Basics of Chemistry 2

Data

Official data in SubjectManager for the following academic year: 2026-2027

Course director

Number of hours/semester

lectures: 28 hours

practices: 0 hours

seminars: 0 hours

total of: 28 hours

Subject data

  • Code of subject: OPE-KP2-T
  • 2 kredit
  • Pharmacy
  • Elective modul
  • spring semester
Prerequisites:

-

Exam course:

Course headcount limitations

min. 5 – max. 40

Available as Campus course for . Campus-karok: ÁOK GYTK

Topic

Based on the previously acquired knowledge, students will become familiar with the properties of the most important elements and their compounds with special attention to the relationships, natural laws and regularities that should be learned during the basic chemistry subjects of biomedical education. The subject also discusses the role of inorganic compounds in biochemical processes.

Lectures

  • 1. The electronic structure of atom. Periodic properties. - Perjési Pál
  • 2. The electronic structure of atom. Periodic properties. - Perjési Pál
  • 3. Structure of molecules. The valence bond theory - Perjési Pál
  • 4. Structure of molecules. The valence bond theory - Perjési Pál
  • 5. Structure of molecules. The molecular-orbital theory. - Perjési Pál
  • 6. Structure of molecules. The molecular-orbital theory. - Perjési Pál
  • 7.

    Coordination compounds I. Structure, stability. The Pearson's acid-base classification.

    - Perjési Pál
  • 8.

    Coordination compounds I. Structure, stability. The Pearson's acid-base classification.

    - Perjési Pál
  • 9.

    Coordination compounds II. The ligand field theory.

    - Perjési Pál
  • 10.

    Coordination compounds II. The ligand field theory.

    - Perjési Pál
  • 11.

    Structure and reactions of oxygen. Mechanisms of oxygen activation.

    - Perjési Pál
  • 12.

    Structure and reactions of oxygen. Mechanisms of oxygen activation.

    - Perjési Pál
  • 13.

    Sulfur: structure and reactivity. Sulfur-containing small molecular weight biomolecules.

    - Perjési Pál
  • 14.

    Sulfur: structure and reactivity. Sulfur-containing small molecular weight biomolecules.

    - Perjési Pál
  • 15.

    Nitrogen: structure and reactivity. Nitrogen-containing inorganic biomolecules.

    - Perjési Pál
  • 16.

    Nitrogen: structure and reactivity. Nitrogen-containing inorganic biomolecules.

    - Perjési Pál
  • 17.

    Phosphorous: structure and reactivity. Pharmaceutical and biological importance.

    - Perjési Pál
  • 18.

    Phosphorous: structure and reactivity. Pharmaceutical and biological importance.

    - Perjési Pál
  • 19.

    Buffers. Physiological buffer systems.

    - Perjési Pál
  • 20.

    Buffers. Physiological buffer systems.

    - Perjési Pál
  • 21.

    Carbon and carbon compounds. Biochemical importance of inorganic carbon compounds.

    - Perjési Pál
  • 22.

    Carbon and carbon compounds. Biochemical importance of inorganic carbon compounds.

    - Perjési Pál
  • 23.

    Silicon and silicon compounds. Pharmacopoeia qualification of glasses.

    - Perjési Pál
  • 24.

    Silicon ans silicon compounds. Pharmacopoeia qualification of glasses.

    - Perjési Pál
  • 25.

    Structure and reactivity of boron and aluminium. Pharmaceutical importance.

    - Perjési Pál
  • 26.

    Structure and reactivity of boron and aluminium. Pharmaceutical importance.

    - Perjési Pál
  • 27.

    Iron and iron compounds. Biochemical importance of iron.

    - Perjési Pál
  • 28.

    Iron and iron compounds. Biochemical importance of iron.

    - Perjési Pál

Practices

Seminars

Reading material

Obligatory literature

Ebbing D.D., Gammon S.D.: General Chemistry, Houghton Miffilin Co., Boston, 2009

Literature developed by the Department

Almási A., Kuzma M., Perjési P.: General and Inorganic Chemistry - Laboratory Techniques and Practices, electronic educational material University of Pécs, 2014

Notes

Recommended literature

en.wikibooks.org/wiki/General_Chemistry

J. McMurray, R. C. Fay: Chemistry, 5th edition

Conditions for acceptance of the semester

Two midterm tests will be written during the semester on the 7th and the 12th weeks. The result of one of the tests should be above 60%. The average of the two tests should be above 50%. One retake chance is allowed. The result of the retake test is combined with the previously written ones.

Mid-term exams

Two midterm tests will be written during the semester on the 7th and the 12th weeks. The result of one of the tests should be above 60%. The average of the two tests should be above 50%. One retake chance is allowed. The result of the retake test is combined with the previously written ones.

Making up for missed classes

There is no opportunity to make up missed classes.

Exam topics/questions

Written test covering the topics of the lectures.

Examiners

  • Perjési Pál

Instructor / tutor of practices and seminars

  • Perjési Pál