Principle of Electrical Engineering | Question Paper 2077 | CTEVT Diploma | 1st Year/2nd Part

principle of electrical engineering question paper 2077 ctevt diploma 1st year 2nd part download pdf
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Principle-of-Electrical-Engineering-Question-Paper-2077-CTEVT-Diploma-1st-Year-2nd-Part
Council for Technical Education and Vocational Training
Office Of The Controller Of Examinations
Sanothimi, Bhaktapur
Regular/Back Exam - 2077, Chaitra
Program : Diploma In Electrical/Electrical and Electronics Engineering
Level: DIPLOMA
Year/Part: First Year/Second Part (2008, 2013, 2014 Course)
Subject: Principle of Electrical Engineering
Full Marks - 80
Pass Marks - 32
Time - 3 hrs.

DOWNLOAD PDF | of Question Paper | Principle of Electrical Engineering | CTEVT | 1st Year/2nd Part | 2077.

Candidates are required to give their answers in their own words as far as practicable. The figures in the margin indicate full marks.

Also Check:

Download PDF of Applied Mechanics | Question Paper 2077 | CTEVT Diploma | 1st Year/2nd Part.

Download PDF of Engineering Mathematics-II | Question Paper 2077 | CTEVT Diploma | 1st Year/2nd Part.

Download PDF of Engineering Physics-II | Question Paper 2077 | CTEVT Diploma | 1st Year/2nd Part.

Download PDF of Engineering Chemistry-II | Question Paper 2077 | CTEVT Diploma | 1st Year/2nd Part.

Download PDF of Safety Rules and Regulation | Question Paper 2077 | CTEVT Diploma | 1st Year/2nd Part.

Download PDF of Principle of Electrical Engineering | Question Paper 2077 | CTEVT Diploma | 1st Year/2nd Part.

Attempt Any Five questions.

1.

a) Define the terms; Electric current, voltage, power and energy. [8]

b) Define Resistor and capacitor. What will be the current drawn by a lamp rated at 250v, 40 watts connected to a 230v supply? [4+4=8]

2.

a) State and prove Ohm's law with suitable example. [8]

b) The effective resistance of two resistors connected in series, is 100𝛺. When connected in parallel the effective value is 24𝛺. Determine the values of the two resistors. [8]

3.

a) Differentiate between Dia, para and ferro-magnetic material. [8]

b) Derive series and parallel connection of capacitor. [8]

4.

a) Define magnetic field and magnetic flux. Also explain the hysteresis loop for magnetic material. [8]

b) Derive the energy stored in current carrying inductor. [8]

5.

a) What is Lenz's law? Explain dynamically induced emf and statistically induced emf. [10]

b) Explain in detail about Faraday's laws of Electromagnetic induction. [6]

6. Write short notes on: (Any Four) [4x4=16]

(a) Resistance and it's variation with temperature.
(b) Electrostatic induction phenomena.
(c) KVL circuit.
(d) Faraday's law of electrolysis.
(e) Lead acid cell.
(f) Soft and hard magnetic material.

Good Luck!

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