Register
Number
|
(Established
under section 3 of UGC Act,1956)
Course & Branch :B.E/B.Tech -
CSE/E&C/ECE/EEE/EIE/ETCE/IT
Title of the Paper :Physics of Electronics
& Materials Max. Marks:80
Sub. Code :6C0017(2008/2009) Time
: 3 Hours
Date :16/12/2014 Session
:AN
________________________________________________________________________________________________
PART -
A (10 x 2 = 20)
Answer ALL the
Questions
1. Write a
note on AC Josephson effect
2. What will happen to transition temperature if the atomic weight
is increased?
3. Define
electric flux
4. What is
meant by displacement current?
5. Describe
decimal number and Binary number?
6. Convert the decimal number (775.224)10 into octal
umber.
7. Define refractive index?
8. What are meridional and skew rays?
9. What is relative permeability (µr) of a medium?
10. What is meant by local field or internal field?
PART – B (5
x 12 = 60)
Answer All the Questions
11. (a) Define electrical and thermal conductivity and deduce the
expressions for the same
(b) Distinguish between Electrical and thermal
conductivities.
(or)
12. (a) Classify superconductors based on critical field
(b) Give some applications of superconductors.
13. Derive the wave equations for a transverse electric and magnetic
fields in free Space by using Maxwell’s equations.
(or)
14. Derive an expression of Continuity equation by the principle of
conservation of charge.
15. (a) Explain
gray code with its suitable example.
(b)
Convert the following
(i).
(713)8 into binary
(ii)
(713)8 into decimal
(iii)
(713)8 into hexadecimal.
(or)
16. Write a
short note on
(a) ASCII
and excess 3 code.
(b) Using
1’s complement method, Subtract (0 1 1 0 1)2 from
(1 1 0 1 1)2
17. Explain different types of loss that occur in the propagation of
light through the optical fiber.
(or)
18. (a) Explain the principle
behind the propagation of light through the fiber.
(b) List out the advantages of optical
fiber communication over conventional communication.
19. Discuss in detail the soft and hard magnetic materials.
(or)
20. Derive the expression for internal or local electric field in
dielectric materials.
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