Deck 26: Resonance
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Deck 26: Resonance
1
The process of producing sine waves after a pulse of energy has been applied is called ______________ of the LC circuit.
ringing
2
The figure of merit, of the resonant circuit, in sharpness of resonance, is indicated by the factor ______________.
Q
3
The Q is a numerical factor without any units, because it is a ______________ of reactance to resistance and the ohms cancel.
ratio
4
The Q of a resonant circuit can be considered a ______________ factor that determines how much the voltage across L or C is increased by the resonant rise of current in a series circuit.
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5
Capacitors used in tuned circuits generally have high Q because of their low ______________.
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6
The width of the resonant band of frequencies centered around fr is called the ______________ of the tuned circuit.
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7
The lower the Q, the broader the resonant response and the ______________ the bandwidth.
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8
It is simply for convenience in calculations that the bandwidth is defined between the two frequencies having ______________% response.
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9
The bandwidth between two frequencies having 70.7% response in current or voltage is also the bandwidth in terms of ______________-power points.
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10
______________ means obtaining resonance at different frequencies by varying either L or C.
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11
What value of C resonates with a 239-?H L at 1000 kHz?
A) 10.6 pF
B) 106 pF
C) 4184 ?F
D) 418.4 pF
A) 10.6 pF
B) 106 pF
C) 4184 ?F
D) 418.4 pF
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12
What does 4p2 equal?
A) 39.48
B) 6.26
C) 9.86
D) 12.56
A) 39.48
B) 6.26
C) 9.86
D) 12.56
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13
What is used to indicate the quality, or figure of merit of a resonant circuit?
A) ?
B) ?
C) Q
D) ?
A) ?
B) ?
C) Q
D) ?
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14
What is the numerical factor that has no units and is a ratio of reactance to resistance?
A) PF
B) BW
C) Q
D) Z
A) PF
B) BW
C) Q
D) Z
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15
What is the Q of a series circuit that is resonant at 1.0 MHz and develops 50 mV across a 250-?H L with a 2-mV input?
A) 50
B) 25
C) 125
D) 100
A) 50
B) 25
C) 125
D) 100
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16
Capacitors used in tuned circuits generally have high Q because
A) XC is small
B) XC is large
C) of their low losses
D) inductors have low Qs
A) XC is small
B) XC is large
C) of their low losses
D) inductors have low Qs
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17
The width of the resonant band of frequencies centered around fr is called the
A) bandwidth
B) frequency range
C) half-power points
D) frequency response
A) bandwidth
B) frequency range
C) half-power points
D) frequency response
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18
The group of frequencies with a response of what percentage of maximum, or more, is generally considered the bandwidth of a tuned circuit?
A) 63.7%
B) 70.7%
C) 37.3%
D) 14.1%
A) 63.7%
B) 70.7%
C) 37.3%
D) 14.1%
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19
The lower the Q
A) the more narrow the bandwidth
B) the sharper the resonance
C) the greater the bandwidth
D) the greater the selectivity
A) the more narrow the bandwidth
B) the sharper the resonance
C) the greater the bandwidth
D) the greater the selectivity
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20
High Q results in
A) less bandwidth
B) more bandwidth
C) less slope for the skirts of the response curve
D) poor selectivity
A) less bandwidth
B) more bandwidth
C) less slope for the skirts of the response curve
D) poor selectivity
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21
The frequencies above and below the resonant frequency which have a current or voltage value equal to 70.7% of its value at resonance are called
A) resonant points
B) band points
C) harmonics
D) half-power points
A) resonant points
B) band points
C) harmonics
D) half-power points
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22
Obtaining resonance at different frequencies by varying either L or C is called
A) autoranging
B) AGC
C) tuning
D) calibrating
A) autoranging
B) AGC
C) tuning
D) calibrating
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23
What is a semiconductor device that varies in capacitance when its voltage is changed?
A) Zener diode
B) Tunnel diode
C) Varactor diode
D) Light-emitting diode
A) Zener diode
B) Tunnel diode
C) Varactor diode
D) Light-emitting diode
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24
When a parallel circuit is mistuned
A) it has a high value of impedance
B) current is minimum
C) the LC circuit is not inductive or capacitive
D) it does not have a high value of impedance
A) it has a high value of impedance
B) current is minimum
C) the LC circuit is not inductive or capacitive
D) it does not have a high value of impedance
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25
What is the technique for reducing the Q of a resonant circuit to increase the bandwidth?
A) Attenuating
B) Tuning
C) Damping
D) Limiting
A) Attenuating
B) Tuning
C) Damping
D) Limiting
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26
The resonance effect occurs
A) when the inductive and capacitive reactances are equal
B) when the inductive and capacitive reactances are unequal
C) when inductance is greater than capacitance
D) regardless of the values of XL or XC
A) when the inductive and capacitive reactances are equal
B) when the inductive and capacitive reactances are unequal
C) when inductance is greater than capacitance
D) regardless of the values of XL or XC
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27
In radio frequency circuits, the main application of resonance is
A) filtering
B) oscillating
C) tuning
D) coupling
A) filtering
B) oscillating
C) tuning
D) coupling
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28
Tuning by means of the resonant effect provides a practical application of
A) sensitivity
B) selectivity
C) conductivity
D) resistivity
A) sensitivity
B) selectivity
C) conductivity
D) resistivity
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29
An ac circuit that has equal and opposite reactances is called a(n)
A) resonant circuit
B) resistive circuit
C) resilient circuit
D) reactive circuit
A) resonant circuit
B) resistive circuit
C) resilient circuit
D) reactive circuit
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30
The frequency at which the opposite reactances are equal is the
A) oscillating frequency
B) fundamental frequency
C) harmonic frequency
D) resonant frequency
A) oscillating frequency
B) fundamental frequency
C) harmonic frequency
D) resonant frequency
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31
What causes the coil resistance to become higher than the coil's dc resistance at higher frequencies?
A) Inductive reactance
B) Capacitive reactance
C) Magnetic effect
D) Skin effect
A) Inductive reactance
B) Capacitive reactance
C) Magnetic effect
D) Skin effect
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32
What is the result of plotting frequencies at and near the resonant frequency on a graph?
A) Bode plot
B) Response curve
C) Reactive curve
D) Resonant plot
A) Bode plot
B) Response curve
C) Reactive curve
D) Resonant plot
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33
At series resonance, the resonant current is
A) out of phase with the generator voltage
B) in phase with the generator voltage
C) minimum
D) equal to the sum of the individual branch currents
A) out of phase with the generator voltage
B) in phase with the generator voltage
C) minimum
D) equal to the sum of the individual branch currents
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34
At parallel resonance
A) line current is maximum
B) line current is minimum
C) line current is out of phase with the generator voltage
D) impedance is minimum
A) line current is maximum
B) line current is minimum
C) line current is out of phase with the generator voltage
D) impedance is minimum
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35
What does 4?2 equal?
A) 39.48
B) 6.26
C) 9.86
D) 12.56
A) 39.48
B) 6.26
C) 9.86
D) 12.56
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36
XL and XC can be combined to favor one particular frequency, the resonant frequency to which the LC circuit is tuned.
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37
The resonance effect occurs when the inductive and capacitive reactances are equal.
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38
Tuning by means of the resonant effect provides a practical application of selectivity.
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39
The frequency at which the opposite reactances are equal is the harmonic frequency.
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40
The most common application of resonance in rf circuits is called tuning.
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41
At higher frequencies, skin effect causes coil resistance to be lower than the coil's dc resistance alone.
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42
A response curve of a series resonant circuit shows that current is small below resonance, maximum at resonance, and drops off to small values above resonance.
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43
For a series LC circuit at resonance, ZT = rs.
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44
At resonance the resonant current is in phase with the generator voltage.
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45
The advantage of a parallel resonant LC circuit is that Z is minimum only for an ac signal at the resonant frequency.
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46
In a parallel resonant circuit, the line current IT is minimum at the resonant frequency.
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47
A parallel LC circuit is often called a tank circuit.
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48
Because of the energy stored by L and C, the circulating tank current can provide full sine waves of current and voltage output when the input is only a pulse.
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49
Resonant frequency is equal to one divided by the product of two pi times the square root of L times C.
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50
A test instrument used to measure inductance or capacitance is the Q meter.
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