Wednesday, 7 June 2017

30 TOP Aeronautical Engineering Interview Questions and answers pdf

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1.What are the characteristics that keep solid and fluid different?
• When the force is applied tangentially on solid then it experiences a finite deformation and shear stress that is proportional to the deformation. Whereas, when the same shear stress is applied on the surface of fluid then it experiences continuous increasing deformation where, the shear stress is proportional to the rate of change of deformation.
• The fluid dynamic is dividend in three different areas. They are as follows: Hydrodynamics (flow of liquids), Gas dynamics (flow of gases) and Aerodynamics (flow of air). Whereas, the state of, solid doesn’t represent any of the stages.

2.What are the objectives of Aerodynamics?
Aerodynamics deals with the theory of flow of air and it has many practical applications in engineering. There are some objectives that are being used in aerodynamics and these are as follows:
• It is used to predict the forces, moments and heat transfer from the bodies that is moving through the liquid.
• It deals with the movement of wings or use of the wind force. This way it requires the calculations to be done for the aerodynamic heating of the flight vehicles and the hydrodynamic forces applied on the surface of the vehicle.
• It is used to determine the flows that are moving internally through ducts. This way it makes the calculations and measurement of the flow properties that is inside the rocket and jet engines.

3.What are the sources involved in aerodynamics?
There are two sources that are involved in the case of aerodynamics forces and moments that are on the body. These forces are as follows:
• Pressure distribution: this is the distribution that is over the body surface
• Shear stress distribution: this is the distribution that is over the body surface
These sources are for the body shapes and it doesn’t matter how complex they are. The mechanism that is being used to communicate with the bodies that is moving through a fluid. Both the pressure (p) and shear stress (?) having the dimension force per unit area. This helps the movement of the body through the fluid.

4.What are the conditions given for the two flows to be dynamically similar?
To measure the dynamicity of the two flows consider two different flow fields over two different bodies. This way the conditions that get generated are as follows:
• The streamlined pattern shouldn’t be geometrically similar.
• The distribution of the volume over change in volume (V/V8), pressure over change in pressure (p/p8), and time over change in time (T/T8). These changes take place throughout the flow of the field and they remain the same against the common non-dimensional coordinates
• The force coefficient remains the same.
• There is a similarity in both the flows like the solid boundaries are geometrically similar for both flows.

5.What are the differences between continuum flow and free molecule flow?
• The flow that is moving over the body i.e. in a circular cylinder of diameter d is the continuum flow, whereas the flow that consists of individual molecules moving in random motion is the free molecule flow.
• The mean free path (?) defines the mean distance between the collisions of the molecule and if this path (?) is smaller than the scale of the body measured (d) then the flow of the body is considered as continuum flow.
• The path (?) that is of same order as the body scale then the gas molecules then the body surface will have an impact of the molecules and this is known as free molecular flow.

6.What are the differences between inviscid and viscous flow?
• Viscous flow is the flow in which the molecule moves in random fashion and transfers their mass, momentum and energy from one place to another in fluid. Whereas, an inviscid flow is the flow in which there is no involvement of friction, thermal conduction or diffusion while the molecules are moving.
• Inviscid flow consists of the limited influence of friction, thermal conduction and diffusion that is limited to thin region that is limited to the body surface. Whereas, the viscous flows involve the flows that dominates the aerodynamics of the blunt bodies like cylinder. In this the flow expands around front face of cylinder and it separates from the rear surface of it.

7.What are the differences between incompressible and compressible flows?
• Incompressible flows are the flows that have a constant density (?). Whereas, the compressible flows are those that consists of variable densities.
• The flows that exist are compressible in nature. Whereas, incompressible flows, doesn’t exist in nature or are very rare.
• Incompressible flows are used to model aerodynamic problems without loosing any detrimental accuracy i.e. most problems that exist in hydrodynamics considers the density (?) = constant. Whereas, compressible flow is hardly used as a mathematical model to, represent the hydrodynamics.
• High speed flows are and must be treated as compressible, whereas incompressible flows are not considered for high speed flows.

8.What are the different speed types of flows used in identifying Mach number?
There are four types of flows that consist of different speeds and can be identified using Mach number:
• Subsonic flow where M<1 everywhere, this is a field that is defined as subsonic if it matches the Mach number that is less than 1 at every point. These are displayed by smooth streamlines that consists of no discontinuity in slope. The flow velocity is everywhere less than the speed of sound and the disturbances are all around the flow field.
• Transonic flow, where mixed regions exist and M<1 or M>1, this is a flow field that defines that the M8 is increased just above the unity and it is formed in front of the body. These are the mixed subsonic and supersonic flows that are influenced by both the flows.
• Supersonic flow where M>1 everywhere, this type is defined when Mach number is greater than 1 at every point. They are represented by the presence of shock waves across which the flow properties and streamlines changes discontinuously.
• Hypersonic flow where the speed is greater than supersonic, this is defined when the shock waves moves closer to the body surface and the strength of the shockwave increases leading to higher temperatures between the shock and body surface.

9.What are the major sectors involved in aircraft maintenance?
There are two major sectors involved in aircraft maintenance and these are handled by certifying technician in the field of support and maintenance. These are divided into two sectors as:
• Category B1 (mechanical): these are the maintenance technicians that have good knowledge regarding the working of airframe, engine, electrical power systems and equipment. It also requires additional knowledge of aircraft structures and materials.
• Category B2 (avionic): this deals with the integrated knowledge of aircraft equipments, electrical, instrument and radar related systems. They undergo proper training to handle the aircraft equipments and gain practical experience to deal with day to day activities.

10.What are the operations performed by Category B technicians?
Category B consists of two sectors in the field of maintenance and they are divided in B1 and B2 with certain roles. The operations performed by Category B technicians are as follows:
• Activities related to scheduled on field inspections for aircraft maintenance.
• Activities of complex rectification
• Fault diagnosis on aircraft systems and their equipments.
• Modification and performing special instruction to monitor and manage the system
• Repairing of airframe and other aircrafts
• Activities performed like removal of aircraft components and fitting the required parts.
• Use of BITE (built-in test equipment) and diagnostic equipments to perform repair tasks.
• Supervising and certifying the work of other technicians involved in it.

Aeronautical Engineering Interview Questions

11.What is the main source of power in aircraft?
The main source of power is the hydraulic motor that is provided by the scheduled service and involves operations that allow technicians to solve complex system problems. This setup required certifying the technician to operate all the system the same way as it is been done with one system. The hydraulic motor needs to be operated the same way and maintained in a proper way. The alignment need to in synchronization with the aircraft auxiliary power unity (APU) before anything is done with the aircraft positioning. A standard need to, be followed to maintain the aircrafts and its parts equipped and working.

12.What are the differences in the job performed by line maintenance certifying staff and base maintenance certifying staff?
The difference that exists between the two is that line maintenance certifying staff has the responsibility to inspect, rectify and perform the related or associated maintenance activities on the aircraft on the airfield. Whereas, the base maintenance certifying staff, perform the maintenance activities away from the live aircraft areas.
The maintenance that is being performed by the line maintenance staff is restricted to use limited tools, and equipments that are present on the site to perform the first line diagnostic maintenance. Whereas, Base maintenance certifying staff is associated with the line maintenance staff as it requires inspecting and performing complex modification in the aircraft carriers.

13.What is the role performed by Category C personnel in maintenance of aircraft?
Category C personnel are responsible for maintaining the management role of controlling the progress of the base maintenance inspections and seeing the work that is getting performed. These handle the category B and category A staff and monitor their work. They are responsible for ensuring the good work that will be carried out by providing the certification of maintenance. Category C personnel upon the completion of the maintenance job done by the base maintenance staff provides the certificate to allow the servicing of the aircraft to proceed. This way the people working in the staff become eligible to perform and provide services for flight.

14.What are the safety recommendations required while maintaining aircraft?
The safety recommendations are required while dealing with the accidents and the inquiry of the aircrafts. The recommendations needed are as follows:
• CAA (Civil aviation authority) examines the applicability of self-certification of aircraft engineering and verifies the criticality of the tasks that need to be performed on the system. They also check the system for further services without doing any functional checks.
• Review of the system takes place to interpret the single components of the aircraft that is vital in its design.
• Reviewing of the quality assurance system and the reporting methods take place to encourage more better designs to be provided for the use.
• Reviewing the need to, introduce a format of job description and grades that is being provided to the engineers and managers.
• Providing a mechanism for an independent assessment to carry out the work audit and operations can be performed smoothly.

15.What are the different stress types present in aircraft operations?
Stress is a result that is caused when a solid e.g. metal bar is subjected to an external force. Stress is defined as force per unit area and the basic unit includes MN/m2, N/mm2 and Pa. There are basically three types of stress:
• Tensile stress: it is the stress that is setup when the force tries to pull the material apart.
• Compressive stress: it is the stress that is produced by the force that is trying to crush the material.
• Shear stress: is the stress that results from the force that tends to cut through the material i.e. tend to put one material slide over another one.

16.Why is strain a major factor in aircraft engineering?
Strain is when a material is altered in shape, this happens due to the fact that the force is acting on the material. The body is strained internally as well as externally without having any differences of dimension but it just has the differences at the atomic level. It is the ratio of change in dimension over the original dimension. It is very important due to the fact that building an aircraft requires the knowledge of these factors and the formulas that are associated with it to successfully implementing the parts together. There are three types of strain:
• Tensile strain
• Compressive strain and
• Shear strain

17.What are the different types of modulus involved in mechanics?
Modulus of elasticity is given by the Hooke’s law that states that stress is directly proportional to strain, while the material remains elastic. The external forces that are acting on the material is just having the sufficient to stretch the atomic bonds this way the material can also return back to the original shape. The different types of modulus are as follows:
• Modulus of rigidity: this defines the relationship between the shear stress (t ) and shear strain (? )
• Bulk modulus: this defines that if a body volume v is subjected to an increase in an external pressure then the volume will be changed by dV, this deformation will be change in volume not in shape.

18.What are the mechanical properties required to know before performing maintenance?
The mechanical properties provide the definition of the behavior of the material that is being put under the action of external forces. This is an important aspect to aeronautical engineering that is also used to gain knowledge for applications developed for aircrafts. This provides an overall view of the structure of the aircraft and the maintenance aspect of it. The properties used are as follows:
• Strength
• Stiffness,
• Specific strength and stiffness,
• Ductility,
• Toughness,
• Malleability and elasticity

19.Explain in brief about each property used in mechanics?
The properties of the mechanics are as follows:
• Strength: this is the applied force on a material that can withstand prior to fracture. It is measured by the proof or yield stress of a material that is under action.
• Working stress: this is the stress that is being imposed on a material as a result of the load that is being subjected on the material. The loads that are given must be in the elastic range.
• Proof stress: defines the tensile stress
• Ultimate tensile stress (UTS): defines of a material that is given by a relationship or its maximum load.
• Specific strength: defines the light and strong of a material that is used in aircraft making. This is done to maximize the payload and meeting all the safety requirements.
• Malleability: defines the ability to be rolled into sheets or get a shape under pressure. This includes examples of gold, copper and lead.
• Elasticity: defines the ability of a material to return to its original shape when an external force is removed from the material.

20.What is the purpose of load extension graphs?
Load extension graphs are used to show the result of mechanical test done on the material to know their certain properties for example finding out the heat treatment of a material. These graphs shows certain phases of a material when it is being tested for destruction of the properties like elastic range, limit of proportionality, etc. The material needs to obey Hooke’s law. The elastic limit needs to be at or very near to the limit of proportionality. If the limit is passed the material ceases to be proportional to the load. If the stress increases on the material then the waist reduces as the stress = force/area. This graph represents a curve that shows different stages like elastic stage, and plastic stage.

21.Why is torsion such an important feature in aircraft engines?
Torsion is used to drive shafts for aircraft engine driven pumps and motors. They are also involved in having a force behind propeller shafts, pulley assemblies and rive couplings for machinery. The shear stress is setup within the shafts and it results from the torsional loads. The size and the nature of torsional loads and stresses need to be known while making the design or else premature failure can occur. The shafts are used as a component to transmit torsional loads and twisting moments or torque. They can be a cross section or a circular component as it is more suitable to transmit the torque for pumps and motors to supply the power to the aircraft system.

22.What is the main function of propulsive thrust?
Propulsive thrust is used in aircraft system, when an aircraft is traveling through air in straight or level flight then the engine produces a thrust that is equal to the air resistance or the drag force on the aircraft. If the engine thrust exceeds the drag then the aircraft will accelerate and if drag exceeds the engine thrusts then the aircraft system will slow down. The thrust force that is used for aircraft propulsion should always come from air or gas pressure. The forces that are external always act on the engine or propeller. This propeller can be driven either by a piston or a gas turbine engine. If there is a use of jet engine then the high velocity exhaust gas is produced.

23.Why is the study of gyroscopes motion required to learn aircraft applications?
Gyroscopic motion is considered as an important study for aircraft application for the inertia and momentum of the body that is used in circular motion. The momentum is the product of the mass of a body and its velocity. This is a measure of the quantity of motion of a body. Inertia is the force that doesn’t allow any change to happen in momentum. Gyroscope is the rotating mass that can be moved freely at right angles to its plane of rotation. This utilizes the gyro rotor or gyroscopic inertia to provide the motion unless it is compelled by an external force to change the state. This uses property of rigidity as gyroscope acts as a reference point in space.

24.What are the laws of gyro-dynamics?
Gyro-dynamics deals with gyroscopic motion that is used for creating aircraft application as it allows inertia and momentum of the body. These laws consist of the two properties of rigidity and precession to provide the visible effects gyro-dynamics. These are as follows:
• If a rotating body is mounted and it is free to move about any axis that passes through the center of mass, then the spin axis that is used will remain fixed in inertial space without displacing any of the frame.
• If a constant torque is applied to any direction such as about an axis, or perpendicular to the axis, then the spin axis will move about an axis that is mutually perpendicular to both the spin and the torque axis.

25.What is being expressed by Sperry’s rule of precession?
Sperry’s rule of precession describes about the direction in which the precession takes place. This precession is dependent on the direction of rotation for the mass and the axis of the torque that is applied on the material. It provides a guide to the direction of precession that allows easy finding of the direction of the applied torque. This also helps in finding out the direction of the rotation of gyro-wheel. If the torque is applied and is perpendicular to the spin axis then it can be transferred as a force.

26.What are the elements required to display oscillatory motion?
The elements required to display oscillatory motion are as follows:
Period: this is related to the time and it signifies the time that elapses in between the motion that will repeat itself after some time again. Oscillatory motions allow themselves to be repeated after equal intervals of time and this is called as periodic.
• Cycle: it represents the completion of one period and it also signifies the motion that is completed in one period.
• Frequency: defines the number of cycles completed in unit time.
• Amplitude: defines the distance from one point to another or from highest to lowest point of the motion from the central position.

27.What are the different lift augmentation devices present?
Lift augmentation devices provides flaps that are moving wing sections that increase wing camber and provide an angel of attack. Flaps have their own use like if an aircraft takes off and land in a short distance then the wings of it should produce sufficient lift at lower speed. Flaps provide a way to slow down the aircraft. There two categories and they are as follows:
• Trailing edge flaps includes different flaps like
• Plain flap that is used to retract the complete section of trailing edge and it is used in downward.
• Split flap gets formed by the hinged lower part of trailing edge and the lowered top surface remains unchanged and it eliminates the airflow that occurs over the top of the surface of the plain flap.
• Leading edge flaps: is used to augment the low speed lift that is swept on the wing aircraft. They help in increase the camber and allow the coupling to operate together with the trailing edge flaps.

28.What are the steps required to solve the problems of aircraft flying high and at very large speed?
There are various steps required to solve the problems of aircraft flying high and at very large speed are as follows:
• Build stiff wings that allow and provide the resistance to torsional diversion beyond the maximum speed of the aircraft.
• Use two sets of ailerons and one outboard pair that can be operated at low speeds.
• Use of one inboard pair that can be used to operate on high speeds, this will have less twisting impact when the ailerons are positioned outboard.
• Use spoilers that can be positioned independently or can be paired with ailerons. These reduce the lift on the down going wing by interrupting the airflow over the top surface.

29.What are the functions performed by rudder?
The rudder is involved in providing the movement to the ports that gives a lift force to starboard. This will allow the aircraft to turn and uses the ailerons effectively to bank the aircraft by minimum use of rudder. The functions performed by rudder are as follows:
• It is used with different applications that are involved in taking off and landing to keep aircraft straight.
• Providing assistance that is, limited only for the aircraft to turn correctly.
• Used in applications during spin to reduce the roll rate of the aircraft and there are some applications that provides low speeds and high angles to allow the raising of the wings.

30.What are the criteria need to be followed for an aircraft to be longitudinal statically stable?
The criteria that are required for an aircraft to be longitudinal statically stable, is:
• To have a nose-down pitching disturbance that is used to produce the aerodynamics forces to give a nose-up restoring moment.
• This restoring moment that is produced should be large enough to return the aircraft to its original position after the disturbance.
• The requirements are met by using the tail-plain that is horizontal stabilizer used to provide the stability to the aircraft.

Aeronautical Engineering Interview Questions

Monday, 17 April 2017

Chemical Engineering Multiple Choice Questions And Answers pdf

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 Chemical Reaction Engineering

Saturday, 26 October 2013

Computer Science Engineering

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1) The time for which a piece of equipment operates is called?
a) Seek time
b) Effective time
c) Access time
d) Real time
e) None of the above
Answer:   b
2) ____ is an area of a computer that temporarily holds data that is waiting to be processed, stored, or output?
a) Memory
b) Storage
c) Input
d) Output
Answer : a
3) A computer falls into the ____ category if it is, at the time of construction, one of the fastest computers in the world?
a) minicomputer
b) supercomputer
c) microcomputer
d) mainframe
Answer : b
4) The two basic types of record-access methods are?
a) Sequential and random
b) Sequential and indexed
c) Direct and immediate
d) On-line and real time
Answer   : a
5) The first firm to mass- market a microcomputer as a personal computer was
a) IBM
b) Sperry Univac
c) Data General corporation
d) Radio Shack
Answer: c
6) An integrated circuit is?
a) A complicated circuit
b) An integrating device
c) Much costlier than a single transistor
d) Fabricated on a tiny silicon chip
Answer: d
7) A process known as ____________ is used by large retailers to study trends?
a) data mining
b) data selection
c) POS
d) data conversion
Answer: a
8) Which of the following is NOT one of the four major data processing functions of a computer?
a) gathering data
b) processing data into information
c) analyzing the data or information
d) storing the data or information
Answer: c
9) Surgeons can perform delicate operations by manipulating devices through computers instead of manually. This technology is known as?
a) robotics.
b) computer forensics.
c) simulation.
d) forecasting.
Answer: a
10) ____________ is the study of molecules and structures whose size ranges from 1 to 100 nanometers?
a) Nanoscience
b) Microelectrodes
c) Computer forensics
d) Artificial intelligence
Answer: a
11) Computers gather data, which means that they allow users to ____________ data?
a) present
b) input
c) output
d) store
Answer: b
12) The list of coded instructions is called?
a) Computer program
b) Algorithm
c) Flowchart
d) Utility programs
e) None of the above
Answer: a
13) The two broad categories of software are?
a) word processing and spreadsheet.
b) transaction and application.
c) Windows and Mac OS.
d) system and application.
Answer: d
14) Which of the following languages is more suited to a structured program?
a) PL/1
b) FORTRAN
c) BASIC
d) PASCAL
e) None of the above
Answer :d
15) A computer assisted method for the recording and analyzing of existing or hypothetical systems is?
a) Data transmission
b) Data flow
c) Data capture
d) Data processing
e) None of the above
Answer : b
16) The microcomputer, Intel MCS-80 is based on the widely used Intel?
a) 8080 microprocessor
b) 8085 microprocessor
c) 8086 microprocessor
d) 8082 microprocessor
e) None of the above
Answer : a
17) Which output device is used for translating information from a computer into pictorial form on paper?
a) Mouse
b) Plotter
c) Touch panel
d) Card punch
e) None of the above
Answer : b
18) An assembler is a?
a) Program
b) Person who assemble the parts
c) Symbol
d) Language
e) None of the above
Answer : a
19) Which type of system puts the user into direct conversation with the computer through a keyboard?
a) Real time processing
b) Interactive computer
c) Batch processing
d) Time sharing
e) None of the above
Answer:  b
20) A common boundary between two systems is called?
a) Interdiction
b) Interface
c) Interdiction
d) Surface
e) None of the above
Answer: b

Friday, 4 October 2013

Important Electrical Engineering Questions

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1. What is the voltage gain or transfer function of amplifier?
Vout/Vin

2. What does the KVAR means?
The KVAR indicates the electrical power. KVAR means “Kilo Volt Amperes with Reactive components”

3. Why use the VCB at High Transmission System ? Why can't use ACB?
Actually the thing is vacuum has high arc queching property compare to air because in VCB ,the die electric strengths equal to 8 times of air . That y always vaccum used as inHT breaker and air used as in LT .

4. What is the difference between MCB & MCCB, Where it can be used?
MCB is miniature circuit breaker which is thermal operated and use for short circuit protection in small current rating circuit. MCCB moulded case circuit breaker and is thermal operated for over load current and magnetic operation for instant trip in short circuit condition.under voltage and under frequency may be inbuilt. Normally it is used where normal current is more than 100A.

Electrical Engineering Questions

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1. What are the operation carried out in Thermal power station?
 The water is obtained in the boiler and the coal is burnt so that steam is obtained this steam is allowed to hit the turbine, the turbine which is coupled with the generator generates the electricity

2. What is the difference between Electronic regulator and ordinary rheostat regulator for fans?
 The difference between the electronic and ordinary regulator is the fact that in electronic reg. power losses tend to be less because as we minimize the speed the electronic reg. give the power necessary for that particular speed but in case of ordinary rheostat type reg. the power wastage is same for every speed and no power is saved. In electronic regulator triac is employed for speed control. by varying the firing angle speed is controlled but in rheostatic control resistance is decreased by steps to achievespeed control.

3. What is 2 phase motor?
 A two phase motor is often a motor with the the starting winding and the running winding have a phase split. e. g; ac servo motor. where the auxiliary winding and the control winding have a phase split of 90 degree.

4. What does quality factor depend on in resonance?
Quality factor q depends on frequency and bandwidth.

5. What are the types of power in electrical power?
 There are normally three types of power are counted in electrical power. They are,
• Apparent power
• Active power
• Reactive power

6. What are the advantages of VSCF wind electrical system?
Advantages of VSCF wind electrical system are:
• No complex pitch changing mechanism is needed.
• Aero turbine always keeps going at maximum efficiency point.
• Extra energy in the high wind speed region of the speed - duration curve can be extracted
• Significant reduction in aerodynamic stresses, which are associated with constant - speed operation.

7. What is slip in an induction motor?
Slip can be defined as the distinction between the flux speed (Ns) and the rotor speed (N). Speed of the rotor of an induction motor is always less than its synchronous speed. It is usually expressed as a percentage of synchronous speed (Ns) and represented by the symbol ‘S’.

8. Why link is provided in neutral of an ac circuit and fuse in phase of ac circuit?
Link is provided at a Neutral common point in the circuit from which various connection are taken for the individual control circuit and so it is given in a link form to withstand high Amps. But in the case of Fuse in the Phase of AC circuit it is designed such that the fuse rating is calculated for the particular circuit (i.e load) only.So if any malfunction happen the fuse connected in the particular control circuit alone will blow off.

9. State the difference between generator and alternator?
Generator and alternator are two devices, which converts mechanical energy into electrical energy. Both have the same principle of electromagnetic induction, the only difference is that their construction. Generator persists stationary magnetic field and rotating conductor which rolls on the armature with slip rings and brushes riding against each other, hence it converts the induced emf into dc current for external load whereas an alternator has a stationary armature and rotating magnetic field for high voltages but for low voltage output rotating armature and stationary magnetic field is used.

10. What is ACSR cable and where we use it?
ACSR means Aluminium conductor steel reinforced, this conductor is used in transmission & distribution.

Interview Questions for Electrical Engineering freshers

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1. What's electric traction?
Traction implies with the electric power for traction system i. e. for railways, trams, trolleys etc. electric traction implies use of the electricity for all these. Now a day, magnetic traction is also utilised for bullet trains. Essentially dc motors are utilized for electric traction systems.

2. What is “pu” in EE?
Pu stands for per unit in power system. (pu = actual value/ base value)

3. Define stepper motor. What is the use of stepper motor?
 The motor which work or act on the applied input pulse in it, is called as stepper motor.This stepper motor is under the category of synchronous motor, which often does not fully depend of complete cycle. It likes to works in either direction related to steps. for this purpose it mainly used in automation parts.

4. What is a differential amplifier? Also, explain CMRR.
Differential Amplifier: The amplifier, which is used to amplify the voltage difference between two input-lines neither of which is grounded, is called differential amplifier. This reduces the amount of noise which is injected into the amplifier, because any noise appearing simultaneously on both the input-terminals as the amplifying circuitry rejects it being a common mode signal.
CMRR: It can be defined as the ratio of differential voltage-gain to common made voltage gain. If a differential amplifier is perfect, CMRR will be infinite because in that case common mode voltage gain would be zero.

5.  What is use of lockout relay in ht voltage?
 A lock-out relay is generally placed in line before or after the e-stop switch so the power can be shut off at one central location. This relay is powered by the same electrical source as the control power which is operated by a key lock switch. The relay itself may have up to 24 contact points within the unit itself. This allows the control power for multiple machines to be locked out by the turn of a single key switch.

6. How can you start-up the 40w tube lite with 230v AC/DC without using any choke/Coil?
 It's possible with Electronic choke. otherwise it's not possible to ionize the particles in tube. light, with normal voltage.

7. What types domain of Laplace transforms? What behavior can Laplace transform predict how the system work?
Types domain of Laplace transforms is s-domain, Laplace transforms provide a method to find position, acceleration or voltage the system will have.

8. In the magnetic fluxes, what is the role of armature reaction?
 The armature flux has an important role for the running condition. This armature flux can oppose the main flux or it may support the main flux for better running condition. This effect of supporting and opposing of main flux to armature flux is called armature reaction.

9. Explain thin film resistors and wire-wound resistors
Thin film resistors- It is constructed as a thin film of resistive material is deposited on an insulating substrate. Desired results are obtained by either trimming the layer thickness or by cutting helical grooves of suitable pitch along its length. During this process, the value of the resistance is monitored closely and cutting of grooves is stopped as soon as the desired value of resistance is obtained.
Wire wound resistors – length of wire wound around an insulating cylindrical core are known as wire wound resistors. These wires are made of materials such as Constantan and Manganin because of their high resistivity, and low temperature coefficients. The complete wire wound resistor is coated with an insulating material such as baked enamel

10. whats the one main difference between UPS & inverter ? And electrical engineering & electronics engineering ?
uninterrupt power supply is mainly use for short time . means according to ups VA it gives backup. ups is also two types : on line and offline . online ups having high volt and amp for long time backup with with high dc voltage.but ups start with v dc with 7 amp. but inverter is startwith v,24,dc to 36v dc and 0amp to 180amp battery with long time backup.

Interview Questions in Electrical Engineering pdf free download

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1. Why electricity in India is in the multiples of 11 like 11kv, 22kv, 33kv  ?
Transformer Induced voltage equation contains 4.44 factor.
E=4.44*f*T*phi
E -Induced emf per phase
T -number of turns
f -frequency
phi -maximum flux per pole
From the equation we see that E is proportional to 4.4 and it is in turn multiple of 11.
So always transmission voltage is multiple of 11

2. Why we use ac system in India why not dc ?
Firstly, the output of power stations comes from a rotary turbine, which by it's nature is AC and therefore requires no power electronics to convert to DC. Secondly it is much easier to change the voltage of AC electricity for transmission and distribution. thirdly the cost of plant associated with AC transmission
(circuit breakers, transformers etc) is much lower than the equivilant of DC transmission AC transmission provides a number of technical advantages. When a fault on the network occurs, a large fault current  occurs. In an AC system this becomes much easier to interupt, as the sine wave current will naturally tend to zero at some point making the current easier to interrupt.

3. Which type of motor is used in trains, what is the rating of supply used explain Working principal?
Dc series is in the trains to get high starting torque while starting of the trains and operating voltage is 1500v dc.

4. Battery banks are in connected in series or parallel and why?
Battery banks are always connected in series in order to get a multiplied voltage where the AH or current capacity remaining same. Ex : 24 nos. 2V,200Ah batteries connected in series will give 48V,200Ah output (AH = Ampere hours)

5. What is inrush current?
Inrush current is the current drawn by a piece of electrically operated equipment when power is first applied. It can occur with AC or DC powered equipment, and can happen even with low supply voltages.

6. In a Tap changing transformer where is the tap connected, is it connected in the primary side or secondary side?
Tapings are connected to high voltage winding side, because of low current. If we connect tapings to low voltage side, sparks will produce while tap changing operation due to high current.

7. Why transformer ratings are in kva?
 Since the power factor of transformer is dependent on load we only define VA rating and does not include power factor .In case of motors, power factor depend on construction and hence rating of motors is in KWatts and include power factor.

8. What is difference between fuse and breaker?
 Fuses are burned at the time of over current flows in the circuit but breakers are just open(not burn) at the time of over current flow. Fuses are used in only one time but breakers are used by multiple number of times.

9. What is the difference between delta-delta, delta-star transformer?
Delta-delta transformer is used at generating station or a receiving station for Change of Voltage (i,e) generally it is used where the Voltage is high & Current is low.Delta-star is a distribution kind of transformer where from secondary star neutral is taken as a return path and this configuration is used for Step down voltage phenomena.

10. Capacitor is load free component but why ampere meter shows current when capacitor bank breaker close?
 As we know that Electrical is having two type of load, Active and Reactive .Capacitor is a reactive load which is not considering as a load,& its factor is Isin@ .Meter is design based on Current RMS value because of it meter is showing the current RMS value.
 

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