with a power factor of0.90.

a. What is the rms current leaving the station?

b. How much series capacitance should you add to bring the power factor up to 1.0?

c. How much power will the station then be delivering?

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