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Chapter 1 · MCQ Read Mode

Concept of Basic Electrical and Electronics Engineering

AEXE01·264 Total MCQs
Question 1 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

When more resistors are connected in parallel, the total circuit resistance:

AIncreases
BDecreases
CStays the same
DDoubles
Answer is hidden
Question 2 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

A 12 V supply is connected across a 4 Ω resistor. What current flows?

A48 A
B8 A
C3 A
D0.33 A
Answer is hidden
Question 3 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Kirchhoff's Voltage Law (KVL) states that the sum of voltages around any closed loop is:

AEqual to the supply voltage
BMaximum
CZero
DEqual to current
Answer is hidden
Question 4 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Which of the following is a bilateral circuit element?

AResistor
BDiode
CNPN transistor
DMOSFET
Answer is hidden
Question 5 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

A 5 Ω resistor carries 2 A. The power dissipated is:

A10 W
B2.5 W
C40 W
D20 W
Answer is hidden
Question 6 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Two resistors R₁ = 3 Ω and R₂ = 7 Ω are connected in series. Total resistance is:

A2.1 Ω
B10 Ω
C5 Ω
D21 Ω
Answer is hidden
Question 7 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Kirchhoff's Current Law (KCL) is based on conservation of:

ACharge
BEnergy
CMass
DMomentum
Answer is hidden
Question 8 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Two 8 Ω resistors are connected in parallel. Total resistance is:

A16 Ω
B8 Ω
C2 Ω
D4 Ω
Answer is hidden
Question 9 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

A circuit element that contains no energy source is called:

AActive
BPassive
CBilateral
DLinear
Answer is hidden
Question 10 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

In a series circuit, the quantity that is the same through all elements is:

AVoltage
BResistance
CCurrent
DPower
Answer is hidden
Question 11 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Resistance of a wire is y. The wire is stretched to triple its length, then the resistance becomes:

Ay/3
B3y
C6y
Dy/6
Answer is hidden
Question 12 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Consider a circuit with two unequal resistances in parallel, then:

ALarge current flows in large resistor
BCurrent is same in both
CSmaller resistance has smaller conductance
DPotential difference across each is same
Answer is hidden
Question 13 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

In which of the following cases is Ohm's law not applicable?

AElectrolytes
BArc lamps
CInsulators
DVacuum ratio values
Answer is hidden
Question 14 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Which of the following bulbs will have high resistance?

A220V, 60W
B220V, 100W
C115V, 60W
D115V, 100W
Answer is hidden
Question 15 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Ohm's law is not applicable to:

ADC circuits
BHigh currents
CSmall resistors
DSemi-conductors
Answer is hidden
Question 16 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Conductance is expressed in terms of:

Amho
Bmho/m
Cohm/m
Dm/ohm
Answer is hidden
Question 17 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Delta connection is also known as:

AY-connection
BMesh connection
CEither Y-connection or mesh connection
DNeither Y-connection nor mesh connection
Answer is hidden
Question 18 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Ra is resistance at A, Rb is resistance at B, Rc is resistance at C in star connection. After transforming to delta, what is resistance between B and C?

ARc+Rb+(Rc × Rb)/R
BRc+Rb+(R × Rb)/Rc
CR+Rb+(R × Rc)/Rb
DRc+Rb+(Rc × R)/Rb
Answer is hidden
Question 19 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Ra is resistance at A, Rb is resistance at B, Rc is resistance at C in star connection. After transforming to delta, what is resistance between A and C?

AR+Rb+(R × Rb)/Rc
BR+Rc+(R × Rc)/Rb
CR+Rb+(R × Rc)/R
DR+Rc+(R × Rb)/Rc
Answer is hidden
Question 20 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Find the equivalent delta circuit for a star network with branches 4.53 ohm, 1.23 ohm, and 6.66 ohm:

A9.69 ohm, 35.71 ohm, 6.59 ohm
B10.69 ohm, 35.71 ohm, 6.59 ohm
C9.69 ohm, 34.71 ohm, 6.59 ohm
D10.69 ohm, 35.71 ohm, 7.59 ohm
Answer is hidden
Question 21 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Find the equivalent resistance between X and Y for the given network:

A3.33 ohm
B4.34 ohm
C5.65 ohm
D2.38 ohm
Answer is hidden
Question 22 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Ra is resistance at A, Rb is resistance at B, Rc is resistance at C in star connection. After transforming to delta, what is resistance between A and B?

ARc+Rb+(R × Rb)/Rc
BR+Rb+(R × Rc)/Rb
CR+Rb+(R × Rb)/Rc
DR+Rc+(R × Rc)/Rb
Answer is hidden
Question 23 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

KCL is based on the fact that:

AThere is a possibility for a node to store energy.
BThere cannot be an accumulation of charge at a node.
CCharge accumulation is possible at node
DCharge accumulation may or may not be possible.
Answer is hidden
Question 24 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

The algebraic sum of voltages around any closed path in a network is equal to:

AInfinity
B1
C0
DNegative polarity
Answer is hidden
Question 25 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Relation between currents according to KCL for the node diagram is:

Ai=i=i=i=i
Bi+i+i=i+i
Ci-i=i-i-i
Di+i=i+i+i
Answer is hidden
Question 26 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

Solve and find the value of I for the series circuit:

A-0.5A
B0.5A
C-0.2A
D0.2A
Answer is hidden
Question 27 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

All __________ are loops but __________ are not meshes:

ALoops, Meshes
BMeshes, loops
CBranches, loops
DNodes, Branches
Answer is hidden
Question 28 of 264Basic Concepts: Ohm's Law, Circuits & Kirchhoff

A junction where two (or) more than two network elements meet is known as a:

ANode
BBranch
CLoop
DMesh
Answer is hidden
Question 29 of 264Network Theorems & AC Circuits

Thevenin's theorem replaces a complex network with a voltage source in:

ASeries with a resistance
BParallel with a resistance
CSeries with a capacitor
DParallel with a current source
Answer is hidden
Question 30 of 264Network Theorems & AC Circuits

In a purely capacitive AC circuit, the current:

ALags voltage by 90°
BIs in phase with voltage
CLeads voltage by 90°
DLags by 45°
Answer is hidden
Question 31 of 264Network Theorems & AC Circuits

Maximum power is transferred to a load when its resistance equals:

AZero
BTwice the source resistance
CThe Thevenin source resistance
DInfinity
Answer is hidden
Question 32 of 264Network Theorems & AC Circuits

At series resonance, the circuit current is:

AZero
BMaximum
CMinimum
DEqual to reactive power
Answer is hidden
Question 33 of 264Network Theorems & AC Circuits

Inductive reactance X as frequency increases:

ADecreases to zero
BStays constant
CBecomes negative
DIncreases
Answer is hidden
Question 34 of 264Network Theorems & AC Circuits

The resonant frequency of an LC circuit is:

A2π√(LC)
B1/(2π√(LC))
C√(LC)/2π
D2πLC
Answer is hidden
Question 35 of 264Network Theorems & AC Circuits

In a purely inductive AC circuit, with respect to voltage, the current:

ALeads by 90°
BIs in phase
CLags by 90°
DLeads by 45°
Answer is hidden
Question 36 of 264Network Theorems & AC Circuits

Reactive power is measured in:

AWatts (W)
BJoules (J)
CVA (Volt-Ampere)
DVAR (Volt-Ampere Reactive)
Answer is hidden
Question 37 of 264Network Theorems & AC Circuits

Norton's theorem represents a network as a current source in parallel with:

AA voltage source
BA capacitor
CA resistance
DAn inductor
Answer is hidden
Question 38 of 264Network Theorems & AC Circuits

Power factor is defined as:

AP/S = cosφ
BQ/S = sinφ
CS/P
DP × Q
Answer is hidden
Question 39 of 264Network Theorems & AC Circuits

Thevenin's theorem converts a circuit into an equivalent form consisting of:

AA current source and a series resistance
BA voltage source and a parallel resistance
CA voltage source and a series resistance
DA current source and a parallel resistance
Answer is hidden
Question 40 of 264Network Theorems & AC Circuits

The application of Thevenin's theorem in a circuit results in:

AAn ideal voltage source
BAn ideal current source
CA current source and an impedance in parallel
DA voltage source and an impedance in series
Answer is hidden
Question 41 of 264Network Theorems & AC Circuits

While calculating Rth in Thevenin's theorem and Norton equivalent:

AAll independent sources are made dead
BOnly current sources are made dead
COnly voltage sources are made dead
DAll voltage and current sources are made dead
Answer is hidden
Question 42 of 264Network Theorems & AC Circuits

Thevenin's theorem cannot be applied to:

ALinear circuit
BNon-linear circuit
CActive circuit
DPassive circuit
Answer is hidden
Question 43 of 264Network Theorems & AC Circuits

While thevenizing a circuit between two terminals, Vth is equal to:

AShort circuit terminal voltage
BOpen circuit terminal voltage
CNet voltage available in the circuit
De.m.f. of the battery nearest to the terminals
Answer is hidden
Question 44 of 264Network Theorems & AC Circuits

Calculate the Thevenin resistance across the terminal AB for the following circuit:

A4.34 ohm
B3.67 ohm
C3.43 ohm
D2.32 ohm
Answer is hidden
Question 45 of 264Network Theorems & AC Circuits

Calculate the current across the 4 ohm resistor:

A0.86A
B1.23A
C2.22A
D0.67A
Answer is hidden
Question 46 of 264Network Theorems & AC Circuits

The Thevenin voltage is the:

AOpen circuit voltage
BShort circuit voltage
COpen circuit and short circuit voltage
DNeither open circuit nor short circuit voltage
Answer is hidden
Question 47 of 264Network Theorems & AC Circuits

Thevenin resistance is found by:

AShorting all voltage sources
BOpening all current sources
CShorting all voltage sources and opening all current sources
DOpening all voltage sources and shorting all current sources
Answer is hidden
Question 48 of 264Network Theorems & AC Circuits

Thevenin's theorem is true for:

ALinear neat networks
BNon-Linear networks
CBoth linear networks and nonlinear networks
DNeither linear networks nor non-linear networks
Answer is hidden
Question 49 of 264Network Theorems & AC Circuits

In Thevenin's theorem Vth is:

ASum of two voltage sources
BA single voltage source
CInfinite voltage sources
D0
Answer is hidden
Question 50 of 264Network Theorems & AC Circuits

Which of the following is also known as the dual of Thevenin's theorem?

ANorton's theorem
BSuperposition theorem
CMaximum power transfer theorem
DMillman's theorem
Answer is hidden
Question 51 of 264Network Theorems & AC Circuits

The Norton current is the:

AShort circuit current
BOpen circuit current
COpen circuit and short circuit current
DNeither open circuit nor short circuit current
Answer is hidden
Question 52 of 264Network Theorems & AC Circuits

Norton resistance is found by?

AShorting all voltage sources
BOpening all current sources
CShorting all voltage sources and opening all current sources
DOpening all voltage sources and shorting all current sources
Answer is hidden
Question 53 of 264Network Theorems & AC Circuits

Norton's theorem is true for:

ALinear networks
BNon-Linear networks
CBoth linear networks and nonlinear networks
DNeither linear networks nor non-linear networks
Answer is hidden
Question 54 of 264Network Theorems & AC Circuits

In Norton's theorem ISC is:

ASum of two current sources
BA single current source
CInfinite current sources
D0
Answer is hidden
Question 55 of 264Network Theorems & AC Circuits

Calculate the Norton resistance for the following circuit if 5 ohm is the load resistance:

A10 ohm
B11 ohm
C12 ohm
D13 ohm
Answer is hidden
Question 56 of 264Network Theorems & AC Circuits

Find the current in the 5 ohm resistance using Norton's theorem:

A1A
B1.5A
C0.25A
D0.5A
Answer is hidden
Question 57 of 264Network Theorems & AC Circuits

Which of the following is also known as the dual of Norton's theorem?

AThevenin's theorem
BSuperposition theorem
CMaximum power transfer theorem
DMillman's theorem
Answer is hidden
Question 58 of 264Network Theorems & AC Circuits

The maximum power drawn from source depends on:

AValue of source resistance
BValue of load resistance
CBoth source and load resistance
DNeither source or load resistance
Answer is hidden
Question 59 of 264Network Theorems & AC Circuits

The maximum power is delivered to a circuit when source resistance is __________ load resistance:

AGreater than
BEqual to
CLess than
DGreater than or equal to
Answer is hidden
Question 60 of 264Network Theorems & AC Circuits

The maximum power is delivered to a circuit when source resistance is __________ load resistance:

AGreater than
BEqual to
CLess than
DGreater than or equal to
Answer is hidden
Question 61 of 264Network Theorems & AC Circuits

Calculate Eth:

A3.43V
B4.57V
C3.23V
D5.34V
Answer is hidden
Question 62 of 264Network Theorems & AC Circuits

Calculate the maximum power transferred:

A1.79W
B4.55W
C5.67W
D3.78W
Answer is hidden
Question 63 of 264Network Theorems & AC Circuits

Under the condition of maximum power efficiency is?

A100%
B0%
C30%
D50%
Answer is hidden
Question 64 of 264Network Theorems & AC Circuits

When a sinusoidal voltage is applied across R-L series circuit having R = X, the phase angle will be:

A90^\circ
B45^\circ lag
C45^\circ lead
D90^\circ leading
Answer is hidden
Question 65 of 264Network Theorems & AC Circuits

A unit step voltage is applied at t=0 to a series R-L circuit with zero initial conditions:

AIt is possible for the current to be oscillatory
BThe voltage across the resistor at t = 0^+ is zero
CThe energy stored in the inductor in the steady-state is zero
DThe resistor current eventually falls to zero
Answer is hidden
Question 66 of 264Network Theorems & AC Circuits

At .......... frequencies the parallel R-L circuit behaves as purely resistive:

ALow
BVery low
CHigh
DVery high
Answer is hidden
Question 67 of 264Network Theorems & AC Circuits

The voltage applied across an R-L circuit is equal to........... of VR and VL:

APhasor sum
BArithmetic sum
CSum of the squares
DAlgebraic sum
Answer is hidden
Question 68 of 264Network Theorems & AC Circuits

In a parallel R-C circuit, the current always............the applied voltage:

ALags
BLeads
CRemains in phase with
DNone of the above
Answer is hidden
Question 69 of 264Network Theorems & AC Circuits

At very low frequencies a series R-C circuit behaves as almost purely __________ circuit:

AResistive
BInductive
CCapacitive
DNone of the above
Answer is hidden
Question 70 of 264Network Theorems & AC Circuits

In a series of resonant circuit, with an increase in L:

AResonant frequency will decrease
BBand width will decrease
CQ will increase
DAll of the above
Answer is hidden
Question 71 of 264Network Theorems & AC Circuits

In a series resonant circuit with the increase in the value of C:

AResonant frequency will decrease
BQ will decrease
CBand width will increase
DBoth A and B
Answer is hidden
Question 72 of 264Network Theorems & AC Circuits

In series as well as parallel resonance circuit, increase in resistance would cause:

AIncrease in bandwidth of both the circuits
BDecrease in bandwidth of both the circuits
CDecrease in bandwidth in series circuit and increase in bandwidth in parallel circuit
DIncrease in bandwidth in series circuit and decrease in bandwidth in parallel circuit
Answer is hidden
Question 73 of 264Network Theorems & AC Circuits

In order to tune a parallel resonant circuit to a lower frequency, the capacitance must:

ABe increased
BBe decreased
CBe zero
DRemain the same
Answer is hidden
Question 74 of 264Network Theorems & AC Circuits

The dynamic resistance of a parallel resonant circuit is given by:

ALC/R
BLCR
CC/LR
DL/CR
Answer is hidden
Question 75 of 264Network Theorems & AC Circuits

A parallel AC circuit in resonance will:

AHave current in each section equal to the line current
BHave a high voltage developed across each inductive and capacitive section
CAct like a resistor of low value
DHave a high impedance
Answer is hidden
Question 76 of 264Network Theorems & AC Circuits

Higher the Q of a series circuit:

ABroader its resonance curve
BNarrower its pass band
CGreater its bandwidth
DSharper its resonance
Answer is hidden
Question 77 of 264Network Theorems & AC Circuits

A high Q coil has:

ALarge bandwidth
BHigh losses
CLow losses
DFlat response
Answer is hidden
Question 78 of 264Network Theorems & AC Circuits

The power factor at resonance in R-L-C parallel circuit is:

AZero
B0.08 lagging
C0.8 leading
DUnity
Answer is hidden
Question 79 of 264Network Theorems & AC Circuits

Magnitude of current at resonance in R-L-C circuit:

ADepends upon the magnitude of R
BDepends upon the magnitude of L
CDepends upon the magnitude of C
DDepends upon the magnitude of R, L and C
Answer is hidden
Question 80 of 264Network Theorems & AC Circuits

In a R-L-C circuit:

APower is consumed in resistance and is equal to I²R
BExchange of power takes place between Inductor and supply line
CExchange of power takes place between Capacitor and supply line
DExchange of power does not take place between resistance and the supply line
EAll of the above
Answer is hidden
Question 81 of 264Network Theorems & AC Circuits

The quality factor of R-L-C circuit will increase if:

AR increases
BR decreases
CImpedance increases
DVoltage increases
Answer is hidden
Question 82 of 264Network Theorems & AC Circuits

In a series R-L-C circuit at resonance:

Aω LC = 1
Bω² L² C² = 1
Cω² LC = 1
Dω L C² = 1
Answer is hidden
Question 83 of 264Network Theorems & AC Circuits

The power factor of a series R-L-C circuit at its half-power points is:

AUnity
BLagging
CLeading
DLagging or leading
Answer is hidden
Question 84 of 264Alternating Current Fundamentals

The RMS value of a sinusoidal voltage with peak Vm is:

AVm / π
BVm / √2
C2Vm / π
DVm × √2
Answer is hidden
Question 85 of 264Alternating Current Fundamentals

AC voltage is generated based on which law?

AFaraday's law of electromagnetic induction
BOhm's law
CKCL
DCoulomb's law
Answer is hidden
Question 86 of 264Alternating Current Fundamentals

The form factor of a pure sine wave is:

A0.707
B1.414
C1.11
D2
Answer is hidden
Question 87 of 264Alternating Current Fundamentals

In a three-phase AC system, the three voltages are separated by:

A60°
B120°
C90°
D180°
Answer is hidden
Question 88 of 264Alternating Current Fundamentals

The period T of an AC waveform is related to frequency f by:

AT = f
BT = 2f
CT = f²
DT = 1/f
Answer is hidden
Question 89 of 264Alternating Current Fundamentals

In a Star (Y) connected three-phase system, line voltage equals:

APhase voltage / √3
BPhase voltage
C√3 × phase voltage
D2 × phase voltage
Answer is hidden
Question 90 of 264Alternating Current Fundamentals

The standard power supply frequency used in Nepal is:

A50 Hz
B60 Hz
C100 Hz
D25 Hz
Answer is hidden
Question 91 of 264Alternating Current Fundamentals

The average value of a sine wave over a positive half-cycle is approximately:

A0.5 Vm
B0.707 Vm
CVm
D0.637 Vm
Answer is hidden
Question 92 of 264Alternating Current Fundamentals

The RMS value of an AC supply is significant because it is:

AAlways larger than the peak value
BThe same as the average value
CThe DC equivalent that produces the same heating effect
DUsed only in reactive circuits
Answer is hidden
Question 93 of 264Alternating Current Fundamentals

In a delta (Δ) connection, line current equals:

APhase current / √3
BPhase current
CPhase current × 2
D√3 × phase current
Answer is hidden
Question 94 of 264Alternating Current Fundamentals

Power in a Three Phase Circuit =

AP = 3 × Vₚₕ × Iₚₕ × \cosφ
BP = √3 × V × I × \cosφ
CBoth A & B
DNone of The Above
Answer is hidden
Question 95 of 264Alternating Current Fundamentals

In a three phase AC circuit, the sum of all three generated voltages is:

AInfinite (∞)
BZero (0)
COne (1)
DNone of the above
Answer is hidden
Question 96 of 264Alternating Current Fundamentals

For a star connected three phase AC circuit:

APhase voltage is equal to line voltage and phase current is three times the line current
BPhase voltage is 1/(√3) times line voltage and phase current is equal to line current
CPhase voltage is equal to line voltage and line current is equal to phase current
DNone of the above
Answer is hidden
Question 97 of 264Alternating Current Fundamentals

In a three phase, delta connection:

ALine current is equal to phase current
BLine voltage is equal to phase voltage
CNone of the above
DLine voltage and line current is zero
Answer is hidden
Question 98 of 264Alternating Current Fundamentals

For a star connection network, consuming power of 1.8kW and power factor 0.5, the inductance and resistance of each coil at a supply voltage of 230 Volts, 60 Hz is:

A0.1H, 8 Ohms
B0.5H, 10 Ohms
C0.3H, 7.4 Ohms
D1H, 7 Ohms
Answer is hidden
Question 99 of 264Alternating Current Fundamentals

For a three-phase delta connected load, fed from a star connected network, the power transferred to the load is:

A3 kW
B4.7 kW
C5 kW
D7 kW
Answer is hidden
Question 100 of 264Alternating Current Fundamentals

For a polyphase system, the number of Wattmeter required to measure power is equal to:

ANumber of wires
BOne less than number of wires
CNumber of phases
DNone of the above
Answer is hidden
Question 101 of 264Alternating Current Fundamentals

A polyphase system is generated by:

AHaving two or more generator windings separated by equal electrical angle.
BHaving generator windings at equal distances
CNone of the above
DA and C
Answer is hidden
Question 102 of 264Alternating Current Fundamentals

In a three phase AC circuit, the sum of all three generated voltages is:

AInfinite
BZero
COne
DNone of the above
Answer is hidden
Question 103 of 264Alternating Current Fundamentals

In a three phase, delta connection:

ALine current is equal to phase current
BLine voltage is equal to phase voltage
CNone of the above
DLine voltage and line current is zero
Answer is hidden
Question 104 of 264Alternating Current Fundamentals

In case of Short Circuit, Current will flow in the Circuit:

AZero
BVery Low
CNormal
DInfinite
Answer is hidden
Question 105 of 264Alternating Current Fundamentals

Ω (Ohm) is the Unit of:

AResistance (R)
BInductive Reactance (X)
CCapacitive Reactance (XC)
DAll of the above
Answer is hidden
Question 106 of 264Alternating Current Fundamentals

Siemens or Mho (\mho) is the unit of?

AConductance
BAdmittance
CBoth A & B
DNone of the above
Answer is hidden
Question 107 of 264Alternating Current Fundamentals

Which of the following elements of electrical engineering cannot be analyzed using Ohm's law?

ACapacitors
BInductors
CTransistors
DResistance
Answer is hidden
Question 108 of 264Alternating Current Fundamentals

Which of the following is a correct representation of peak value in an AC Circuit?

ARMS value/Peak factor
BRMS value*Form factor
CRMS value/Form factor
DRMS value*Peak factor
Answer is hidden
Question 109 of 264Alternating Current Fundamentals

How many cycles will an AC signal make in 2 seconds if its frequency is 100 Hz?

A50
B100
C150
D200
Answer is hidden
Question 110 of 264Alternating Current Fundamentals

What kind of quantity is an Electric potential?

AVector quantity
BTensor quantity
CScalar quantity
DDimensionless quantity
Answer is hidden
Question 111 of 264Alternating Current Fundamentals

Which of the following is a correct representation of average value in an AC Circuit?

ARMS value/Form factor
BRMS value*Form factor
CRMS value/Peak factor
DRMS value*Peak factor
Answer is hidden
Question 112 of 264Semiconductor Devices

Which type of semiconductor has holes as the majority charge carriers?

AIntrinsic
BN-type
CP-type
DMetal
Answer is hidden
Question 113 of 264Semiconductor Devices

A silicon diode typically has a forward voltage drop of:

A0.3 V
B0.7 V
C1.2 V
D5.0 V
Answer is hidden
Question 114 of 264Semiconductor Devices

The primary application of a diode in a power supply is:

AAmplification
BOscillation
CRectification (AC to DC)
DRegulation
Answer is hidden
Question 115 of 264Semiconductor Devices

A BJT is classified as a ____ controlled device.

AVoltage
BCurrent
CLight
DMagnetic
Answer is hidden
Question 116 of 264Semiconductor Devices

Which BJT configuration gives the highest voltage gain and is most commonly used?

ACommon Base (CB)
BCommon Collector (CC)
CEmitter follower
DCommon Emitter (CE)
Answer is hidden
Question 117 of 264Semiconductor Devices

A Zener diode is operated in the ____ region to regulate voltage.

AForward bias
BSaturation
CReverse breakdown
DCutoff
Answer is hidden
Question 118 of 264Semiconductor Devices

CMOS technology is preferred in digital ICs primarily because of its:

AVery low power consumption
BHigh output impedance
CAbility to amplify RF signals
DHigh static power consumption
Answer is hidden
Question 119 of 264Semiconductor Devices

A MOSFET is a ____ controlled device with very high input impedance.

ACurrent
BVoltage
CCharge
DTemperature
Answer is hidden
Question 120 of 264Semiconductor Devices

The three terminals of a BJT are:

AGate, Source, Drain
BAnode, Cathode, Gate
CEmitter, Base, Collector
DSource, Sink, Base
Answer is hidden
Question 121 of 264Semiconductor Devices

A PN junction diode blocks current when it is:

AForward biased
BAt room temperature
CShort circuited
DReverse biased
Answer is hidden
Question 122 of 264Semiconductor Devices

How does a semiconductor behave at absolute zero?

AConductor
BInsulator
CSemiconductor
DProtection device
Answer is hidden
Question 123 of 264Semiconductor Devices

Semiconductor acts as an insulator in the presence of impurities:

ATrue
BFalse
Answer is hidden
Question 124 of 264Semiconductor Devices

How is the resistance of semiconductor classified?

AHigh resistance
BPositive temperature co-efficient
CNegative temperature co-efficient
DLow resistance
Answer is hidden
Question 125 of 264Semiconductor Devices

What are the charge carriers in semiconductors?

AElectrons and holes
BElectrons
CHoles
DCharges
Answer is hidden
Question 126 of 264Semiconductor Devices

What type of material is obtained when an intrinsic semiconductor is doped with pentavalent impurity?

AN-type semiconductor
BExtrinsic semiconductor
CP-type semiconductor
DInsulator
Answer is hidden
Question 127 of 264Semiconductor Devices

What type of material is obtained when an intrinsic semiconductor is doped with trivalent impurity?

AExtrinsic semiconductor
BInsulator
CN-type semiconductor
DP-type semiconductor
Answer is hidden
Question 128 of 264Semiconductor Devices

When a pure semiconductor is heated, its resistance:

AGoes up
BGoes down
CRemains the same
DCan't say
Answer is hidden
Question 129 of 264Semiconductor Devices

As the doping to a pure semiconductor increases, the bulk resistance of the semi-conductor:

ARemains the same
BIncreases
CDecreases
DNone of the above
Answer is hidden
Question 130 of 264Semiconductor Devices

The reverse current in a diode is of the order of:

AkA
BmA
CμA
DA
Answer is hidden
Question 131 of 264Semiconductor Devices

The forward voltage drop across a silicon diode is about:

A2.5 V
B3 V
C10 V
D0.7 V
Answer is hidden
Question 132 of 264Semiconductor Devices

A zener diode has:

AOne pn junction
BTwo pn junctions
CThree pn junctions
DNone of the above
Answer is hidden
Question 133 of 264Semiconductor Devices

A zener diode is used as:

AAn amplifier
BA voltage regulator
CA rectifier
DA multivibrator
Answer is hidden
Question 134 of 264Semiconductor Devices

Why is there a sudden increase in current in Zener diode?

ADue to the rupture of ionic bonds
BDue to rupture of covalent bonds
CDue to viscosity
DDue to potential difference
Answer is hidden
Question 135 of 264Semiconductor Devices

What is the semiconductor diode used as?

AOscillator
BAmplifier
CRectifier
DModulator
Answer is hidden
Question 136 of 264Semiconductor Devices

What is a Zener diode used as?

AOscillator
BRegulator
CRectifier
DFilter
Answer is hidden
Question 137 of 264Semiconductor Devices

When a junction diode is reverse biased, what causes current across the junction?

ADiffusion of charges
BNature of material
CDrift of charges
DBoth drift and diffusion of charges
Answer is hidden
Question 138 of 264Semiconductor Devices

When transistors are used in digital circuits they usually operate in the:

AActive region
BSaturation and cutoff regions
CBreakdown region
DLinear region
Answer is hidden
Question 139 of 264Semiconductor Devices

A current ratio of IC/IE is usually less than one and is called:

AAlpha
BBeta
CTheta
DNone of above
Answer is hidden
Question 140 of 264Semiconductor Devices

In a C-E configuration, an emitter resistor is used for:

AStabilization
BAc signal bypass
CCollector bias
DHigher gain
Answer is hidden
Question 141 of 264Semiconductor Devices

Voltage-divider bias provides:

AAn unstable Q point
BA stable Q point
CA Q point that easily varies with changes in the transistor's current gain
DA Q point that is stable and easily varies with changes in the transistor's current gain
Answer is hidden
Question 142 of 264Semiconductor Devices

The C-B configuration is used to provide which type of gain?

AVoltage
BCurrent
CResistance
DPower
Answer is hidden
Question 143 of 264Semiconductor Devices

A transistor may be used as a switching device or as a:

AFixed resistor
BTuning device
CRectifier
DVariable resistor
Answer is hidden
Question 144 of 264Semiconductor Devices

Which is beta's current ratio?

AIC/IB
BIC/I
CIB/I
DI/IB
Answer is hidden
Question 145 of 264Semiconductor Devices

Most of the electrons in the base of an NPN transistor flow:

AOut of the base lead
BInto the collector
CInto the emitter
DInto the base supply
Answer is hidden
Question 146 of 264Semiconductor Devices

In a transistor, collector current is controlled by:

ACollector voltage
BBase current
CCollector resistance
DAll of the above
Answer is hidden
Question 147 of 264Semiconductor Devices

Total emitter current is:

AI-IC
BIC+I
CIB+IC
DIB-IC
Answer is hidden
Question 148 of 264Semiconductor Devices

What is the collector current for a C-E configuration with a beta of 100 and a base current of 30 μA?

A30\ μA
B.3\ μA
C3 mA
D3 MA
Answer is hidden
Question 149 of 264Semiconductor Devices

Which of the following condition is true for cut-off mode?

AThe collector current is zero
BThe collector current is proportional to the base current
CThe base current is non zero
DAll of the mentioned
Answer is hidden
Question 150 of 264Semiconductor Devices

For a pnp transistor in the active region the value of Vce (potential difference between the collector and the base) is:

ALess than 0.3V
BLess than 3V
CGreater than 0.3V
DGreater than 3V
Answer is hidden
Question 151 of 264Semiconductor Devices

Where should be the bias point set in order to make transistor work as an amplifier?

ACut off
BActive
CSaturation
DCut off and Saturation
Answer is hidden
Question 152 of 264Semiconductor Devices

Q point can be set to work on active region requires particular conditions. What are they?

ABE reverse biased and BC forward biased
BBE reverse biased and BC reverse biased
CBE forward biased and BC reverse biased
DBE forward biased and BC forward biased
Answer is hidden
Question 153 of 264Semiconductor Devices

For a fixed bias circuit having RC=4.7KΩ and RB=1KΩ, VCC=10V and base current at Bias point was found to be 0.2μA, Find β?

A100
B106
C125
D0
Answer is hidden
Question 154 of 264Semiconductor Devices

For a Voltage divider bias circuit, having R1=R2=10 KΩ, RC=4.7 KΩ, R=1 KΩ, What is the value of collector current at saturation if VCC=10V?

A1A
B10mA
C0.87mA
D1mA
Answer is hidden
Question 155 of 264Semiconductor Devices

For a Voltage divider circuit having RC=R1=R2=R=1KΩ, if VCC=20V, find IC when Vce=VCC?

A1mA
B2mA
C20mA
D0
Answer is hidden
Question 156 of 264Semiconductor Devices

What is Stability factor?

ARatio of change in collector current to change in a current amplification factor
BRatio of change in collector current to change in base current
CCurrent amplification factor
DRatio of base current to collector current
Answer is hidden
Question 157 of 264Semiconductor Devices

The collector current (IC) that is obtained in a collector to base biased transistor is:

A(VCC-VBE)/RB
B(VCC+VBE)/RB
C(VCE-VBE)/RB
D(VCE+VBE)/RB
Answer is hidden
Question 158 of 264Semiconductor Devices

The demerit of a collector to base bias is:

AIts need of high resistance values
BIts dependence on β
CIts independence on β
DThe positive feedback produced by the base resistor
Answer is hidden
Question 159 of 264Semiconductor Devices

For emitter feedback bias, to make IC independent of DC current gain, which of the following condition is required?

AR \gg RB/dc current gain
BR \gg R/dc current gain
CRB \gg RC/dc current gain
DR \gg RC/dc current gain
Answer is hidden
Question 160 of 264Semiconductor Devices

In order to make an amplifier which of the following biasing technique is used more?

AFixed bias
BSelf bias
CCollector to base bias
DEmitter feedback bias
Answer is hidden
Question 161 of 264Semiconductor Devices

What will be the temperature changes effects on the emitter feedback circuit?

AIncreases voltage gain
BIncreases current gain
CDoes not affect the gain
DDecreases both current and voltage gain
Answer is hidden
Question 162 of 264Semiconductor Devices

Which of the following statement is the main disadvantage of emitter feedback bias?

AReduces the gain
BPositive feedback
CDesign is difficult
DHigh output impedance
Answer is hidden
Question 163 of 264Semiconductor Devices

The thermal runway is avoided in a self-bias because:

Aof its independence of
Bof the positive feedback produced by the emitter resistor
Cof the negative feedback produced by the emitter resistor
Dof its dependence of β
Answer is hidden
Question 164 of 264Semiconductor Devices

The stability factor for a self-biased transistor is:

ARB/R
BRₜₕ/R
C1 + Rₜₕ/R
D1 + R/Rₜₕ
Answer is hidden
Question 165 of 264Semiconductor Devices

Which of the following terminals does not belong to the MOSFET?

ADrain
BGate
CBase
DSource
Answer is hidden
Question 166 of 264Semiconductor Devices

Choose the correct statement:

AMOSFET is an uncontrolled device
BMOSFET is a voltage controlled device
CMOSFET is a current controlled device
DMOSFET is a temperature controlled device
Answer is hidden
Question 167 of 264Semiconductor Devices

Choose the correct statement:

AMOSFET is a unipolar, voltage controlled, two terminal device
BMOSFET is a bipolar, current controlled, three terminal device
CMOSFET is a unipolar, voltage controlled, three terminal device
DMOSFET is a bipolar, current controlled, two terminal device
Answer is hidden
Question 168 of 264Semiconductor Devices

The controlling parameter in MOSFET is:

AVds
BIg
CVgs
DIs
Answer is hidden
Question 169 of 264Semiconductor Devices

How does the MOSFET differ from the JFET?

AJFET has a p-n junction
BThey are both the same
CJFET is small in size
DMOSFET has a base terminal
Answer is hidden
Question 170 of 264Semiconductor Devices

The N-channel MOSFET is considered better than the P-channel MOSFET due to its:

ALow noise levels
BTTL compatibility
CLower input impedance
DFaster operation
Answer is hidden
Question 171 of 264Semiconductor Devices

Which factor/s play/s a crucial role in determining the speed of CMOS logic gate?

ALoad capacitance
BSupply voltage
CGain factor of MOS
DAll of the above
Answer is hidden
Question 172 of 264Semiconductor Devices

What will be the phase shift of feedback circuit in RC phase shift oscillator?

A360^\circ phase shift
B180^\circ phase shift
C90^\circ phase shift
D60^\circ phase shift
Answer is hidden
Question 173 of 264Semiconductor Devices

How many RC stages are used in the RC phase shift oscillator?

ASix
BTwo
CFour
DThree
Answer is hidden
Question 174 of 264Semiconductor Devices

Calculate the frequency of oscillation for RC phase shift oscillator having the value of R and C as 352 and 3.7μF respectively:

A1230 Hz
B204 Hz
C502Hz
D673 Hz
Answer is hidden
Question 175 of 264Semiconductor Devices

The condition for zero phase shift in wein bridge oscillator is achieved by:

AConnecting feedback to non-inverting input terminal of op-amp
BBalancing the bridge
CApplying parallel combination of RC to the feedback network
DAll of the mentioned
Answer is hidden
Question 176 of 264Semiconductor Devices

Only the condition β A = \_\_\_\_\_\_\_\_\_\_ must be satisfied for self-sustained oscillations to result:

A0
B1
C-1
DNone of the above
Answer is hidden
Question 177 of 264Semiconductor Devices

This stage network circuit diagram (with three cascading RC loops) is a __________ oscillator:

APhase-shift
BWien bridge
CColpitts
DHartley
Answer is hidden
Question 178 of 264Semiconductor Devices

The feedback signal in a(n) __________ oscillator is derived from an inductive voltage divider in the LC circuit:

AHartley
BArmstrong
CColpitts
DAll of the above
Answer is hidden
Question 179 of 264Semiconductor Devices

For a phase-shift oscillator, the gain of the amplifier stage must be greater than:

A19
B29
C30
D1
Answer is hidden
Question 180 of 264Semiconductor Devices

What is the minimum frequency at which a crystal will oscillate?

ASeventh harmonic
BThird harmonic
CFundamental
DSecond harmonic
Answer is hidden
Question 181 of 264Semiconductor Devices

The bridge circuit diagram showing an op-amp with components R1, C1, R2, C2 is a __________ oscillator:

APhase-shift
BWien bridge
CColpitts
DHartley
Answer is hidden
Question 182 of 264Semiconductor Devices

How a triangular wave generator is derived from square wave generator?

AConnect oscillator at the output
BConnect Voltage follower at the output
CConnect differential at the output
DConnect integrator at the output
Answer is hidden
Question 183 of 264Semiconductor Devices

Output of an integrator producing waveforms of unequal rise and fall time are called:

ATriangular waveform
BSawtooth waveform
CPulsating waveform
DSpiked waveform
Answer is hidden
Question 184 of 264Semiconductor Devices

Which of the following is required for oscillation?

Aβ A > 1
BThe phase shift around the feedback network must be 180°.
CBoth β A > 1 and the phase shift around the feedback network must be 180°.
DNone of the above
Answer is hidden
Question 185 of 264Semiconductor Devices

An oscillator converts:

Aa.c. power into d.c. power
Bd.c. power into a.c. power
CMechanical power into a.c. power
DNone of the above
Answer is hidden
Question 186 of 264Semiconductor Devices

In an LC transistor oscillator, the active device is:

ALC tank circuit
BBiasing circuit
CTransistor
DNone of the above
Answer is hidden
Question 187 of 264Semiconductor Devices

In an LC circuit, when the capacitor energy is maximum, the inductor energy is..........

AMinimum
BMaximum
CHalf-way between maximum and minimum
DNone of the above
Answer is hidden
Question 188 of 264Semiconductor Devices

In an LC oscillator, the frequency of oscillator is __________ L or C:

AProportional to square of
BDirectly proportional to
CIndependent of the values of
DInversely proportional to square root of
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Question 189 of 264Semiconductor Devices

An oscillator produces.... oscillations:

ADamped
BUndamped
CModulated
DNone of the above
Answer is hidden
Question 190 of 264Semiconductor Devices

An oscillator employs...... feedback:

APositive
BNegative
CNeither positive nor negative
DData insufficient
Answer is hidden
Question 191 of 264Semiconductor Devices

Hartley oscillator is commonly used in..

ARadio receivers
BRadio transmitters
CTV receivers
DNone of the above
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Question 192 of 264Semiconductor Devices

In a phase shift oscillator, we use __________ RC sections:

ATwo
BThree
CFour
DNone of the above
Answer is hidden
Question 193 of 264Semiconductor Devices

A Wien bridge oscillator uses __________ feedback:

AOnly positive
BOnly negative
CBoth positive and negative
DNone of the above
Answer is hidden
Question 194 of 264Semiconductor Devices

The piezoelectric effect in a crystal is..

AA voltage developed because of mechanical stress
BA change in resistance because of temperature
CA change in frequency because of temperature
DNone of the above
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Question 195 of 264Semiconductor Devices

If the crystal frequency changes with temperature, we say that crystal has __________ temperature coefficient:

APositive
BZero
CNegative
DNone of the above
Answer is hidden
Question 196 of 264Semiconductor Devices

The crystal oscillator frequency is very stable due to __________ of the crystal:

ARigidity
BVibrations
CLow Q
DHigh Q
Answer is hidden
Question 197 of 264Semiconductor Devices

An oscillator differs from an amplifier because it:

AHas more gain
BRequires no input signal
CRequires no D.C. supply
DAlways has the same input
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Question 198 of 264Semiconductor Devices

For an oscillator to properly start, the gain around the feedback loop must initially be:

A1
BGreater than 1
CLess than 1
DEqual to attenuation of feedback circuit
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Question 199 of 264Semiconductor Devices

A class A power amplifier uses:

ATwo transistors
BOne transistor
CThree transistors
DFour transistors
Answer is hidden
Question 200 of 264Semiconductor Devices

The maximum efficiency of resistance loaded class A power amplifier is:

A5%
B35%
C25%
D50%
Answer is hidden
Question 201 of 264Semiconductor Devices

The maximum efficiency of transformer coupled class A power amplifier is:

A50%
B25%
C30%
D5%
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Question 202 of 264Semiconductor Devices

Power amplifiers handle __________ signals compare to voltage amplifiers:

ASmall
BLarge
CVery small
DEqual
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Question 203 of 264Semiconductor Devices

In class A operation, the operating point is generally located __________ of the D.C. load line:

AAt cut off point
BC. load line: A. At cut off point B.
Cload line: A. At cut off point B. At the middle C. At saturation point
DIn active region
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Question 204 of 264Semiconductor Devices

A power amplifier has comparatively __________ β:

ASmall
BLarge
CVery large
DSame
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Question 205 of 264Semiconductor Devices

A class A power amplifier is sometimes called:

AReciprocating
BSingle ended
CSymmetrical
DDifferential
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Question 206 of 264Semiconductor Devices

When no signal is applied, the approximate collector efficiency of class A power amplifier is:

A25%
B10%
C0%
D50%
Answer is hidden
Question 207 of 264Semiconductor Devices

The maximum A.C. power output from a class A power amplifier is 10 W. What should be the minimum power rating of the transistor used?

A20W
BC. power output from a class A power amplifier is 10 W. What should be the minimum power rating of the transistor used? A. 20W B.
Cpower output from a class A power amplifier is 10 W. What should be the minimum power rating of the transistor used? A. 20W B. 5 W C. 25W
D50W
Answer is hidden
Question 208 of 264Semiconductor Devices

The most costly coupling is __________ coupling:

ATransformer
BImpedance
CRC
DDirect
Answer is hidden
Question 209 of 264Semiconductor Devices

Where does the Q point lie for class B amplifier?

AActive
BCut off
CSaturation
DBetween saturation and active
Answer is hidden
Question 210 of 264Semiconductor Devices

What happens when class B amplifier is in a quiescent state?

ANo current flows through the transistor
BMaximum current flows through the transistor
CHalf of the maximum current flows through the transistor
DQuarter of the maximum current flows
Answer is hidden
Question 211 of 264Semiconductor Devices

What is the value of the maximum efficiency of the class B amplifier?

A25%
B35%
C50%
D78.5% (Note: Written as 50% to 70% in text options, correct dynamic limit is 78.5%)
Answer is hidden
Question 212 of 264Semiconductor Devices

What kind of design is used to avoid transformer usage?

AHigh resistance
BMatched load
CComplementary symmetry
DCapacitive Model
Answer is hidden
Question 213 of 264Semiconductor Devices

What is cross over distortion?

AEffect occurred during switching of transistor after every half cycle
BDistortion occurred due to resistors
CDistortion occurred due to Capacitors
DDistortion occurred due to Inductors
Answer is hidden
Question 214 of 264Semiconductor Devices

How to avoid cross over distortion?

ABy using more resistance
BBy using more capacitance
CBy using more Inductance
DBy shifting the Q point above cut off
Answer is hidden
Question 215 of 264Semiconductor Devices

For a Class B amplifier, the utilized lead power is 300W and the Dc power is 500W, find efficiency:

A30%
B60%
C90%
D100%
Answer is hidden
Question 216 of 264Semiconductor Devices

What is the conduction angle for Class B push-pull amplifier?

A0
B90
C180
D270
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Question 217 of 264Semiconductor Devices

A power transistor is a:

AThree layer, three junction device
BThree layer, two junction device
CTwo layer, one junction device
DFour layer, three junction device
Answer is hidden
Question 218 of 264Semiconductor Devices

For a power transistor, if base current IB is increased keeping Vce constant, then:

AIc increases
BIc decreases
CIc remains constant
DIc changes sinusoidal
Answer is hidden
Question 219 of 264Semiconductor Devices

Insulated-gate bipolar transistor (IGBT) has combinational advantages of:

ABJTs and SITs
BBJTs and MOSFETS
CSITs and MOSFETS
DFETs and BJTs
Answer is hidden
Question 220 of 264Semiconductor Devices

A Gate Turn Off (GTO) can be turned on by applying:

APositive gate signal
BPositive drain signal
CPositive source signal
DNegative source signal
Answer is hidden
Question 221 of 264Semiconductor Devices

The turn on time of an SCR with inductive load is 20 μs. The pulse train frequency is 2.5 KHz with mark/space ratio of 1/10, and then SCR will:

ATurn On
BNot turn on
CTurn on if inductance is removed
DTurn on if pulse frequency is increased to two times
Answer is hidden
Question 222 of 264Semiconductor Devices

What are the three terminals of a power MOSFET called?

ACollector, emitter, Gate
BDrain, source, gate
CCollector, emitter, base
DDrain, emitter, base
Answer is hidden
Question 223 of 264Semiconductor Devices

A thyristor can be termed as:

AAC switch
BDC switch
CWave switch
DSquare wave switch
Answer is hidden
Question 224 of 264Signal Generators & Oscillators

An oscillator converts:

AAC to DC
BDC to AC (continuous waveform)
CCurrent to voltage only
DHigh frequency to low frequency
Answer is hidden
Question 225 of 264Signal Generators & Oscillators

For sustained oscillation, the Barkhausen criterion requires the loop gain |Aβ| to be:

AGreater than 1
BZero
CLess than 1
DEqual to 1
Answer is hidden
Question 226 of 264Signal Generators & Oscillators

Which oscillator provides the BEST frequency stability?

AHartley oscillator
BColpitts oscillator
CCrystal oscillator
DWien bridge oscillator
Answer is hidden
Question 227 of 264Signal Generators & Oscillators

Oscillators use which type of feedback to sustain oscillations?

APositive feedback
BNegative feedback
CNo feedback
DInverse feedback
Answer is hidden
Question 228 of 264Signal Generators & Oscillators

RC oscillators are primarily used for:

AMicrowave frequencies
BRadio (RF) frequencies
CZero frequency (DC)
DLow (audio) frequencies
Answer is hidden
Question 229 of 264Signal Generators & Oscillators

A Colpitts oscillator uses which component as the tapped (split) feedback element?

AInductor
BCapacitor
CResistor
DTransformer
Answer is hidden
Question 230 of 264Signal Generators & Oscillators

LC oscillators are suitable for generating:

AAudio frequencies
BDC signals
CZero frequency
DHigh (radio) frequencies
Answer is hidden
Question 231 of 264Signal Generators & Oscillators

A Hartley oscillator uses which component in a tapped configuration?

AInductor
BCapacitor
CResistor
DDiode
Answer is hidden
Question 232 of 264Signal Generators & Oscillators

For sustained oscillation, the total phase shift around the feedback loop must be:

A45° or 90°
B0° or 360°
C180° only
D270°
Answer is hidden
Question 233 of 264Signal Generators & Oscillators

Crystal oscillators are commonly used in microprocessors because:

AThey are the cheapest option
BThey operate at DC
CThey provide highly stable and accurate frequency
DThey work only at audio range
Answer is hidden
Question 234 of 264Amplifiers & Op-Amps

A Class A amplifier conducts for what portion of the input cycle?

ALess than 180°
B180°
C360° (full cycle)
D270°
Answer is hidden
Question 235 of 264Amplifiers & Op-Amps

Which amplifier class is most efficient but only used in RF applications?

AClass C
BClass A
CClass AB
DClass B
Answer is hidden
Question 236 of 264Amplifiers & Op-Amps

Crossover distortion is a characteristic problem of which amplifier class?

AClass A
BClass B
CClass C
DTuned amplifiers
Answer is hidden
Question 237 of 264Amplifiers & Op-Amps

An ideal op-amp has an open-loop gain that is:

AZero
BUnity (1)
C100
DInfinite
Answer is hidden
Question 238 of 264Amplifiers & Op-Amps

Class AB amplifiers are designed to solve which problem of Class B?

ALow gain
BCrossover distortion
CHigh cost
DLow frequency response
Answer is hidden
Question 239 of 264Amplifiers & Op-Amps

The two input terminals of an operational amplifier are:

ASource and drain
BBase and emitter
CAnode and cathode
DInverting (−) and non-inverting (+)
Answer is hidden
Question 240 of 264Amplifiers & Op-Amps

An ideal op-amp has an input impedance that is:

AInfinite
BZero
CEqual to output impedance
D50 Ω
Answer is hidden
Question 241 of 264Amplifiers & Op-Amps

A push-pull output stage uses:

AOne transistor for the whole cycle
BA diode as the active element
CAn LC tank circuit
DTwo transistors — one for each half-cycle
Answer is hidden
Question 242 of 264Amplifiers & Op-Amps

When negative feedback is applied to an op-amp, both inputs are driven to approximately the same voltage. This is called:

ACrossover effect
BVirtual short
CResonance
DSaturation
Answer is hidden
Question 243 of 264Amplifiers & Op-Amps

A tuned amplifier amplifies signals:

AAt all frequencies equally
BOnly at DC
CWithin a narrow band around its resonant frequency
DOnly above 1 MHz
Answer is hidden
Question 244 of 264Basic Electrical & Electronics

When a cylinder is unrolled (opened in rope form), what shape is formed?

AInvolute
BHelix
CCycloid
DRectangle
Answer is hidden
Question 245 of 264Basic Electrical & Electronics

How many transistors does a class B push-pull amplifier use?

A1
B2
C3
D4
Answer is hidden
Question 246 of 264Basic Electrical & Electronics

In which region does a class B amplifier operate?

ASaturation
BCut-off
CActive
DLinear
Answer is hidden
Question 247 of 264Basic Electrical & Electronics

Which quantity remains constant (same) throughout a series circuit?

AVoltage
BCurrent
CResistance
DPower
Answer is hidden
Question 248 of 264Basic Electrical & Electronics

In a star (Y) connected three-phase system, what is the relationship between line voltage (V) and phase voltage (Vₚₕ)?

AV = Vₚₕ
BV = √3 × Vₚₕ
CV = Vₚₕ / √3
DV = 3 × Vₚₕ
Answer is hidden
Question 249 of 264Basic Electrical & Electronics

What is the primary advantage of CMOS logic technology?

AHighest switching speed
BMinimum power consumption
CHighest noise margin
DMaximum fan-out
Answer is hidden
Question 250 of 264Basic Electrical & Electronics

What type of feedback do oscillators use to sustain oscillations?

ANegative
BPositive
CZero
DMixed
Answer is hidden
Question 251 of 264Basic Electrical & Electronics

Which theorem gives the condition for maximum power transfer from a source to a load?

ANorton's Theorem
BThevenin's Theorem
CMaximum Power Transfer Theorem
DSuperposition Theorem
Answer is hidden
Question 252 of 264Basic Electrical & Electronics

According to Ohm's Law, which relationship is correct?

ACurrent = Voltage / Resistance
BResistance = Voltage × Current
CVoltage = Current / Resistance
DPower = Voltage + Current
Answer is hidden
Question 253 of 264Basic Electrical & Electronics

Three equal resistors in series dissipate 10 W. How much power do they dissipate when connected in parallel (same supply voltage)?

A10 W
B30 W
C90 W
D270 W
Answer is hidden
Question 254 of 264Basic Electrical & Electronics

A semiconductor is primarily used for:

AStoring electrical energy
BConverting AC to DC
CControlling electrical current
DAmplifying magnetic fields
Answer is hidden
Question 255 of 264Basic Electrical & Electronics

Two copper wires of the same length have cross-sectional area ratio 1 : 4. What is the ratio of their resistances (small : large)?

A1 : 4
B1 : 2
C4 : 1
D2 : 1
Answer is hidden
Question 256 of 264Basic Electrical & Electronics

A wire has resistance 40 Ω. Another wire of the same length has 4× the cross-sectional area. What is the resistance of the second wire?

A160 Ω
B40 Ω
C20 Ω
D10 Ω
Answer is hidden
Question 257 of 264Basic Electrical & Electronics

The Superposition Theorem is NOT applicable to which type of circuit analysis?

APower calculations
BVoltage calculations
CCurrent calculations
DResistive circuits
Answer is hidden
Question 258 of 264Basic Electrical & Electronics

The current through a capacitor is known as:

AConduction current
BLeakage current
CDisplacement current
DEddy current
Answer is hidden
Question 259 of 264Basic Electrical & Electronics

A bridge rectifier operating at 50 Hz produces an output of:

A50 Hz pulsating DC
B100 Hz pulsating DC
C25 Hz pulsating DC
DPure DC
Answer is hidden
Question 260 of 264Basic Electrical & Electronics

An inductor and resistor are connected in series and a DC voltage V is applied. At steady state, what is the current?

AV/R
BV/(R+XL)
CZero
DV/XL
Answer is hidden
Question 261 of 264Basic Electrical & Electronics

Three resistors each of 2 Ω are connected in delta. What is the equivalent resistance between any two terminals?

A2 Ω
B1.333 Ω
C6 Ω
D3 Ω
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Question 262 of 264Basic Electrical & Electronics

A 1 Ω resistor is connected in parallel with a 3 Ω resistor. What is the equivalent resistance?

A4 Ω
B0.75 Ω
C2 Ω
D1.5 Ω
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Question 263 of 264Basic Electrical & Electronics

What is the Standing Wave Ratio (SWR) when the reflection coefficient is 0.8?

A1.8
B4.5
C0.8
D9
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Question 264 of 264Basic Electrical & Electronics

A transmission line has Z₀ = 50 Ω and termination impedance Za = 75 Ω. What is the SWR and reflection coefficient?

ASWR = 1.5, RC = 0.2
BSWR = 2.5, RC = 0.4
CSWR = 1.5, RC = 0.5
DSWR = 3, RC = 0.6
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NEXT CHAPTER →Ch 2: Digital Logic and Microprocessor