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SDMCET: Syllabus Suggested plan of study I Semester B. E. ...

SDMCET: Syllabus Suggested plan of study I Semester B. E. ...

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<strong>SDMCET</strong>: <strong>Syllabus</strong>Books:1) E. Hughes - Electrical Technology, 8 th edition, Pearson, 2006.2) B.L. Theraja- Fundamentals <strong>of</strong> Electrical& Electronics Engineering,S Chand,2006.3) R.L. Chakrasali–Basic Electrical Engineering,Acme Learning Pvt. Ltd, New Delhi,2010.4) B.H. Khan – Non Conventional Energy Sources, TMH publishing, 2006.11UPHC100/11UPHC200 Engineering Physics (4-0-0-0) 4Objectives:At the end <strong>of</strong> course, student should understand:1. Failure <strong>of</strong> classical physics in the quantum domain and hence understanding<strong>of</strong> dual nature <strong>of</strong> material particle.2. The fundamentals <strong>of</strong> Quantum Mechanics for comprehending the dynamics <strong>of</strong>sub-atomic particles.3. The basics <strong>of</strong> material parameters that explain the electrical properties <strong>of</strong>metals.4. Energy level concept <strong>of</strong> semiconducting materials and their importantproperties for the solid state device fabrication.5. Physics <strong>of</strong> magnetic and superconducting materials and their applications.6. Photonic materials, devices and their applications.7. The concepts <strong>of</strong> crystal structures and their relations towards understanding<strong>of</strong> crystalline materials.8. Size dependent properties <strong>of</strong> nanomaterials – Elementary concepts,characterizations and applicationsContribution to Outcomes:At the end <strong>of</strong> the semester student should able to demonstrate:1. An ability to analyze the engineering concepts based on fundamental physicalconcepts.2. Applications <strong>of</strong> the fundamental physical laws for better understanding <strong>of</strong>materials and their properties, for engineering applications.Prerequisites: NilContents:1) Modern Physics: Introduction to Modern Physics, Wave particle Dualism, de-Broglie hypothesis- de-Broglie wavelength. Davisson and Germer experiment.Matter waves and their characteristic properties. Concept <strong>of</strong> Phase velocity,group velocity and particle velocity. Relation between group velocity and particleI Year B. E: 2013 – 146

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