Nanotechnology detailed syllabus scheme for Production Engineering (PR), 2018-19 onwards has been taken from the DBATU official website and presented for the Bachelor of Technology students. For Subject Code, Course Title, Lecutres, Tutorials, Practice, Credits, and other information, do visit full semester subjects post given below.
For 6th Sem Scheme of Production Engineering (PR), 2018-19 Onwards, do visit PR 6th Sem Scheme, 2018-19 Onwards. For the Elective-V scheme of 6th Sem 2018-19 onwards, refer to PR 6th Sem Elective-V Scheme 2018-19 Onwards. The detail syllabus for nanotechnology is as follows.
Nanotechnology Syllabus for Production Engineering (PR) 3rd Year 6th Sem 2018-19 DBATU
Course Objectives:
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Pre-requisite:
None
Course Outcomes:
At the end of the course, students will be able to:
- Demonstrate the understanding of length scales concepts, nanostructures and nanotechnology.
- Identify and to compare various synthesis and characterization techniques involved in Nanotechnology.
- Define and interpret the interactions at molecular scale.
- Evaluate and analyze the mechanical properties of bulk nano-structured metals and alloys, nano-composites and carbon nanotubes.
- Compare and analyze the effects of using nanoparticles over conventional methods.
Unit 1
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Unit 2
Forces between Atoms and Molecules
Particles and grain boundaries, strong Intermolecular forces, Electrostatic and Vander Waals forces between surfaces, similarities and differences between intermolecular and inter particle forces covalent and coulomb interactions, interaction polar molecules, Thermodynamics of self-assembly.
Unit 3
Opportunity at the Nano Scale
Length and time scale in structures, energy landscapes, Inter dynamic aspects of inter molecular forces, Evolution of band structure and Fermi surface.
Unit 4
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Unit 5
Influence of Nano Structuring
Influence of Nano structuring on mechanical, optical, electronic, magnetic and chemical properties-gram size effects on strength of metals- optical properties of quantum dots.
Unit 6
Quantum wires – electronic transport in quantum wires and carbon nano-tubes – magnetic behavior of single domain particles and nanostructures – surface chemistry of Tailored monolayer – self assembling.
Text Books\Reference Book:
- C. C. Koch, Nanostructured materials: Processing, Properties and Potential Applications, Noyes Publications, 2002.
- C. C. Koch, I. A. Ovidko, S. Seal and S. Veprek, Structural Nano crystalline Materials: Fundamentals and Applications, Cambridge University Press, 2011.
For detail syllabus of all subjects of Production Engineering (PR) 6th Sem 2018-19 onwards, visit PR 6th Sem Subjects of 2018-19 Onwards.