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Physics laboratory 6

2024/2025
Programme:
Physics, First Cycle
Orientation:
Educational Physics
Year:
3 year
Semester:
second
Kind:
optional
ECTS:
6
Language:
slovenian
Lecturer (contact person):
Hours per week – 2. semester:
Lectures
0.4
Seminar
0
Tutorial
0
Lab
5.6
Prerequisites

Enrollment in the 3rd year of study.
Passed exam in Physics laboratory 5.

Content (Syllabus outline)

List of experiments: Fourier spectroscopy, Electronic temperature in plasma, Beta spectroscopy, Charge carrier lifetime, Susceptibility, Self diffusion constant, Superconductivity, Experiments with microwaves, Bragg diffarction.

Readings

Navodila za izvedbo eksperimentov./Experiment instructions.
Literatura navedena v navodilih./Literature listed in experiment instructions.

Objectives and competences

Use of advanced instrumentation. Mastering of more demanding experimental skils. Improvment of understanding, verification of knowledge and application of physical laws.

Intended learning outcomes

Knowledge and understanding:
Through experimental work students extend their knowledge of physics and gain experience of experimental work. Students learn how to observe and measure natural phenomena, keep laboratory notebook, criticaly analyse measurements, organize and present them.

Application:
Use of experimental equipment and modern methods of data processing.

Reflection: Critical evaluation of experimental results with theoretical models. Checking the laws of physics through personal experience.

Transferable skills: The use of measuring instruments. Using the methods of analysis and data processing. Physics lab provides the basic experimental education.

Learning and teaching methods

Individual execution of experiments, independent processing of experimental results, consultations.

Assessment

Oral defense of all exercises. Execution of experiments, understanding of physics and data processing are assesed.
grading: 5 (fail), 6-10 (pass) (according to the Statute of UL)

Lecturer's references

[1] MLINARIČ, Nika, OSTERMAN, Natan. Proof-of-concept experiment of microfluidic flow sensor based on microcavity-secondary-flow observation. IEEE sensors journal. [Print ed.]. 2021, vol. 21, iss. 5, str. 5871-5878.

[2] STERGAR, Jošt, OSTERMAN, Natan. Thermophoretic tweezers for single nanoparticle manipulation. Beilstein journal of nanotechnology. 2020, vol. 11, str. 1126-1133

[3] KAVČIČ, Blaž, KOKOT, Gašper, POBERAJ, Igor, BABIČ, Dušan, OSTERMAN, Natan. One-pass manufacturing of multimaterial colloidal particles using optical recognition-enhanced laser direct imaging lithography. Applied physics express, ISSN 1882-0778, 2016, vol. 9, str. 026501 -1-026501 -4.

[4] OSTERMAN, Natan, BRAUN, Dieter. Thermooptical molecule sieve on the microscale. Applied physics letters, ISSN 0003-6951. [Print ed.], 2015, vol. 106, no. 7, str. 073508 -1-073508 -5.

[5] POTISK, Tilen, SVENŠEK, Daniel, BRAND, Helmut R., PLEINER, Harald, LISJAK, Darja, OSTERMAN, Natan, MERTELJ, Alenka. Dynamic magneto-optic coupling in a ferromagnetic nematic liquid crystal. Physical review letters. [Print ed.]. 2017, vol. 119, no. 9, str. 097802-1-097802-6