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B.E. (Biomedical Engineering) Applied Physics Syllabus - Mumbai University

This is the First Year Biomedical NEP 2020 syllabus under NEP 2020, in force from the academic year 2024-25. The University still sets the earlier Choice Based papers alongside it for ATKT candidates, so check which scheme your exam form names before you revise.

Applied-Physics.pdf
Semester 1 · First Year Biomedical NEP 2020 · 2 credits · 75 marks

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Syllabus for Applied Physics

Semester 1 · First Year Biomedical NEP 2020 · 2 credits · 75 marks

Prerequisite

  • Basic knowledge of optics and atomic structure, Wavefront and Huygens principle, reflection and refraction, Interference by division of wavefront, Refractive index of a material, Snell’s law, Basics of vector algebra, partial differentiation concepts, Dual nature of radiation, Photoelectric effect, Matter waves, Davisson-Germer experiment. Intrinsic and extrinsic semiconductors, electrical resistivity and conductivity concepts

Module I: Lasers

  • Lasers: Spontaneous and stimulated emission, population inversion, pumping, active medium & active center, resonant cavity, coherence length and coherence time, Characteristics of lasers, He Ne laser: construction and working. Fiber laser Construction and working Application : (i)Elementary knowledge of LiDAR(ii) Barcode reader (iii) Application of laser in metal work

Module II: Fibre Optics

  • Optical fibers: Critical angle, acceptance angle, acceptance cone, numerical aperture, total internal reflection andpropagation of light, Types of optical fibers: Single mode & multimode, step index & graded index, attenuation,attenuation coefficient, factors affecting attenuation, Fibre Optic Communication System, Advantages of optical fiber communication, numerical

Module III: Interfenence In Thin Films

  • Interference in thin film of uniform thickness, conditions of maxima and minima for reflected system, Conditions for maxima and minima for wedge shaped film (qualitative), engineering applications (i) Newton’s rings for determination of unknown monochromatic wavelength and refractive Index of transparent liquid (ii) AntiReflecting Coating

Module IV: Electrodynamics

  • Vector Calculus : Gradient, Divergence, Curl. Gauss’s law, Amperes’ circuital Law, Faraday’s law, Divergence theorem , Stokes theorem Maxwell’s equations in point form, Integral form and their significance(Cartesian coordinate only)

Module V: Quantum Physics

  • de Broglie hypothesis of matter waves, de Broglie wavelength for electron, Properties of matter waves, Wave function and probability density, mathematicalconditions for wave function, problems on de Broglie wavelength, Need and significance of Schrödinger’sequations, Schrödinger’s time independent and time dependent equations, Energy of a particle enclosed in a rigidbox and related numerical problems, Quantum mechanical tunneling, Principles of quantum computing: concept of Qubit.

Module VI: Basics Of Semiconductor Physics

  • Direct and Indirect Band Gap Semiconductors, Electrical Conductivity of Semiconductors, Drift Velocity, Mobility and Conductivity in Conductors Fermi- Dirac distribution function, Position of Fermi Level in Intrinsic and Extrinsic Semiconductors.

Text Books

  • 1 A Text book of Engineering Physics -Dr. M. N. Avadhanulu, Dr. P. G. Kshirsagar, S. Chand, Revised Edition 2014
  • 2 Modern Engineering Physics - A. S. Vasudeva, S. Chand, Revised Edition 2013
  • 3 Engineering Physics D. K Bhattacharya,PoonamTandon, Oxford Higher Education, 1st Edition 2015
  • 4 Engineering Physics -R. K. Gaur,S. L. Gupta, DhanpatRai Publications, 2012
  • 5 Engineering Physics -V. Rajendran, McGraw Hill Educations, 2017
  • 6 A Textbook of Nanoscience and Nanotechnology, T. Pradeep Tata McGraw Hill Education Pvt. Ltd., 2012
  • 1 Concepts of Modern Physics - ArtherBeiser, ShobhitMahajan, S. Choudhury, McGraw Hill, 7thEdition 2017
  • 2 Fundamentals of optics - Francis A. Jenkins, Harvey E. White, McGraw Hill Publication, India, 4th Edition
  • 3 Fundamentals of Physics, Halliday and Resnick, Wiley publication
  • 4 Introduction to Electrodynamics, D. J. Griffiths, Pearson PublicationOnline

Reproduced from the University of Mumbai syllabus for B.E. (Biomedical Engineering) under NEP 2020, in force from the academic year 2024-25. Wording is as printed in that syllabus. Module numbering is as printed there too.

The complete syllabus

This subject is cut from the University circular for its year. Open a document here if you want the whole thing rather than a single subject.

PDF 7.1 (R-A) B.E. (Biomedical Engineering) Sem I & II (Revised, NEP 2020) NEP 2020 syllabus Read full PDF Read
PDF 6.22 (N) B.E. (Biomedical Engineering) Sem III & IV (NEP 2020) NEP 2020 syllabus Read full PDF Read
PDF Item 139 B.E. (Biomedical Engineering) Second Year, Sem III & IV (REV-2019 'C' Scheme) REV-2019 'C' Scheme syllabus Read full PDF Read
PDF 6.1 B.E. (Biomedical Engineering) Third Year, Sem V & VI (REV-2019 'C' Scheme) REV-2019 'C' Scheme syllabus Read full PDF Read
PDF B.E. (Biomedical Engineering) Fourth Year, Semester VII (REV-2019 'C' Scheme) REV-2019 'C' Scheme syllabus Read full PDF Read
PDF B.E. (Biomedical Engineering) Fourth Year, Semester VIII (REV-2019 'C' Scheme) REV-2019 'C' Scheme syllabus Read full PDF Read
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