
kabdrakhimova_gd@enu.kz
Master (scientific-pedagogical):
2021:- - Physics of radioisotope medicine
- - Physical principles of radionuclide diagnostics and therapy (RDTFP 5313)
- - Physical aspects of radiation planning
- - Accelerator technique
- - Physics of nanosystems
- - Nucleosynthesis (NUC 5311)
- - Nuclear fission (NF 5206)
- - Nanophotonics
- - Nuclear models (YaM 5301)
- - Physics and theory of nuclear reactors (KTNO 6319)
- - Basics of radiology
- - Methods for diagnosing diseases
- - Ultrasound and non-ionizing radiation
- - Dosimetric planning of radiation therapy
- - Nuclear-physical methods in medicine
- - Clinical dosimetry
- - Equipment for dosimetric measurements and quality control
- - Radiation safety in medicine
- - Radiation measurements for radiotherapy
- - Modern methods of radiation therapy
- - Phantoms for the calibration of quality control
- - Membranes and membrane technology (MMT 6320)
Doctor PhD:
2022:- - Radiation dosimetry research methods
- - Modern advances in the field of radiation diagnostics and therapy
- - Nuclear technology (NT 7306)
- - Use of achievements modern nuclear physicists (UAMNPh 7307)
- - Radioecologicalmonitoringandriskassessment
- - Radiobiological effects of radionuclides and radiation effects in ecosystems
Bachelor:
2011:- - Atomic physics (AF 3211)
- - Basics of Nuclear and Particle Physics
- - Physics (Phys 1204)
- - The use of radioactive isotopes (PRI 309)
- - Introduction to radiation physics
- - Introduction to radiation physics
- - Basics of Nuclear and Particle Physics
- - An introduction to specialty (IS 1302)
- - Computing Physics
- - Basis of Vector and Tensorial analysis (BVTA 2203)
- - Optics (Opt 2213)
- - Basics of vector and tensor analysis (BVTA 2219)
- - Physics accelerators (PA 4243)
- - Physical foundations of applied nuclear physics (PFANP 4139)
- - Electricity and Magnetism (EM 2206)
- - Theory of nuclear reactions (TNR 5304)
- - Heavy ion physics (HIP 5314)
- - Exotic cores. (EYa 5314)
- - Physical Foundations of Applied Nuclear Physics (PhFANPh 4310)
- - Interaction of radiation with matter (IRM 4303)
- - Physics (Phys 1205)
- - Physics (Phys1204)
- - Exotic nuclei (EYa 5315)
- - Fundamentals of thermodynamics and statistical physics (FTSP 4216)
- - Physical Principles of Applied Nuclear Physics (PhFANPh 4310.)
- - Interaction between emission and substance (IES 4303.)
- - Accelerator Physics (AFh 4301)
- - Nuclear technologies in industry (NTI 4303)
- - Experimental Methods of Nuclear Physics (EMNPh 4309)
- - Electricity and magnetism (EM 2209)
- - Nuclear experiment technology (NET 4304)
- - Principles of dosimetry (PD 4235)
- - Experimental Methods of Nuclear Physics (EMNPh 4301)
- - Atomic physics (AP 3215)
- - Neutron physics (NPh 4302)
- - Atom physics (AP 3206)
- - Exotic nuclei (EN 5311)
- - Radiation safety (RS 4311)
- - Registration and spectrometry of heavy ions and nuclear reaction products (RSHINRP 5312)
- - Principles of quantum field theory (PQFTh4316)
- - The structure of atomic nucleus (SAN 4307)
- - Heavy-Ion Physics (HIPh 5313)
- - Programming technology (PT 2221)
- - Nuclear reactors and nuclear power (NRNP 5306)
- - Elementary particle physics (EPP 3230)
- - Physics thermonuclear synthesis (PhThS 4315)
- - Introduction to the Specialty (IS 1202,)
- - Exotic nuclei (ENu 5321)
- - Atomic and nuclear physics (ANcPh 3224)
- - Physical bases of nuclear medicine (PhBNM 4207)
- - The use of nuclear facilities in medicine (UNFM 4208)
- - Elementary particle physics (EPPh 5323)
- - Basics of scientific research
- - Fundamentals of Thermodynamics and Statistical Physics (FTSPh 4302)
- - Electrodynamics (Ele 3214)
- - General chemistry
- - Quantum mechanics (KM 3207)
- - Condensed Matter Physics (CMPh 4218)
- - Principles of dosimetry (PD 4312)
- - Neutron physics (NPh 4309)
- - Accelerator Physics (APh 4308)
- - Interaction between emission and substance (IBES 4305)
- - Theoretical mechanics (TM 2206)
- - Nuclear Radiation Detectors (NRD 5307)
- - Physical Principles of Applied Nuclear Physics (PhFANPh 5326)
- - Theory and methods of teaching physics (TMTPh 4225)
- - Basics of quantum field theory
- - Nuclear reactions at low energies (NPhLE 4304)
- - Hydrogen Energy and nanostructured materials (HENM 5315)
- - Basics of scientific research
- - Theory and Methods of Teaching Physics
1. Computational Modeling of Cation Diffusion in Isolated Nanocrystals of Mixed Uranium, Plutonium and Thorium Dioxides.
Crystals. 2025
2. Atomistic Modeling of Graphene Oxide and Epoxy Resin Composite for Wind Turbine Applications.
Es Materials and Manufacturing. 2025
3. Advancements in electrolyte materials and hybrid integration for enhanced solid oxide fuel cell performance.
International Journal of Low Carbon Technologies. 2025
4. Exhaust waste heat recovery system using thermoelectric generator: a prospective of novel simulation technique toward low-carbon technology.
International Journal of Low Carbon Technologies. 2025
5. Synthesis and Characterization of Electrolyte and Electrode Material Sample for Solid Oxide Fuel Cells.
Eurasian Journal of Physics and Functional Materials. 2025
7. The Thermal Stability and Photoluminescence of ZnSeO3 Nanocrystals Chemically Synthesized into SiO2/Si Track Templates.
Crystals. 2024
8. Performance analysis and comprehensive research of a solid oxide FC device.
International Journal of Low Carbon Technologies. 2024
9. Innovative approaches to scaling up hydrogen production and storage for renewable energy integration.
International Journal of Low Carbon Technologies. 2024
10. Investigation of Thermal and Electrical Properties of Composite Cathode Materials Pr1–xSrxFe1–yCoyO3 (x = 0.3, 0.4; y = 0.2): GDC and La2Ni1-xCoxO4+δ (x = 0.2): GDC for SOFC.
Eurasian Journal of Physics and Functional Materials. 2024
11. Classification of Solid Oxide Fuel Cells.
Nanomaterials. 2022
12. Investigation of (p, xp) and (p, xα) reactions of 30-MeV protons with the 103Rh nucleus.
Acta Physica Polonica B. 2020
13. Some peculiarities of interactions of weakly bound lithium nuclei at near-barrier energies.
Journal of Physics G Nuclear and Particle Physics. 2018
14. Experimental study of the energy dependence of the total cross section for the 6He + natSi and 9Li + natSi reactions.
Physics of Particles and Nuclei. 2017
15. Investigation of total cross sections for reactions induced by 6He interaction with silicon nuclei at energies between 5 and 50 MeV/А.
Physics of Atomic Nuclei. 2017
