Faculty of Science

Model (No 12)

Course Specification : Solid State Physics

2010 - 2011

 
Farabi Quality Management of Education and Learning - 21/11/2024
University :Damietta University
Faculty :Faculty of Science
Department :الفيزياء
1- Course data :-
Code: 306ف
Course title: Solid State Physics
Year/Level: ثالثة فيزياء
Program Title:
  • All Academic programmes
Specialization:
Teaching Hours: Theoretical: 3Tutorial: Practical:
2- Course aims :-
  1. To study basic theories of solid state physics such as imperfections in crystals,diffusion,ceramic crytals,phase equilibrium and transport properties.
3- Course Learning Outcomes :-
4- Course contents :-
NoTopicsWeek
1Imperfections in solids:phonons, Thermal energy of solids,Fluctuations in energy
2Imperfections in solids:Misplaced atoms,Vacancies and interstials,production of point defects
3Imperfections in solids:dislocations
4Diffusion:crystallographic features,diffusion in interstial alloys,diffusion by vacancy motion,long distance motion,Macroscopic diffusion
5Solidifiction and grain size strengthening: Nucleation,Growth,cooling curves,casting or ingot structure
6Solidification and solid solution strengthening:phases,solutions and solubility, conditions for unlimited solid solubilty in metals,solid solution strengthening
7Solidification and solid solution strengthening:Isomorphous phase diagrams,relationship between strength and the phase diagram,Solidification of a solid solution alloy.Nonequilibrium solidification of solid solutions
8Solidification and solid solution strengthening: Nonequilibrium solidification of solid solutionalloys,segregation,Castability of alloyswith a freezing range,ceramic and polymer systems
9Solidification and dispersion strengthening: Principles of dispersion strengthening, The eutectic phase diagram,hypoeutectic and hypereutectic alloys
10Practical examination
11Theoretical examination
12metallic crystals
13Ceramic crystals
14Structure of organic polymers
15Crystalline and noncrystalline phases

5- Teaching and learning methods :-
SMethod
Lectures
SOLID STATE PHYSICS H C GUPTA

6- Teaching and learning methods of disables :-
  1. None

7- Student assessment :-
A. Timing
NoMethodWeek
1Oral questions3
2Activities2
3Open discussions4
4Reports1
B. Degree
NoMethodDegree
1Mid_term examination0
2Final_term examination90
3Oral examination 10
4Practical examination 0
5Semester work0
6Other types of asessment0
Total100%

8- List of books and references
SItemType
1Private notes by lecturer
2SOLID STATE PHYSICS HC GUPTA

9- Matrix of knowledge and skills of the course
SContentStudy week
Imperfections in solids:phonons, Thermal energy of solids,Fluctuations in energy
Imperfections in solids:Misplaced atoms,Vacancies and interstials,production of point defects
Imperfections in solids:dislocations
Diffusion:crystallographic features,diffusion in interstial alloys,diffusion by vacancy motion,long distance motion,Macroscopic diffusion
Solidifiction and grain size strengthening: Nucleation,Growth,cooling curves,casting or ingot structure
Solidification and solid solution strengthening:phases,solutions and solubility, conditions for unlimited solid solubilty in metals,solid solution strengthening
Solidification and solid solution strengthening:Isomorphous phase diagrams,relationship between strength and the phase diagram,Solidification of a solid solution alloy.Nonequilibrium solidification of solid solutions
Solidification and solid solution strengthening: Nonequilibrium solidification of solid solutionalloys,segregation,Castability of alloyswith a freezing range,ceramic and polymer systems
Solidification and dispersion strengthening: Principles of dispersion strengthening, The eutectic phase diagram,hypoeutectic and hypereutectic alloys
Practical examination
Theoretical examination
metallic crystals
Ceramic crystals
Structure of organic polymers
Crystalline and noncrystalline phases

Course Coordinator(s): -
  1. حمدى محمود على زيادة
Head of department: -
صلاح كامل اللبنى