– International Engineering Technological University; department biochemical engineering; associate professor (2022 – present time)
– Al-Farabi Kazakh National University; Faculty of Physics and Technology; Department of Solid State Physics and Nonlinear Physics; senior lecturer (2011 – 2022).
– Al-Farabi Kazakh National University; Faculty of Physics; Laboratory of Semiconductor Instrumentation, Senior Researcher (1992 – 2011).
– S.M. Kirov KazSU; linear accelerator Laboratory; engineer of the research sector (1990 – 1992).
– KazPI named after Abai; linear accelerator laboratory; engineer of the research sector (1987 – 1990).
1979 - 1987 S.M. Kirov Kazakh State University. Physicist. Teacher.
2001 - 2004 al-Farabi Kazakh National University, full-time postgraduate study. 01.04.07 – condensed matter physics.
3822/GF4 "Development of the internal structure of metamaterials and the study of their electrophysical and quasi-optical properties" under the Grant funding program for scientific research in 2015, project manager (2015 – 2017).
The participants are also co-executors of a large number of scientific projects.
Абдибаттаева М.М., Никулин В.Э., Сайдағали Ж.С., Дінісламов Е.Д. Применение блокчейн технологии в обеспечении цели устойчивого развития // Труды Международной научно-практической конференции: «Перспективы блокчейн-технологий в образовании, бизнесе и государственном секторе». – Алматы: МИТУ, 2023.
Никулин В.Э., Нұрбақыт Г. Сайдағали Ж.С., Салықжан Д.Н. Роль блокчейн технологий в обеспечении устойчивого развития и экологической безопасности // Международная научно-практическая конференция «Современные достижения в биомедицине и экологии», КазНУ им. аль-Фараби, 20 апр. 2023 г.
Mikhailov L.V., Mikhailova S.L., Ismailova G.A., Yersaiyn R., Kenes N., Lavrishev O., Nikulin V.E. Using solar energy by a smart window for the needs of urban residents // Materials Today: Proceedings, 2020. – Vol. 25. – Part 1. – pp. 64-66.
Assilbayeva R.B., Turmukhamedov A.Zh., Sekerbayev K.S., Taurbayev E.T., Nikulin V.E., Taurbayev T.I., Rodichkina S.P., Timoshenko V.Yu. Silicon Nanostructures for Visible and Infrared Photonic Devices // VI Международный симпозиум по когерентному оптическому излучению полупроводниковых соединений и структур. – Сборник тезисов докладов. – М.: НИЯУ МИФИ, 2017. - с. 51-52.
Sekerbayev K.S., Taurbayev E.T., Nikulin V.E., Taurbayev T.I., Baranov A.N., Timoshenko V.Yu. Enhanced Photoluminescent Properties of Organometal Perovskites Deposited on Nanostructured Semiconductor Substrates // VI Международный симпозиум по когерентному оптическому излучению полупроводниковых соединений и структур. – Сборник тезисов докладов. – М.: НИЯУ МИФИ, 2017. - с. 57.
Timoshenko V.Y., Gonchar K.A., Mirgorodskiy I.V., Maslova N.E., Nikulin V.E., Mussabek G.K., Taurbaev Y.T., Svanbayev E.A., Taurbaev T.I. Efficient visible luminescence of nanocrystalline silicon prepared from amorphous silicon films by thermal annealing and stain etching // Nanoscale Research Letters, 2011. – Vol. 6. – Article number 349. pp. 1-5.
Mamichev D.A., Gonchar K.A., Timoshenko V.Yu., Mussabek G.K., Nikulin V.E., Taurbaev, T.I. Enhanced Raman scattering in multilayer structures of porous silicon // Journal of Raman Spectroscopy, 2011. – Vol. 42. – Iss 6. – pp. 1392-1395.
Taurbayev Y.T., Gonchar K.A., Zoteev A.V., Timoshenko Victor, Zhanabayev Z.Zh., Nikulin V.E., Taurbayev T.I. Electrochemical Nanostructuring of Semiconductors by Capillary-Cell Method // Key Engineering Materials, 2010. – Vol. 442. – pp. 1-6.
The purpose of the discipline is to provide students with knowledge about the basic laws and phenomena of thermodynamics, electricity and magnetism, optics, atomic and nuclear physics, necessary for solving engineering problems. The fundamentals of thermodynamics, electrostatics, direct current, magnetic field, electromagnetic phenomena, optics, atomic and nuclear physics are studied. As a result of mastering the discipline, the student is able to apply basic physical laws and methods to analyze physical processes and solve professional problems.
The discipline aims to acquire knowledge of the basics of electrical safety, the study of the influence of electric current on the human body, methods and means of protection against it, as well as safety rules during their installation and operation. As a result of studying the discipline, the student has the skills to provide first aid to victims of electric shock; to measure the insulation resistance and analyze the insulation condition of current-carrying parts of electrical installations. The student can use the acquired knowledge in the future when providing first aid in case of electric shock, measuring the insulation resistance and analyzing the insulation condition of current-carrying parts of electrical installations.
The purpose of the discipline is to form a student's understanding of the phenomenon of radiation, methods of measuring radiation, teaching methods of measuring radiation in domestic and industrial conditions; teaching basic principles of protection from radiation, providing primary care to victims of radiation exposure, possession of preventive measures in case of radiation contamination.
The purpose of the discipline is to study physical phenomena, external signs of the phenomenon and the conditions of its occurrence, quantities and laws. As a result of the training, the student will be able to apply the acquired theoretical and practical skills in the basic laws and theories, principles of physics, physical research methods, as well as the ability to conduct physical experiments, work with measuring instruments, calculate and process the results obtained.
The purpose of the discipline is to apply the acquired theoretical and practical skills in the basic laws and theories, principles of physics, physical research methods, as well as the ability to conduct experiments, work with measuring instruments, process the results obtained.
The discipline is aimed at developing competencies in ensuring safe working conditions, identifying hazardous and harmful production factors, assessing professional risks, and developing measures to reduce them in accordance with legal requirements and professional standards.
The discipline "Occupational health and safety" consists of two sections: Occupational safety; Life safety. The labor protection section affects the following aspects: full responsibility of the employer for the state of labor protection at the enterprise, widespread use of the achievements of modern science and technology, compliance with labor protection and safety standards, providing employees with personal protective equipment, investigating and recording each accident and occupational disease, social protecting the interests of employees.Life safety section: balancing solutions for the preservation of the environment from man-made impacts and technical development of industry, ensuring environmental safety and restoring natural resources, ensuring the preservation of biological diversity and environmental objects, international cooperation in the field of environmental protection.