Energy Science & Engineering detail syllabus for Plastics Engineering (Plastics), 2019-20 scheme is taken from AKTU official website and presented for AKTU students. The course code (KOE033), and for exam duration, Teaching Hr/Week, Practical Hr/Week, Total Marks, internal marks, theory marks, and credits do visit complete sem subjects post given below.
For all the other plastics 3rd sem syllabus for b.tech 2019-20 scheme aktu you can visit Plastics 3rd Sem syllabus for B.Tech 2019-20 Scheme AKTU Subjects. For all the other Select Subject-1 subjects do refer to Select Subject-1. The detail syllabus for energy science & engineering is as follows.
Prerequisites:
Pre-requisites of course: Basic Electrical Engineering.
Unit I
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Unit II
Nuclear Energy: Fundamental forces in the universe, Quantum mechanics relevant for nuclear physics, Nuclear forces, energy scales and structure, Nuclear binding energy systematics, reactions and decays, Nuclear fusion, Nuclear fission and fission reactor physics, Nuclear fission reactor design, safety, operation and fuel cycles.
Unit III
Solar Energy: Introduction to solar energy, fundamentals of solar radiation and its measurement aspects, Basic physics of semiconductors, Carrier transport, generation and recombination in semiconductors.
Semiconductor junctions: metal-semiconductor junction & p-n junction, Essential characteristics of solar photovoltaic devices, First Generation Solar Cells, Second Generation Solar Cells, Third Generation Solar Cells.
Unit IV
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Unit V
Systems and Synthesis: Overview of World Energy Scenario, Nuclear radiation, fuel cycles, waste and proliferation, Climate change, Energy storage, Energy conservation.
Engineering for Energy conservation: Concept of Green Building and Green Architecture, Green building concepts, LEED ratings, Identification of energy related enterprises that represent the breath of the industry and prioritizing these as candidates, Embodied energy analysis and use as a tool for measuring sustainability. Energy Audit of Facilities and optimization of energy consumption.
Course Outcomes:
Upon the completion of the course, the student will be able to:
- Apply the use of sensors for measurement of displacement, force and pressure.
- Employ commonly used sensors in industry for measurement of temperature, position, accelerometer, vibration sensor, flow and level.
- Demonstrate the use of virtual instrumentation in automation industries.
- Identify and use data acquisition methods.
- Comprehend intelligent instrumentation in industrial automation.
Books and References:
- Energy and the Challenge of Sustainability, World Energy Assessment, UNDP, New York, .
- Perspective of Modern Physics, A. Beiser, McGraw-Hill International Editions .
- Introduction to Modern Physics, H.S. Mani and G.K.Mehta, East-West Press .
- Introduction to Electro dynamics, D. J. Griffiths, Fourth Edition, Prentice Hall .
- Introductory Nuclear Physics, R. K. Puri and V.K. Babbar, Narosa Publishing House .
- Physics of Solar Cells: From Basic Principles to Advanced Concepts by Peter Wurfel, John Wiley & Sons, 2016.
- Principles of Solar Engineering, D.Y. Goswami, F.Kreith and J.F. Kreider, Taylor and Francis, Philadelphia, 2000.
For the detailed syllabus of all the other subjects of B.Tech Plastics, 2019-20 regulation do visit Plastics 3rd Sem syllabus for 2019-20 Regulation.
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