Physics-Biophysics 1 - Theory

Daten

Offizielle Daten in der Fachveröffentlichung für das folgende akademische Jahr: 2020-2021

Lehrbeauftragte/r

Semesterwochenstunden

Vorlesungen: 28

Praktika: 0

Seminare: 0

Insgesamt: 28

Fachangaben

  • Kode des Kurses: OPO-Z1E-T
  • 2 kredit
  • Pharmacy
  • Med.-biol. theoretical module and practical skills modul
  • autumn
Voraussetzungen:

OPO-Z1G-T parallel

Vizsgakurzus:

ja

Zahl der Kursteilnehmer für den Kurs:

min. 5 – max. 100

Thematik

The course addresses the physical basis of the structure and function of biological systems. The main topics include atomic and nuclear physics, thermodynamics, transport processes, molecular and supramolecular systems, bioelectric phenomena, and biological motion.

Vorlesungen

  • 1. Introduction - Dr. Lukács András Szilárd
  • 2. Gas laws - Dr. Lukács András Szilárd
  • 3. Kinetic theory of gases - Leipoldné Dr. Vig Andrea Teréz
  • 4. Work: internal energy of a gas, definition of work and heat. - Leipoldné Dr. Vig Andrea Teréz
  • 5. Specific heat: relationship between heat and specific heat. The basics of calorimetry - Leipoldné Dr. Vig Andrea Teréz
  • 6. Enthalpy: definition of enthalpy, enthalpy at constant pressure. - Leipoldné Dr. Vig Andrea Teréz
  • 7. Entropy: classical approach of entropy.Statistical approach of entropy - Dr. Lukács András Szilárd
  • 8. 2nd law of thermodynamics - Dr. Lukács András Szilárd
  • 9. Gibbs free energy - Dr. Lukács András Szilárd
  • 10. Energetics of metabolism: the pathways of metabolism,connection to free energy - Dr. Bódis Emőke
  • 11. Protein structure, thermodynamics of folding - Dr. Lukács András Szilárd
  • 12. Cytoskeletal proteins - Dr. Huberné Dr. Barkó Szilvia
  • 13. Motor proteins - Dr. Huberné Dr. Barkó Szilvia
  • 14. Fluid flow - Dr. Huber Tamás
  • 15. Diffusion, osmosis - Dr. Huber Tamás
  • 16. Membrane structure - Dr. Ujfalusi Zoltán
  • 17. Membrane transport - Dr. Ujfalusi Zoltán
  • 18. Oscillatory motion - Dr. Ujfalusi Zoltán
  • 19. Waves: types and properties of waves. Interference, diffraction, standing waves - Dr. Ujfalusi Zoltán
  • 20. Electromagnetic waves - Dr. Ujfalusi Zoltán
  • 21. X-ray: generation and types of X-rays - Leipoldné Dr. Vig Andrea Teréz
  • 22. X-ray diffraction - Leipoldné Dr. Vig Andrea Teréz
  • 23. Biophysics of vision - Dr. Kengyel András Miklós
  • 24. Biophysics of hearing - Dr. Kengyel András Miklós
  • 25. Introduction to atomic physics - Dr. Szabó-Meleg Edina
  • 26. Atomic models - Dr. Szabó-Meleg Edina
  • 27. Photoelectric effect, Frank-Herz experiment - Dr. Szabó-Meleg Edina
  • 28. Introduction to quantum mechanics - Dr. Lukács András Szilárd

Praktika

Seminare

Materialien zum Aneignen des Lehrstoffes

Obligatorische Literatur

Vom Institut veröffentlichter Lehrstoff

Handouts and other online materials can be found on the departmental website (http://biofizika.aok.pte.hu)

Skript

Empfohlene Literatur

Damjanovich Sándor, Fidy Judit, Szöllősi János (eds.): Medical Biophysics, Medicina, Budapest, 2009

Voraussetzung zum Absolvieren des Semesters

Maximum of 25 % absence allowed

Semesteranforderungen

During the semester the student will have to write two tests on the 6th and 13th week, Based on the results those students who achieved grade 4 or 5 can keep the obtained grade as an exam grade. In order to be eligible for the exam the students have to achieve a satisfacatory grade.

Möglichkeiten zur Nachholung der Fehlzeiten

Missed practices can be made up during make-up opportunities provided by the department. During each make-up lab, only one missed practice can be executed.

Prüfungsfragen

The condition of admission to the exam is the successful completion of the practices carried out in parallel to the theory.

http://biofizika.aok.pte.hu

Prüfer

  • Dr. Bódis Emőke
  • Dr. Grama László
  • Dr. Huber Tamás
  • Dr. Huberné Dr. Barkó Szilvia
  • Dr. Lukács András Szilárd
  • Dr. Szabó-Meleg Edina

Praktika, Seminarleiter/innen