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Physics 2

Study program:
Geophysics (II semester -BsC)
Name of subject: Physics 2
Instructors:
Prof. Vesna Damnjanović
Status: Compulsory
ECTS: 6
Prerequisites: -
Course Objectives:
The objective of Physics 2 is to provide a geophysical engineering background, including sound knowledge of the achievements of modern physics, which will enable the student to easily understand and accept technological innovations and apply them in research and practice.
Learning Outcomes:
Mastering of concepts, quantities and laws of modern physics, in order to be able to understand course materials and assimilate engineering knowledge.
Content:

Theory teaching
Lectures on: magnetic properties of matter (magnetic moments of electrons and atoms, diamagnetism, paramagnetism, ferromagnetism); fundamentals of Maxwell’s theory of electromagnetism; electromagnetic oscillations (oscillatory circuit, differential equation of free damped electromagnetic oscillations, differential equation of forced electromagnetic oscillations, resonance of electromagnetic oscillations, alternating current); electromagnetic waves (spectrum, differential equations, energy); quantum nature of radiation (heat radiation and properties, absolute black body radiation, Stefan-Boltzmann law, Wien’s law, Planck’s law of radiation, photoelectric effect, Compton effect); Bohr’s theory of the hydrogen atom (Bohr’s postulates, linear spectrum of the hydrogen atom); elements of quantum mechanics (corpuscular-wave properties of matter, de Broglie wave, uncertainty principle, wave function and statistical interpretation, general form of Schrodinger’s equation for stationary states, free particle motion, particle in a potential well, tunnel effect, linear harmonic oscillator in quantum mechanics); elementary modern physics of atoms and molecules (hydrogen molecule in quantum mechanics, spin quantum number, fermions and bosons, Pauli’s principle, Mendeleev’s periodic table, X-ray spectra, molecular spectra, lasers); elementary physics of solids (zonal theory, metals, semiconductors, conductors, conductivity of doped semiconductors, photoconductivity of semiconductors, p-n junction, transistors, metal-semiconductor contacts).

Practical teaching
Calculation and demonstration-experimental assignments.

Suggested Reading List:
  1. Georgijević V i ostali 2005 Predavanja iz Fizike (Beograd:Tehnički fakulteti Univerziteta u Beogradu)
  2. Milena Napijalo 1998 Fizika materijala (Beograd: Fizički fakultet Univerziteta u Beogradu)
  3. Stevan Đeniže 1998 Osnove atomske i molekularne fizike (Beograd: Fizički fakultet Univerziteta u Beogradu)
Conduct of the Course:
Lectures and follow-up on-the-board practicals, to ensure a better understanding of the course.
Fund hours:
Lectures Exercises Other forms of teaching Study research
2 2 0 0
Assessment:
Final Exam ECTS
Written exam20
Oral Exam40

Classwork Assessment ECTS
Class Participationа10
Practical Classes15
Written tests15
Additional Assessment Criteria: -


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