University of Warsaw, Faculty of Physics - Central Authentication System
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Physics, individual path; elective courses (course group defined by Faculty of Physics)

Faculty: Faculty of Physics Courses displayed below are part of group defined by this faculty, but this faculty is not necessarily the one that organizes these courses. Read Help for more information on this subject.
Course group: Physics, individual path; elective courses
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2024Z - Winter semester 2024/25
2024L - Summer semester 2024/25
2025Z - Winter semester 2025/26
2025L - Summer semester 2025/26
(there could be semester, trimester or one-year classes)
Actions
2024Z 2024L 2025Z 2025L
1100-MAC
n/a n/a n/a
Classes
Winter semester 2024/25
  • Classes - 15 hours
  • Lecture - 30 hours
Groups

Brief description
No brief description found, go to course home page to get more information.
Course page
1100-MGTP
n/a n/a n/a

Classes
Summer semester 2025/26
  • Lecture - 30 hours
Groups

Brief description
No brief description found, go to course home page to get more information.
Course page
1100-VAC
n/a n/a n/a
Classes
Winter semester 2024/25
  • Lecture - 30 hours
Groups

Brief description
No brief description found, go to course home page to get more information.
Course page
1100-3`TG1 n/a n/a
Classes
Winter semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Winter semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

The course is devoted to basic group theory, representations of groups, theory of Lie groups and algebras. It will discuss some applications of groups to physics

Course page
1100-4AGQM n/a n/a

Classes
Summer semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Summer semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

The corse discusses various selected topics in quantum mechanics typically not included in basic courses. The emphasis is put on physical aspects not on a mathematical rigor.

Course page
1100-MAFK n/a n/a n/a
Classes
Winter semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

The course is devoted to applications of C*- and von Neumann algebras in quantum physics. It will include the discussion of the GNS representation, free quantum gases, bosonic and fermionic, at zero and positive temperatures, Bogoliubov transformations and KMS states.

Course page
1100-3`SKwF n/a n/a
Classes
Winter semester 2024/25
  • Classes - 60 hours
Winter semester 2025/26
  • Classes - 60 hours
Groups

Brief description

(in Polish) Kurs będzie nastawiony na umiejętności praktyczne i ma na celu wprowadzenie studentów do technik symulacji komputerowych w zastosowaniu do konkretnych problemów fizycznych. Zostaną omówione podstawowe metody modelowania układów fizycznych takie jak dynamika molekularna czy Monte Carlo, omówimy też elementarne modele sieciowe pozwalające opisywać procesy wzrostu, przejścia fazowe etc. Podstawowym celem kursu jest wyposażenie studentów w wystarczające narzędzia, tak aby mogli samodzielnie używać symulacji komputerowych do analizy rzeczywistych układów fizycznych. W ramach kursu odbywać się będą wykłady oraz zajęcia praktyczne w laboratorium komputerowym.

Course page
1100-GER n/a n/a

Classes
Summer semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Summer semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

(in Polish) Zajęcia mają na celu zapoznanie studentów fizyki (nauk przyrodniczych) z podstawowymi pojęciami i twierdzeniami elementarnej geometrii różniczkowej, używanej np. w mechanice i teorii pola.

Course page
1100-GR n/a n/a
Classes
Winter semester 2024/25
  • Classes - 30 hours
  • Lecture - 45 hours
Winter semester 2025/26
  • Classes - 30 hours
  • Lecture - 45 hours
Groups

Brief description

Course plan:

1. Euclidean and Minkowski spaces.

2. Basics of differential geometry.

3. Formulation of General Relativity.

4. Weak gravitational fields.

5. Schwarzschild spacetime.

6. The simplest cosmological models.

Course page
1100-3In`OTW1 n/a n/a
Classes
Winter semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Winter semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

Introduction to differential geometry and General Relativity (GR) and its basic applications: gravitational waves, motion in static spherically symmetric gravitational field and cosmological models.

Course page
1100-MEG n/a n/a n/a
Classes
Winter semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

Geometric mechanics introduces students to the geometric approach to physics. The course covers the basics of symplectic geometry and Poisson geometry and their applications in physics. Integrals of motion, global trajectory problems, and reductions are analyzed. The last lectures will present one of the more advanced topics chosen by the course participants (quantization of Poisson algebras/BRST/k-symplectic geometry).

Course page
1100-TGF n/a n/a

Classes
Summer semester 2024/25
  • Classes - 45 hours
  • Lecture - 45 hours
Summer semester 2025/26
  • Classes - 45 hours
  • Lecture - 45 hours
Groups

Brief description

The course is an introduction to theory of groups and their representations with an emphasis on Lie groups and algebras.

Course page
1100-4HaE n/a n/a
Classes
Winter semester 2024/25
  • Classes - 45 hours
  • Lecture - 45 hours
Winter semester 2025/26
  • Classes - 45 hours
  • Lecture - 45 hours
Groups

Brief description

(in Polish) The theoretical framework known as hydrodynamics and elasticity provides a powerful and complete description of our world at macroscopic scales (i.e, at large scales and long times compared to the molecular scales). The macroscopic dynamics of a variety of complex systems, such as biological and soft materials, atmospheric clouds, and the crust of the Earth, poses a formidable challenge for theoretical modeling, in which knowledge of classical hydrodynamics and elasticity is a major prerequisite.

This course introduces the basic equations of hydrodynamics and elasticity and

methods of their solution.

• We discuss the physics of everyday phenomena

• We provide a uniform mathematical framework to describe flow and deformation

• We show numerous real-life applications and examples

Course page
1101-337 n/a n/a

Classes
Summer semester 2024/25
  • Lecture - 30 hours
Summer semester 2025/26
  • Lecture - 30 hours
Groups

Brief description

The course is focused on ideas and problems of contemporary particle physics.

Course page
1100-4ITQ n/a n/a n/a

Classes
Summer semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

Various aspects of quantization

Course page
1102-341 n/a n/a
Classes
Winter semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Winter semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

First course on quantum mechanics supports tools for a theoretical description of one-particle quantum systems. Many important problems encountered in physics require understanding of quantum systems consisting of many particles, with strongly correlated constituents.

Course page
1100-3Ind02 n/a n/a
Classes
Winter semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Winter semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

Introduction of basic concepts and (experimental and theoretical) ideas in particle and nuclear physics is the main goal of this course (comprising 2 h. of lecture and 2 h. of exercises weekly).

We shall strive to present the up-to- date status of this fast developing field.

Course page
1102-3`WTOF n/a n/a
Classes
Winter semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Winter semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

The course is addressed to the 3rd year students. It includes introduction to present theories of strong, weak and electromagnetic interactions.

Course page
1100-2`LFT n/a n/a
Classes
Winter semester 2024/25
  • Lab - 30 hours
Winter semester 2025/26
  • Lab - 30 hours
Groups

Brief description

This course is devoted to scientific calculations carried out on the basis of original papers in theoretical physics. Sessions will take place in the computer lab and the participants will use the program Mathematica.

Course page
1100-UM2 n/a n/a

Classes
Summer semester 2024/25
  • Workshops - 45 hours
Summer semester 2025/26
  • Workshops - 45 hours
Groups

Brief description

The classes aim to develop operational proficiency in creating and using machine learning models. This course is intended for anyone interested in the practical side of machine learning, regardless of their year of study or field of study.

The classes take the form of workshops - a lecture and exercise combined in in one block. Greater emphasis is placed on writing efficient and neat code to solve issues encountered while working on machine learning models.

The course is conducted using the TensorFlow package and either Google Colaboratory or participants' own computers. Course materials are in the form of Jupyter notebooks.

Course page
1100-MPH n/a n/a

Classes
Summer semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Summer semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

Banach spaces, bounded operators

Hilbert spaces

Orthonormal bases

Orthogonal projections

Bounded operators on Hilbert spaces

Unitary operators

Fourier series

Fourier transformation

Course page
1100-2`PMK n/a n/a

Classes
Summer semester 2024/25
  • Lab - 45 hours
Summer semester 2025/26
  • Lab - 45 hours
Groups

Brief description

The aim of the course is to familiarize participants with issues related to programming microcontrollers in C/C++, as well as designing, building, and commissioning electronic circuits.

Course page
1100-3`MNum n/a n/a

Classes
Summer semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Summer semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

The course will be focused on basic numerical methods used in scientific computer aided computations.

Course page
1100-3TO n/a n/a
Classes
Winter semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Winter semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

Theory of operators on Hilbert spaces

Course page
1101-212 n/a n/a

Classes
Summer semester 2024/25
  • Lecture - 30 hours
Summer semester 2025/26
  • Lecture - 30 hours
Groups

Brief description

In this lecture I try to present problems that are actually investigated by physicist working on the field of solid state physics.

Course page
1100-2`FPK n/a n/a
Classes
Winter semester 2024/25
  • Lecture - 30 hours
Winter semester 2025/26
  • Lecture - 30 hours
Groups

Brief description

Program

The goal of this lecture is to build in the student basic physical understanding of atmospheric phenomena which govern weather and climate,

Course page
1100-3`KKwSF n/a n/a
Classes
Winter semester 2024/25
  • Lecture - 30 hours
Winter semester 2025/26
  • Lecture - 30 hours
Groups

Brief description

During the lecture, the physics of the light-matte coupling will be discussed, with a particular attention to the issue of coupling of semiconductor Quantum Dot to the optical mode of a microcavity.

Course page
1103-5Geo23 n/a n/a

Classes
Summer semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Summer semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description
No brief description found, go to course home page to get more information.
Course page
1100-3`WZO n/a n/a

Classes
Summer semester 2024/25
  • Lecture - 30 hours
Summer semester 2025/26
  • Lecture - 30 hours
Groups

Brief description

The course presents an overview of topics in optics, starting from classical geometrical and wave optics formulation, through basic laser physics to contemporary nonlinear optics with its latest applications.

Hybrid lecture - several in-class meetings (some with demonstrations), and some accessed in the web for self-paced learning.

Course page
1100-FSFM n/a n/a

Classes
Summer semester 2024/25
  • Classes - 30 hours
  • Lecture - 30 hours
Summer semester 2025/26
  • Classes - 30 hours
  • Lecture - 30 hours
Groups

Brief description

Selected special functions and differential equations.

Course page
ul. Pasteura 5, 02-093 Warszawa tel: +48 22 5532 000 https://www.fuw.edu.pl/ contact accessibility statement site map USOSweb 7.2.0.0-11 (2025-12-17)