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Structure of physics 0900-ERS-3STF
Wykład (WYK) Rok akademicki 2018/19

Informacje o zajęciach (wspólne dla wszystkich grup)

Liczba godzin: 30
Limit miejsc: (brak limitu)
Literatura: (tylko po angielsku)

Recommended literature:

1. David Halliday, Robert Resnick, Jearl Walker, Fundamentals of Physics, 9th Edition, John Wiley Sons, Inc. , 2011

Efekty uczenia się: (tylko po angielsku)

A student: 1. Understands the structure of physics as a scientific discipline, gains the awareness of the connections of particular fields and theories, knows examples of erroneous hypotheses of physical and erroneous physical theories (K_W04). 2. Knows the limitations of the applicability of selected physical theories, models of physical objects and the description of physical phenomena (K_W05). 3. Understands the formal structure of basic physical theories, can use appropriate mathematical tools to uantify the phenomena from selected physics departments (K_W07). 4. Can present in a popular manner the basic facts from the physics departments, outline the structure of physics as a scientific discipline and present the influence of selected discoveries in the field of physics on the development of technology, economy and civilization development (K_U01). 5. Is able to prepare a study, including those addressed to a mass audience, regarding research in the field of physics departments, using the obtained knowledge and literature and Internet resources (K_U02). 6. Can independently search for information in the literature and Internet resources, also in foreign languages (K_K05).

Metody i kryteria oceniania: (tylko po angielsku)

Passing the course is based on the assessment that takes into account the presence and activity, as well as presentation skills of the choosen topics during the seminar and the ability to discuss problems related to these subjects.

Zakres tematów: (tylko po angielsku)

Topics of the lecture:

1. The subject of research in physics, physical science, physics components (concepts, laws, principles, hypotheses, theories), conceptual structures in physics by H.Heisenberga.

2. Physical systems, motion, inertial and noninertial systems, force, torue, momentum, angular momentum, energy, Newton laws, Kepler lows, Lagrange points, the forces of inertia, Coriolis force, friction, mechanics of rigid body .

3. The bonds, dAlambert principle, Lagrange euations of the first and second kind, canonical euations of Hamilton, Hamiltons principle.

4. Anharmonic oscillators, the diagram in the phase space, attractors, tractor pool, Poincare diagram, deterministic chaos.

5. Rules of conservatio in physics: energy, momentum, angular momentum, electric charge, baryon number, lepton number, as well as parity and izospin, Noether theorem.

6. Lorentz transformation.

7. Maxwells euations.

8. The electric potential, Poisson and Laplace euation, the movement of a charge in crossed fields: the electric and magnetic, cyclotron, synchrotron, Hall effect, interaction between wires with electric current.

9. Comductors, semiconductors and insulators, dia- para- and ferro-magnetic materials.

10. The electromagnetic waves and waves of matter.

11. The principles of thermodynamics.

12. Fundamentals of statistical physics.

13. uantum mechanics - the state, the wave function, observables, measurement, Schrdinger euation.

14. uantum mechanics - Pauli exclusion principle, atomic structure, orbitals.

15. The elementary particles.

Metody dydaktyczne: (tylko po angielsku)

Lecture prepared in PowerPoint, illustrated with numerical modelling of physical effects.

Grupy zajęciowe

zobacz na planie zajęć

Grupa Termin(y) Prowadzący Miejsca Akcje
1 każdy piątek, 9:00 - 10:30, sala 2002
Marek Kisielewski 2/ szczegóły
Wszystkie zajęcia odbywają się w budynku:
Budynek Wydziału Fizyki - Kampus
Opisy przedmiotów w USOS i USOSweb są chronione prawem autorskim.
Właścicielem praw autorskich jest Uniwersytet w Białymstoku.