GATE EC Question Paper 1995

GATE EC Question Paper 1995.

GATE i.e. Graduate Aptitude Test in Engineering Electronics and Communication 1995 Exam has been conducted by IISc Bangalore IIT Bombay IIT Delhi IIT Guwahati IIT Kanpur IIT Kharagpur IIT Madras IIT Roorkee. This GATE EC 1995 examination is the procedure to get the admission in M.Tech

GATE Electronics and Communication i.e. EC Question Paper, This GATE EC 1995 Question will help all the students for their exam preparation, here the question type is MCQ i.e multiple choice question answers, if this GATE EC 1995 question paper in pdf file for GATE EC you can download it in FR EC, if GATE Electronics and Communication 1995 paper in text for GATE EC you can download GATE EC 1995 page also just Go to menu bar, Click on File->then Save.

GATE EC Question Paper 1995

GATE EC 1995 Question paper Free Download PDF is available in www.oldquestionpapers.net which has been provided by many students this GATE Electronics and Communication 1995 paper is available for all the students in FR EC and also GATE EC 1995 question paper fully solved i.e with answer keys and solution.

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 1.  A DC voltage source is connected across a series R-L-C circuit. Under steady-state conditions, the applied DC voltage drops entirely across the

(a) Ronly
(b) Lonly
(c) C only
(d) R and L combination

2. Consider a DC voltage source connected to a series R-C circuit. When the steady-slate reaches, the ratio of the energy stored in the capacitor to the total energy supplied by the voltage source, is equal to

(a) 0.362
(b) 0.500
(c’) 0.632
(d) 1,000

3. Two 2 H inductance coils are connected in series and are also magnetically coupled to each other the coefficient of coupling being 0.1. The total inductance of the combination can be

(a) 0.4 H
(h) 3.2 H
(c) 4.0 H
(d) 3.3 [-1

 4. Signal flow graph is used to find

(a) stability of the system
(b) controllability of the system
(c) transfer function of the system
(d) poles of the system

 5. The final value theorem is tised to find the

(a) steady state value of the system output
(b) initial value of the system output
(c’) transient behaviour of the system output
(d) none of these

 

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