dr. abeer kamal abd el-aziz email : [email protected][email protected] [email protected]...
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Course outlines:• Introduction, Update of solid state Physics
• Physics at surfaces: Overview of physical and chemical properties
that change when the materials considered are a few nanometres in
Size
• Discussion of different nanostructure fabrication methods
• Introduction to nano-scale materials imaging techniques: Physical
principle and operation.
• Non-magnetic materials- types – Application
• Introduction to superconductivity- Super conductivity in nano-scale
• Organic nano-layers: chemical and preparation, application in
surface chemistry and biological probe
• Quantum dot and electron transfer in nano-tubes
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Total Hours : 14 Lectures Credit hours: 4 hrs, 3(3,1,0)
Lecture: 42 hrTutorial: 28 hr
Teaching Pattern:
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Assessment
Assessment task (e.g., essay, test, group
project, examination etc.)
Week dueProportion
of Final Assessment
11st mid- Exam
5th week of the course
15 %
2 2nd mid-Exam
10th week of the course
15%
3 Mini-projects-oral presentation and
Activities
Through the course
10 %
4
Final written Exam
After 14 weeks of the
course
60 %
5. Schedule of Assessment Tasks for Students During the Semester:
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ReferencesEssential References 1) R. Kelsall, I. W. Hamley and M. Geoghegan, “Nanoscale
Science and Technology, John Wiley & Sons, (2005). 2) J. Imry, Introduction to Mesoscopic Physics (Mesoscopic
Physics and Nanotechnology), oxford university press (1997). 3) Nanostructure Physics and Fabrication: Proceedings of the International Symposium, College Station, Texas, (1989). Electronic Materials, Web Sites etchttp://en.wikipedia.org/wiki/Nanotechnology http://nano.ksu.edu.sa/http://iopscience.iop.org/0957-4484/