05.06.2013 Views

semmelweis university 2 0 1 2 / 2 0 1 3

semmelweis university 2 0 1 2 / 2 0 1 3

semmelweis university 2 0 1 2 / 2 0 1 3

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

SEMMELWEIS UNIVERSITY / FACULTY OF DENTISTRY<br />

290<br />

PHYSICAL BASES OF DENTAL MATERIALS<br />

Tutor: Dr. István Voszka<br />

First Semester<br />

Lecture (2 hours/week)<br />

1. Basic forms of material, atoms, interactions, bonds<br />

2. Multiatomic systems. Gases. Interpretation of temperature. Boltzmann-distribution.<br />

Fluids. Interface phenomena. Liquid crystals.<br />

3. Solid materials.<br />

4. Methods for structure examination (diffraction, microscopic, spectroscopic methods)<br />

5. Crystallisation. Metals, alloys.<br />

6. Ceramics, polymers, composites.<br />

7. Mechanical properties of materials 1. Elasticity.<br />

8. Mechanical properties of materials 2. Plasticity, hardness.<br />

9. Mechanical properties of materials 3. Rheological properties, viscoelasticity.<br />

10. Other physical (optical, electrical, thermal) properties of materials<br />

11. Comparison of the properties of dental materials<br />

12. Bases of biomechanics. Structure, mechanical and other properties of tissues.<br />

13. Physical bases of implantology.<br />

14. Physical bases of orthodontics.<br />

MEDICAL BIOLOGY (Cell Biology)<br />

Department of Genetics, Cell- and Immunobiology<br />

Lecturer: Prof. Dr. András Falus<br />

Tutor: Dr. Valéria László<br />

First semester<br />

Lecture: 2 hours per week<br />

Practice: 1 hour per week<br />

Credit: 3<br />

Topics:<br />

1.) Eukaryotic cell organization.<br />

2.) Structure and function of plasma membrane.<br />

3.) Structure and function of cell nucleus.<br />

4.) Nucleolus and ribosomes.<br />

5.) Structure and function of endoplasmic reticulum.<br />

6.) Golgi and secretion.<br />

7.) Endocytosis. Intracellular digestion<br />

8.) Protein and lipid tranport mechanisms in eukaryotic cell.<br />

9.) Mitochondria and peroxisomes<br />

10.) Cytoskeleton and movement.<br />

11.) Cell communication. Regulation of cellular functions.<br />

12.) Cells in their social context.<br />

13.) Cell cycle and its regulation

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!