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PH3256 Questions Bank PHYSICS FOR INFORMATION SCIENCE Regulation 2021 Anna University

PH3256 Questions Bank PHYSICS FOR INFORMATION SCIENCE

PH3256 Questions Bank PHYSICS FOR INFORMATION SCIENCE Regulation 2021 Anna University free download. PHYSICS FOR INFORMATION SCIENCE Questions Bank PH3256 pdf download free.

REFERENCES:

1. Charles Kittel, Introduction to Solid State Physics, Wiley India Edition, 2019.
2. Y.B.Band and Y.Avishai, Quantum Mechanics with Applications to Nanotechnology and
Information Science, Academic Press, 2013.
3. V.V.Mitin, V.A. Kochelap and M.A.Stroscio, Introduction to Nanoelectronics, Cambridge
Univ.Press, 2008.
4. G.W. Hanson, Fundamentals of Nanoelectronics, Pearson Education (Indian Edition) 2009.
5. B.Rogers, J.Adams and S.Pennathur, Nanotechnology: Understanding Small Systems,
CRC Press, 2014. PH3256 Questions Bank

Magnetic dipole moment – atomic magnetic moments- magnetic permeability and susceptibility –
Magnetic material classification: diamagnetism – paramagnetism – ferromagnetism –
antiferromagnetism – ferrimagnetism – Ferromagnetism: origin and exchange interactionsaturation magnetization and Curie temperature – Domain Theory- M versus H behaviour – Hard
and soft magnetic materials – examples and uses-– Magnetic principle in computer data storage –
Magnetic hard disc (GMR sensor).

TEXT BOOKS: PH3256 Questions Bank

1. Jasprit Singh, “Semiconductor Devices: Basic Principles”, Wiley (Indian Edition), 2007.
2. S.O. Kasap. Principles of Electronic Materials and Devices, McGraw-Hill Education (Indian
Edition), 2020.
3. Parag K. Lala, Quantum Computing: A Beginner’s Introduction, McGraw-Hill Education
(Indian Edition), 2020.

Magnetic dipole moment – atomic magnetic moments- magnetic permeability and susceptibility –
Magnetic material classification: diamagnetism – paramagnetism – ferromagnetism –
antiferromagnetism – ferrimagnetism – Ferromagnetism: origin and exchange interactionsaturation magnetization and Curie temperature – Domain Theory- M versus H behaviour – Hard
and soft magnetic materials – examples and uses-– Magnetic principle in computer data storage –
Magnetic hard disc (GMR sensor).

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PH3255 Question Bank PHYSICS FOR INSTRUMENTATION ENGINEERING Regulation 2021 Anna University

PH3255 Question Bank PHYSICS FOR INSTRUMENTATION ENGINEERING

PH3255 Question Bank PHYSICS FOR INSTRUMENTATION ENGINEERING Regulation 2021 Anna University free download. PHYSICS FOR INSTRUMENTATION Question Bank PH3255 pdf download free.

OBJECTIVES:
 To make the students to understand the basics of electricity and magnetism and vectors.
 To understand the electrical properties of materials including free electron theory, applications
of quantum mechanics and magnetic materials.
 To instil knowledge on physics of semiconductors, determination of charge carriers and device
applications
 To establish a sound grasp of knowledge on different optical properties of materials, optical
displays and applications
 To inculcate an idea of significance of nano structures, quantum confinement and ensuing
nano device applications.

Coulomb’s law, electric field intensity, electric flux density, Gauss’ law, divergence, electric field and
potential due to point, line, plane, and spherical charge distributions, effect of the dielectric medium,
capacitance of simple configurations, Biot-Savart’s law, Ampere’s law, curl, Faraday’s law, Lorentz
force, Inductance, Magneto motive force, reluctance, magnetic circuits, self and mutual inductance of
simple configurations.  PH3255 Question Bank

Classical free electron theory – Expression for electrical conductivity – Thermal conductivity,
expression – Quantum free electron theory :Tunneling – degenerate states – Fermi- Dirac statistics –
Density of energy states – Electron in periodic potential – Energy bands in solids – tight binding
approximation – Electron effective mass – concept of hole. Magnetic materials: Dia, para and
ferromagnetic effects – paramagnetism in the conduction electrons in metals – exchange interaction
and ferromagnetism – quantum interference devices – GMR devices.

OUTCOMES : PH3255 Question Bank

At the end of the course, the students should be able to
 know basics of electricity and magnetism and the influence of vectors in EMT.
 gain knowledge on the electrical and magnetic properties of materials and their applications
 understand clearly of semiconductor physics and functioning of semiconductor devices
 understand the optical properties of materials and working principles of various optical devices
 appreciate the importance of nanotechnology and nanodevices.

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PH3255 Syllabus PHYSICS FOR INSTRUMENTATION ENGINEERING

PH3255 Notes PHYSICS FOR INSTRUMENTATION ENGINEERING 

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PH3255 Important Questions PHYSICS FOR INSTRUMENTATION ENGINEERING Regulation 2021 Anna University

PH3255 Important Questions PHYSICS FOR INSTRUMENTATION ENGINEERING

PH3255 Important Questions PHYSICS FOR INSTRUMENTATION ENGINEERING Regulation 2021 Anna University free download. PHYSICS FOR INSTRUMENTATION Important Questions PH3255 pdf download free.

UNIT I ELECTRICITY AND MAGNETISM

UNIT II ELECTRICAL AND MAGNETIC PROPERTIES OF MATERIALS

UNIT III SEMICONDUCTORS AND TRANSPORT PHYSICS

UNIT IV OPTICAL PROPERTIES OF MATERIALS

UNIT V NANODEVICES AND QUANTUM COMPUTING

Introduction – quantum confinement – quantum structures: quantum wells, wires and dots –– band PH3255 Important Questions
gap of nanomaterials. Tunneling – Single electron phenomena: Coulomb blockade – resonanttunneling diode – single electron transistor – quantum cellular automata – Quantum system for
information processing – quantum states – classical bits – quantum bits or qubits –CNOT gate –
multiple qubits – Bloch sphere – quantum gates – advantage of quantum computing over classical
computing.

OUTCOMES :

At the end of the course, the students should be able to
 know basics of electricity and magnetism and the influence of vectors in EMT. PH3255 Important Questions
 gain knowledge on the electrical and magnetic properties of materials and their applications
 understand clearly of semiconductor physics and functioning of semiconductor devices
 understand the optical properties of materials and working principles of various optical devices
 appreciate the importance of nanotechnology and nanodevices.

TEXT BOOKS :

1. S.O. Kasap. Principles of Electronic Materials and Devices, McGraw Hill Education (Indian Edition), 2020. PH3255 Important Questions
2. R.F.Pierret. Semiconductor Device Fundamentals. Pearson (Indian Edition), 2006.
3. G.W.Hanson. Fundamentals of Nanoelectronics. Pearson Education (Indian Edition), 2009.

REFERENCES :

1. Matthew N. O. Sadiku, Principles of Electromagnetics, Oxford Univ. Press 2015.
2. Jasprit Singh, Semiconductor Optoelectronics: Physics and Technology, McGraw-
Hill Education (Indian Edition), 2019.
3. Charles Kittel, Introduction to Solid State Physics, Wiley India Edition, 2019.
4. Mark Fox, Optical Properties of Solids, Oxford Univ.Press, 2001.
5. Parag K. Lala, Quantum Computing: A Beginner’s Introduction, McGraw-Hill
Education (Indian Edition), 2020.

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PH3255 Syllabus PHYSICS FOR INSTRUMENTATION ENGINEERING

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PH3255 Notes PHYSICS FOR INSTRUMENTATION ENGINEERING Regulation 2021 Anna University

PH3255 Notes PHYSICS FOR INSTRUMENTATION ENGINEERING

PH3255 Notes PHYSICS FOR INSTRUMENTATION ENGINEERING Regulation 2021 Anna University free download. PHYSICS FOR INSTRUMENTATION Notes PH3255 pdf download free.

TEXT BOOKS :

1. S.O. Kasap. Principles of Electronic Materials and Devices, McGraw Hill Education (Indian
Edition), 2020.
2. R.F.Pierret. Semiconductor Device Fundamentals. Pearson (Indian Edition), 2006.
3. G.W.Hanson. Fundamentals of Nanoelectronics. Pearson Education (Indian Edition), 2009.

REFERENCES : PH3255 Notes

1. Matthew N. O. Sadiku, Principles of Electromagnetics, Oxford Univ. Press 2015.
2. Jasprit Singh, Semiconductor Optoelectronics: Physics and Technology, McGraw-
Hill Education (Indian Edition), 2019.
3. Charles Kittel, Introduction to Solid State Physics, Wiley India Edition, 2019.
4. Mark Fox, Optical Properties of Solids, Oxford Univ.Press, 2001.
5. Parag K. Lala, Quantum Computing: A Beginner’s Introduction, McGraw-Hill
Education (Indian Edition), 2020

OUTCOMES : PH3255 Notes

At the end of the course, the students should be able to
 know basics of electricity and magnetism and the influence of vectors in EMT.
 gain knowledge on the electrical and magnetic properties of materials and their applications
 understand clearly of semiconductor physics and functioning of semiconductor devices
 understand the optical properties of materials and working principles of various optical devices
 appreciate the importance of nanotechnology and nanodevices.

OBJECTIVES: PH3255 Notes

 To make the students to understand the basics of electricity and magnetism and vectors.
 To understand the electrical properties of materials including free electron theory, applications
of quantum mechanics and magnetic materials.
 To instil knowledge on physics of semiconductors, determination of charge carriers and device
applications
 To establish a sound grasp of knowledge on different optical properties of materials, optical
displays and applications
 To inculcate an idea of significance of nano structures, quantum confinement and ensuing
nano device applications.

PH3255 Notes PHYSICS FOR INSTRUMENTATION ENGINEERING Click Here To Download

PH3255 Syllabus PHYSICS FOR INSTRUMENTATION ENGINEERING

PH3255 Important Questions PHYSICS FOR INSTRUMENTATION ENGINEERING

PH3255 Question Bank PHYSICS FOR INSTRUMENTATION ENGINEERING

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PH3255 Syllabus PHYSICS FOR INSTRUMENTATION ENGINEERING Regulation 2021 Anna University

PH3255 Syllabus PHYSICS FOR INSTRUMENTATION ENGINEERING

PH3255 Syllabus PHYSICS FOR INSTRUMENTATION ENGINEERING Regulation 2021 Anna University free download. PHYSICS FOR INSTRUMENTATION Syllabus PH3255 pdf download free.

UNIT I ELECTRICITY AND MAGNETISM

Coulomb’s law, electric field intensity, electric flux density, Gauss’ law, divergence, electric field and
potential due to point, line, plane, and spherical charge distributions, effect of the dielectric medium,
capacitance of simple configurations, Biot-Savart’s law, Ampere’s law, curl, Faraday’s law, Lorentz
force, Inductance, Magneto motive force, reluctance, magnetic circuits, self and mutual inductance of
simple configurations.

PH3255 Syllabus

UNIT II ELECTRICAL AND MAGNETIC PROPERTIES OF MATERIALS

Classical free electron theory – Expression for electrical conductivity – Thermal conductivity,
expression – Quantum free electron theory :Tunneling – degenerate states – Fermi- Dirac statistics –
Density of energy states – Electron in periodic potential – Energy bands in solids – tight binding
approximation – Electron effective mass – concept of hole. Magnetic materials: Dia, para and
ferromagnetic effects – paramagnetism in the conduction electrons in metals – exchange interaction
and ferromagnetism – quantum interference devices – GMR devices.

UNIT III SEMICONDUCTORS AND TRANSPORT PHYSICS

Intrinsic Semiconductors – Energy band diagram – direct and indirect band gap semiconductors –
Carrier concentration in intrinsic semiconductors – extrinsic semiconductors – Carrier concentration in
N-type & P-type semiconductors – Variation of carrier concentration with temperature – Carrier
transport in Semiconductors: Drift, mobility and diffusion – Hall effect and devices – Ohmic contacts –
Schottky diode.

PH3255 Syllabus

UNIT IV OPTICAL PROPERTIES OF MATERIALS

Classification of optical materials – Optical processes in semiconductors: optical absorption and
emission, charge injection and recombination, optical absorption, loss and gain. Optical processes in
quantum wells – Optoelectronic devices: light detectors and solar cells – light emitting diode – laser
diode – optical processes in organic semiconductor devices –excitonic state – Electro-optics and
nonlinear optics: Modulators and switching devices – plasmonics.

UNIT V NANODEVICES AND QUANTUM COMPUTING
Introduction – quantum confinement – quantum structures: quantum wells, wires and dots –– band
gap of nanomaterials. Tunneling – Single electron phenomena: Coulomb blockade – resonanttunneling diode – single electron transistor – quantum cellular automata – Quantum system for
information processing – quantum states – classical bits – quantum bits or qubits –CNOT gate –
multiple qubits – Bloch sphere – quantum gates – advantage of quantum computing over classical
computing.

PH3255 Syllabus PHYSICS FOR INSTRUMENTATION ENGINEERING Click Here To Download

PH3255 Notes PHYSICS FOR INSTRUMENTATION ENGINEERING 

PH3255 Important Questions PHYSICS FOR INSTRUMENTATION ENGINEERING

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EE3251 Question Bank ELECTRIC CIRCUIT ANALYSIS Regulation 2021 Anna University

EE3251 Question Bank ELECTRIC CIRCUIT ANALYSIS

EE3251 Question Bank ELECTRIC CIRCUIT ANALYSIS Regulation 2021 Anna University free download. ELECTRIC CIRCUIT ANALYSIS Question Bank EE3251 pdf download free.

OUTCOMES:

After completing this course, the students will be able to:
CO1: Explain circuit’s behavior using circuit laws.
CO2: Apply mesh analysis/ nodal analysis / network theorems to determine behavior of the given
DC and AC circuit
CO3: Compute the transient response of first order and second order systems to step and sinusoidal
input
CO4: Compute power, line/ phase voltage and currents of the given three phase circuit
CO5: Explain the frequency response of series and parallel RLC circuits
CO6: Explain the behavior of magnetically coupled circuits.

TEXT BOOKS:

1. William H. HaytJr, Jack E. Kemmerly and Steven M. Durbin, “Engineering Circuits Analysis”,
McGraw Hill publishers, 9thedition, New Delhi, 2020.
2. Charles K. Alexander, Mathew N.O. Sadiku, “Fundamentals of Electric Circuits”, Second Edition,
McGraw Hill, 2019.
3. Allan H. Robbins, Wilhelm C. Miller, “Circuit Analysis Theory and Practice”, Cengage Learning
India, 2013.

REFERENCES

1. Chakrabarti A, “Circuits Theory (Analysis and synthesis), Dhanpat Rai& Sons, New Delhi, 2020.
2 Joseph A. Edminister, Mahmood Nahvi, “Electric circuits”, Schaum’s series, McGraw-Hill, First
Edition, 2019.
4. M E Van Valkenburg, “Network Analysis”,Prentice-Hall of India Pvt Ltd, New Delhi, 2015.
5. Richard C. Dorf and James A. Svoboda, “Introduction to Electric Circuits”, 7th Edition, John Wiley &
Sons, Inc. 2018.
6. Sudhakar A and Shyam Mohan SP, “Circuits and Networks Analysis and Synthesis”, McGraw Hill,
2015.

UNIT I BASIC CIRCUITS ANALYSIS

Fundamentals concepts of R, L and C elements-Energy Sources- Ohm’s Law -Kirchhoff ‘s Laws – DC
Circuits – Resistors in series and parallel circuits – A.C Circuits – Average and RMS Value –
Complex Impedance – Phasor diagram – Real and Reactive Power, Power Factor, Energy -Mesh
current and node voltage methods of analysis D.C and A.C Circuits.

UNIT II NETWORK REDUCTION AND THEOREMS FOR DC AND AC CIRCUITS

Network reduction: voltage and current division, source transformation – star delta conversion.
Theorems – Superposition, Thevenin’s and Norton’s Theorem – Maximum power transfer theorem –
Reciprocity Theorem – Millman’s theorem- Tellegen’s Theorem-Statement, application to DC and AC
Circuits.

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EE3251 Notes ELECTRIC CIRCUIT ANALYSIS 

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EE3251 Important Questions ELECTRIC CIRCUIT ANALYSIS Regulation 2021 Anna University

EE3251 Important Questions ELECTRIC CIRCUIT ANALYSIS

EE3251 Important Questions ELECTRIC CIRCUIT ANALYSIS Regulation 2021 Anna University free download. ELECTRIC CIRCUIT ANALYSIS Important Questions EE3251 pdf download free.

UNIT I BASIC CIRCUITS ANALYSIS

UNIT II NETWORK REDUCTION AND THEOREMS FOR DC AND AC CIRCUITS

UNIT III TRANSIENT RESPONSE ANALYSIS

UNIT IV RESONANCE AND COUPLED CIRCUITS

UNIT V THREE PHASE CIRCUITS

OBJECTIVES:
 To introduce electric circuits and its analysis
 To provide key concepts to analyze and understand electrical circuits
 To impart knowledge on solving circuit equations using network theorems
 To educate on obtaining the transient response of circuits.
 To introduce the phenomenon of resonance in coupled circuits.
 To introduce Phasor diagrams and analysis of single &three phase circuits

Fundamentals concepts of R, L and C elements-Energy Sources- Ohm’s Law -Kirchhoff ‘s Laws – DC
Circuits – Resistors in series and parallel circuits – A.C Circuits – Average and RMS Value –
Complex Impedance – Phasor diagram – Real and Reactive Power, Power Factor, Energy -Mesh
current and node voltage methods of analysis D.C and A.C Circuits.

1. Chakrabarti A, “Circuits Theory (Analysis and synthesis), Dhanpat Rai& Sons, New Delhi, 2020.
2 Joseph A. Edminister, Mahmood Nahvi, “Electric circuits”, Schaum’s series, McGraw-Hill, First
Edition, 2019.
4. M E Van Valkenburg, “Network Analysis”,Prentice-Hall of India Pvt Ltd, New Delhi, 2015.
5. Richard C. Dorf and James A. Svoboda, “Introduction to Electric Circuits”, 7th Edition, John Wiley &
Sons, Inc. 2018.
6. Sudhakar A and Shyam Mohan SP, “Circuits and Networks Analysis and Synthesis”, McGraw Hill,
2015

Analysis of three phase 3-wire and 4-wire circuits with star and delta connected loads, balanced and
unbalanced – phasor diagram of voltages and currents – power measurement in three phase circuits–
Power Factor Calculations.

EE3251 Important Questions ELECTRIC CIRCUIT ANALYSIS Click Here To Download

EE3251 Syllabus ELECTRIC CIRCUIT ANALYSIS

EE3251 Notes ELECTRIC CIRCUIT ANALYSIS 

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EE3251 Notes ELECTRIC CIRCUIT ANALYSIS Regulation 2021 Anna University

EE3251 Notes ELECTRIC CIRCUIT ANALYSIS

EE3251 Notes ELECTRIC CIRCUIT ANALYSIS Regulation 2021 Anna University free download. ELECTRIC CIRCUIT ANALYSIS Notes EE3251 pdf download free.

TEXT BOOKS:

1. William H. HaytJr, Jack E. Kemmerly and Steven M. Durbin, “Engineering Circuits Analysis”,
McGraw Hill publishers, 9thedition, New Delhi, 2020.
2. Charles K. Alexander, Mathew N.O. Sadiku, “Fundamentals of Electric Circuits”, Second Edition,
McGraw Hill, 2019.
3. Allan H. Robbins, Wilhelm C. Miller, “Circuit Analysis Theory and Practice”, Cengage Learning
India, 2013.

REFERENCES

1. Chakrabarti A, “Circuits Theory (Analysis and synthesis), Dhanpat Rai& Sons, New Delhi, 2020.
2 Joseph A. Edminister, Mahmood Nahvi, “Electric circuits”, Schaum’s series, McGraw-Hill, First
Edition, 2019.
4. M E Van Valkenburg, “Network Analysis”,Prentice-Hall of India Pvt Ltd, New Delhi, 2015.
5. Richard C. Dorf and James A. Svoboda, “Introduction to Electric Circuits”, 7th Edition, John Wiley &
Sons, Inc. 2018.
6. Sudhakar A and Shyam Mohan SP, “Circuits and Networks Analysis and Synthesis”, McGraw Hill,
2015

OUTCOMES:

After completing this course, the students will be able to:
CO1: Explain circuit’s behavior using circuit laws.
CO2: Apply mesh analysis/ nodal analysis / network theorems to determine behavior of the given
DC and AC circuit
CO3: Compute the transient response of first order and second order systems to step and sinusoidal
input
CO4: Compute power, line/ phase voltage and currents of the given three phase circuit
CO5: Explain the frequency response of series and parallel RLC circuits
CO6: Explain the behavior of magnetically coupled circuits.

OBJECTIVES:

 To introduce electric circuits and its analysis
 To provide key concepts to analyze and understand electrical circuits
 To impart knowledge on solving circuit equations using network theorems
 To educate on obtaining the transient response of circuits.
 To introduce the phenomenon of resonance in coupled circuits.
 To introduce Phasor diagrams and analysis of single &three phase circuits

EE3251 Notes ELECTRIC CIRCUIT ANALYSIS Click Here To Download

EE3251 Syllabus ELECTRIC CIRCUIT ANALYSIS

EE3251 Important Questions ELECTRIC CIRCUIT ANALYSIS

EE3251 Question Bank ELECTRIC CIRCUIT ANALYSIS

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EE3251 Syllabus ELECTRIC CIRCUIT ANALYSIS Regulation 2021 Anna University

EE3251 Syllabus ELECTRIC CIRCUIT ANALYSIS

EE3251 Syllabus ELECTRIC CIRCUIT ANALYSIS Regulation 2021 Anna University free download. ELECTRIC CIRCUIT ANALYSIS Syllabus EE3251 pdf download free.

UNIT I BASIC CIRCUITS ANALYSIS

Fundamentals concepts of R, L and C elements-Energy Sources- Ohm’s Law -Kirchhoff ‘s Laws – DC
Circuits – Resistors in series and parallel circuits – A.C Circuits – Average and RMS Value –
Complex Impedance – Phasor diagram – Real and Reactive Power, Power Factor, Energy -Mesh
current and node voltage methods of analysis D.C and A.C Circuits.

UNIT II NETWORK REDUCTION AND THEOREMS FOR DC AND AC CIRCUITS

Network reduction: voltage and current division, source transformation – star delta conversion.
Theorems – Superposition, Thevenin’s and Norton’s Theorem – Maximum power transfer theorem –
Reciprocity Theorem – Millman’s theorem- Tellegen’s Theorem-Statement, application to DC and AC
Circuits.

UNIT III TRANSIENT RESPONSE ANALYSIS

Introduction – Laplace transforms and inverse Laplace transforms- standard test signals -Transient
response of RL, RC and RLC circuits using Laplace transform for Source free, Step input and
Sinusoidal input.

UNIT IV RESONANCE AND COUPLED CIRCUITS

Series and parallel resonance –frequency response – Quality factor and Bandwidth – Self and mutual
inductance – Coefficient of coupling – Dot rule-Analysis of coupled circuits– Single Tuned circuits..

UNIT V THREE PHASE CIRCUITS

Analysis of three phase 3-wire and 4-wire circuits with star and delta connected loads, balanced and
unbalanced – phasor diagram of voltages and currents – power measurement in three phase circuits–
Power Factor Calculations.

EE3251 Syllabus ELECTRIC CIRCUIT ANALYSIS Click Here To Download

EE3251 Notes ELECTRIC CIRCUIT ANALYSIS 

EE3251 Important Questions ELECTRIC CIRCUIT ANALYSIS

EE3251 Question Bank ELECTRIC CIRCUIT ANALYSIS

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BE3255 Question Bank BASIC CIVIL AND MECHANICAL ENGINEERING Regulation 2021 Anna University

BE3255 Question Bank BASIC CIVIL AND MECHANICAL ENGINEERING

BE3255 Question Bank BASIC CIVIL AND MECHANICAL ENGINEERING Regulation 2021 Anna University free download. BCM Question Bank BE3255 pdf download free.

REFERENCES:
1. Palanikumar, K. Basic Mechanical Engineering, ARS Publications, 2018.
2. Ramamrutham S., “Basic Civil Engineering”, Dhanpat Rai Publishing Co.(P) Ltd, 2013.
3. Seetharaman S., “Basic Civil Engineering”, Anuradha Agencies, 2005.
4. Shantha Kumar SRJ., “Basic Mechanical Engineering”, Hi-tech Publications, Mayiladuthurai,
2000.

SURVEYING AND CIVIL ENGINEERING MATERIALS
Surveying: Objects – Classification – Principles – Measurements of Distances and angles –
Leveling – Determination of areas– Contours.
Civil Engineering Materials: Bricks – Stones – Sand – Cement – Concrete – Steel – Timber – Modern
Materials, Thermal and Acoustic Insulating Materials, Decorative Panels, Water Proofing Materials.
Modern uses of Gypsum, Pre-fabricated Building component (brief discussion only)

BUILDING COMPONENTS AND INFRASTRUCTURE
Building plans – Setting out of a Building – Foundations: Types of foundations – Bearing capacity and
settlement – Brick masonry – Stone Masonry – Beams – Columns – Lintels – Roofing – Flooring –
Plastering.
Types of Bridges and Dams – Water Supply Network – Rain Water Harvesting – Solid Waste
Management – Introduction to Highways and Railways – Introduction to Green Buildings.

INTERNAL COMBUSTION ENGINES AND POWER PLANTS
Classification of Power Plants- Working principle of steam, Gas, Diesel, Hydro -electric and Nuclear
Power plants- Internal combustion engines as automobile power plant – Working principle of Petrol
and Diesel Engines – Four stroke and two stroke cycles – Comparison of four stroke and two stroke
engines. Working principle of Boilers-Turbines, Reciprocating Pumps (single acting and double
acting) and Centrifugal Pumps, Concept of hybrid engines. Industrial safety practices and protective
devices

TEXT BOOKS:
1. G Shanmugam, M S Palanichamy, Basic Civil and Mechanical Engineering, McGraw Hill
Education; First edition, 2018

BE3255 Question Bank BASIC CIVIL AND MECHANICAL ENGINEERING Click Here To Download

BE3255 Syllabus BASIC CIVIL AND MECHANICAL ENGINEERING

BE3255 Notes BASIC CIVIL AND MECHANICAL ENGINEERING 

BE3255 Important Questions BASIC CIVIL AND MECHANICAL ENGINEERING