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Exam Details

SSC JE Electrical Engineering (TECHNICAL) 2013

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Questions 100
Duration 180 mins
Package AE & JE Exams - Previous Year Papers

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Difficulty distribution

Medium 60 60%
Easy 33 33%
Hard 7 7%

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Multiple Choices 100 100%

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1
2013 · Unclassified
SSC JE Electrical Engineering (TECHNICAL) 2013
The voltage wave V = Vm sin () volts is applied across an ac circuit. If the current leads the voltage by 10 and the maximum value of current is Im, then the equation of current is
A
i = Im sin () amps
B
i = Im sin () amps
C
i = Im sin () amps
D
i = Im sin () amps
2
2013 · Unclassified
SSC JE Electrical Engineering (TECHNICAL) 2013
The average value of current (Iav) of a sinusoidal wave of peak value (Im) is
A
Iavg = 2Imax
B
Iavg = 2Imax / π
C
Iav =
D
Iavg = Imax
3
2013 · Unclassified
SSC JE Electrical Engineering (TECHNICAL) 2013
The emf induced in a coil is given by e = -N where e is the emf induced, N is the number of turns and dϕ is the instantaneous flux linkage with the coil in time dt. The negative sign in the expression is due to
A
Hans Christian Oersted
B
Andre-Marie Ampere
C
Michael Faraday
D
Emil Lenz
4
2013 · Unclassified
SSC JE Electrical Engineering (TECHNICAL) 2013
The mutual inductance between two coils with coupling coefficient of 0.85 having self inductances 3H and 12H respectively will be_____
A
12.75H
B
5.1H
C
1.7H
D
0.425H
5
2013 · Unclassified
SSC JE Electrical Engineering (TECHNICAL) 2013
Resistance temperature coefficient of copper at 20C is
A
0.0045/C
B
0.0017/C
C
0.00393/C
D
0.0038/C
6
2013 · Unclassified
SSC JE Electrical Engineering (TECHNICAL) 2013
The load characteristic of dc shunt generator is determined by
A
the voltage drop is armature resistance.
B
the voltage drop due to armature reaction, voltage drop due to decreased field current and voltage drop in armature resistance.
C
the voltage drop due to armature reaction and voltage drop in armature resistance.
D
the voltage drop due to armature reaction, voltage drop due to decreased field current and voltage drops in armature resistance and field resistance.