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Chapter-1

Cathode ray oscilloscope(CRO)


Chapter-2

Semiconductors 

Chapter-3

Junction Diodes 


Chapter-4

Crystal Diode rectifiers and filters 


Chapter-5

Bipolar junction transistors and amplifiers


University Question paper

Paper-B : ELECTRONICS AND SOLID STATE DEVICES - I 

UNIT-I
Concepts of current and voltage sources, Thevenin’s theorem, Norton’s theorem, Source conversion.
CRO, Block diagram, construction and principle of working, Use of CRO for frequency, time period,
special features of dual trace, phase measurements.
Energy band diagrams in semiconductors, Direct and indirect semiconductors, Formula to calculate Position of
Fermi level in p and n semiconductors, Barrier formation, energy band diagram of p-n junction, Formula for
Depletion width, Qualitative ides of current flow mechanism in forward and reverse biased diode, v-i
characteristics, static and dynamic resistance, Depletion and diffusion capacitance, zener diode, LED, photodiode
and solar cell.

UNIT-II
Diode circuits, Clipping circuits, Rectification: half wave, full wave and bridge rectifiers, filter circuits (C, LC
and π filters), rectification efficiency and ripple factor in LC filter, voltage regulation circuit using zener diode,
voltage multiplier circuits.
Bipolar Junction transistors : Structure and working, different currents in transistor, switching action.
Characteristics of CB, CE and CC configurations, Active, cutoff and saturation regions.
Load line analysis of transistors, Q-point, Transistor biasing and stabilization of operating point, fixed bias,
collector to base bias, bias circuit with emitter resistor, voltage divider biasing circuit.
Working ans analysis of CE amplifier using h-parameters, current, voltage and power gain, input and output
impedance. Class A, B and C amplifiers.

Dive deeper into the captivating realm of physics with "Electronics and solid state devices-1," authored by Ashok Sharma and published by Modern Publishers. This expertly crafted textbook is tailored specifically for students enrolled in the BSC 3rd year, 5th semester at Punjab University, Chandigarh. As the field of condensed matter physics continues to evolve, this book serves as an essential resource for students aiming to grasp the foundational principles and applications of this dynamic discipline.


Designed to provide a comprehensive overview, "Modern Condensed Matter Physics-1" effectively bridges theoretical concepts and practical applications, ensuring that learners can not only understand but also apply what they learn in real-world scenarios. Ashok Sharma, with his adept pedagogical approach, breaks down complex topics into digestible segments, making advanced physics accessible and engaging.


In the initial chapters, students are introduced to the fundamental aspects of crystal structure, laying the groundwork for their understanding of how atoms interact to form solid materials. This introduction is crucial because it sets the stage for exploring more advanced concepts, such as crystal diffraction and the reciprocal lattice. By understanding these principles, students can better appreciate how materials are characterized and tested, equipping them with skills that are essential for experimental physics.


As students progress through the text, they encounter the crucial ideas of band theory and the free electron theory of metals. Here, they learn how electron behavior affects the electrical and thermal properties of materials. Ashok Sharma presents these topics with clarity, ensuring that students can relate abstract concepts to tangible phenomena in everyday materials. Additionally, the section on semiconductors is particularly relevant given the increasing importance of these materials in modern technology.


The inclusion of university question papers at the end of the book offers students a unique opportunity to solidify their understanding and prepare effectively for exams. These practice papers are designed to challenge learners and encourage them to apply their knowledge comprehensively, ensuring that they are well-prepared for their assessments at Punjab University.

Chapter-1

Cathode ray oscilloscope(CRO)


Chapter-2

Semiconductors 

Chapter-3

Junction Diodes 


Chapter-4

Crystal Diode rectifiers and filters 


Chapter-5

Bipolar junction transistors and amplifiers


University Question paper

Have Doubts Regarding This Product ? Ask Your Question

Paper-B : ELECTRONICS AND SOLID STATE DEVICES - I 

UNIT-I
Concepts of current and voltage sources, Thevenin’s theorem, Norton’s theorem, Source conversion.
CRO, Block diagram, construction and principle of working, Use of CRO for frequency, time period,
special features of dual trace, phase measurements.
Energy band diagrams in semiconductors, Direct and indirect semiconductors, Formula to calculate Position of
Fermi level in p and n semiconductors, Barrier formation, energy band diagram of p-n junction, Formula for
Depletion width, Qualitative ides of current flow mechanism in forward and reverse biased diode, v-i
characteristics, static and dynamic resistance, Depletion and diffusion capacitance, zener diode, LED, photodiode
and solar cell.

UNIT-II
Diode circuits, Clipping circuits, Rectification: half wave, full wave and bridge rectifiers, filter circuits (C, LC
and π filters), rectification efficiency and ripple factor in LC filter, voltage regulation circuit using zener diode,
voltage multiplier circuits.
Bipolar Junction transistors : Structure and working, different currents in transistor, switching action.
Characteristics of CB, CE and CC configurations, Active, cutoff and saturation regions.
Load line analysis of transistors, Q-point, Transistor biasing and stabilization of operating point, fixed bias,
collector to base bias, bias circuit with emitter resistor, voltage divider biasing circuit.
Working ans analysis of CE amplifier using h-parameters, current, voltage and power gain, input and output
impedance. Class A, B and C amplifiers.

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