Main / of Physics and Technology / Электроники и астрофизики / Сагидолда Ерулан
Сагидолда Ерулан
Position Зав.кафедрой, Доцент
First higher education
| Educational institution | Квалификация | Expiration date |
|---|---|---|
| КазНУ им. аль-Фараби | Высшее | 2009 |
Academic degree
Academic degree
Academic rank
| Name of academic title | Date of assignment |
|---|---|
| Ассоциированный профессор (доцент) | 14/11/2023 |
| File name | Headline | Description |
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Basics of Electronics |
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Basics of Electronics |
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Fundamentals of Radio Physics and Electronics |
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Fundamentals of Radio Physics and Electronics |
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Fundamentals of Radio Physics and Electronics |
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Fundamentals of Radio Physics and Electronics |
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Fundamentals of Radio Physics and Electronics |
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Fundamentals of Radio Physics and Electronics |
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Fundamentals of Radio Physics and Electronics |
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Electronics and Circuitry of Analogue Devices 1 |
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Electronics and Circuitry of Analogue Devices 1 |
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Electronics and Circuitry of Analogue Devices 1 |
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Electronics and Circuitry of Analogue Devices 1 |
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Electronics and Circuitry of Analogue Devices 1 |
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Electronics and Circuitry of Analogue Devices 1 |
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Electronics and Circuitry of Analogue Devices 1 |
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Fundamentals of Radio Engineering, Electronics and Telecommunications 2 |
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Fundamentals of Radio Engineering, Electronics and Telecommunications 2 |
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Fundamentals of Radio Engineering, Electronics and Telecommunications 2 |
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Fundamentals of Radio Engineering, Electronics and Telecommunications 2 |
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Fundamentals of Radio Engineering, Electronics and Telecommunications 2 |
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Fundamentals of Radio Engineering, Electronics and Telecommunications 2 |
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Fundamentals of Radio Engineering, Electronics and Telecommunications 2 |
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Electronics and Circuitry of Analogue Devices 2 |
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Electronics and Circuitry of Analogue Devices 2 |
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Electronics and Circuitry of Analogue Devices 2 |
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Electronics and Circuitry of Analogue Devices 2 |
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Electronics and Circuitry of Analogue Devices 2 |
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Electronics and Circuitry of Analogue Devices 2 |
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Electronics and Circuitry of Analogue Devices 2 |
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Electronics and Circuitry of Analogue Devices 2 |
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Nanoelectronics |
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Theory of Electrical Communication |
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Digital Devices and Microprocessors |
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Digital Devices and Microprocessors |
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Digital Devices and Microprocessors |
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Digital Devices and Microprocessors |
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Technology of Wireless Communication |
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Technology of Wireless Communication |
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Technology of Wireless Communication |
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Antenna-Feeder Devices and Electromagnetic Waves Transmission |
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Microstrip Antennas and Guiding Systems |
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Multi-Channel Telecommunication Systems |
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Multi-Channel Telecommunication Systems |
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Multi-Channel Telecommunication Systems |
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Multi-Channel Telecommunication Systems |
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Analog Electronic Circuits |
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Analog Electronic Circuits |
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Analog Electronic Circuits |
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Analog Electronic Circuits |
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Analog Electronic Circuits |
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Analog Electronic Circuits |
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Analog Electronic Circuits |
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Analog Electronic Circuits |
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Analog Electronic Circuits |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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IP-telephony and Video conference |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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General Course of Physics. Fundamentals of Radio Physics and Electronics |
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Nanoelectronics in Astrophysics |
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Nanoelectronics in Astrophysics |
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Nanoelectronics in Astrophysics |
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Nanoelectronics in Astrophysics |
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Nanoelectronics in Astrophysics |
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Nanoelectronics in Astrophysics |
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Nanoelectronics in Astrophysics |
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Nanoelectronics in Astrophysics |
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Nanoelectronics in Astrophysics |
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Circuit Design of Analogue Electronic Devices |
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Circuit Design of Analogue Electronic Devices |
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Bases of Radio Engineering and Telecommunication |
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Bases of Radio Engineering and Telecommunication |
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Bases of Radio Engineering and Telecommunication |
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Bases of Radio Engineering and Telecommunication |
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Bases of Radio Engineering and Telecommunication |
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Bases of Radio Engineering and Telecommunication |
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Bases of Radio Engineering and Telecommunication |
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Prospective amorphous materials for industry |
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Technological principles fabrication of semiconductor structures |
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Design of photoconverter devices |
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Technique of the nanostructured sensors |
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Optics |
Оптика лаб казакша
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Optics |
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Physics of the condensed condition |
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Physical Material Science |
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Scientific Writing |
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Condensed Matter Physics |
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Methods of Solving Tasks on the Optics |
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Electronic nanosensors |
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Author Documents
15
Citations
73 по 58
documents
h-index
5
Effect of annealing temperature on the electrical properties of IZO TFTs
Cai, Z., Tuokedaerhan, K., Yang, L., Huang, Z., Guo, C., Azamat, R., Sagidolda, Y.
Rsc Advances
15, с. 16445-16454
0
ЦитированийInterfacial modulation and optimization of the electrical properties of ZrGdOx composite films prepared using a UVO-assisted sol–gel method
Guo, C., Tuokedaerhan, K., Shen, X., Sagidolda, Y., Azamat, Z.
Rsc Advances
15, с. 2231-2241
2
ЦитированийPreparation and performance optimization of HfAlO hybrid gate dielectric thin films driven by solution
Zhang, R., Tuokedaerhan, K., Wu, Z., Du, H., Ibraimov, M., Sagidolda, Y.
Journal of Sol Gel Science and Technology
111, с. 515-529
1
ЦитированийExploring the Effect of Dy Doping on the Performance of Solution-Processed Indium Oxide Thin Films and Thin-Film Transistors
Du, H., Tuokedaerhan, K., Zhang, R., Ibraimov, M., Sagidolda, Y.
IEEE Transactions on Electron Devices
71, с. 7557-7562
4
ЦитированийInfluence of Nanocrystalline Silicon Conductivity on the Structural and Optical Properties of Porous Silicon
Dikhanbayev, K., Zharekeshev, I., Zhambyl, A., Sagidolda, Y., Baspakova, Z., Khaniyev, B., Meirambekuly, N., Kozhagulov, Y., Zhumatova, S.
Es Materials and Manufacturing
26, с.
4
ЦитированийThe Improved Non-Polar Gas Sensing Performance of Surface-Modified Porous Silicon-Based Gas Sensors
Khaniyev, B., Ibraimov, M., Sagidolda, Y., Tezekbay, Y., Duisebayev, T., Tileu, A., Khaniyeva, A.
Coatings
13, с.
5
ЦитированийSynthesis and optical properties of Ag/Au-TiO2 plasmonic composite thin films
Yergaliyeva, S., Nemkayeva, R., Guseinov, N., Prikhodko, O., Arbuz, A., Orynbay, B., Sagidolda, Y., Aitzhanov, M., Ismailova, G., Mukhametkarimov, Y.
Optical Materials Express
13, с. 2726-2736
5
ЦитированийPeculiarities of the Structure of Au-TiO2 and Au-WO3 Plasmonic Nanocomposites
Sagidolda, Y., Yergaliyeva, S., Tolepov, Z., Ismailova, G., Orynbay, B., Nemkayeva, R., Prikhodko, O., Peshaya, S., Maksimova, S., Guseinov, N., Mukhametkarimov, Y.
Materials
16, с.
4
ЦитированийChange of Optical Properties of Carbon-Doped Silicon Nanostructures under the Influence of a Pulsed Electron Beam
Darmenkulova, M.B., Aitzhanov, M.B., Zhumatova, S.A., Ibraimov, M.K., Sagidolda, Y.
Journal of Nanotechnology
2022, с.
4
ЦитированийGrowth and Liquid-Phase Exfoliation of GaSe1−xSx Crystals
Aitzhanov, M., Guseinov, N., Nemkayeva, R., Sagidolda, Y., Tolepov, Z., Prikhodko, O., Mukhametkarimov, Y.
Materials
15, с.
7
ЦитированийHigh sensitive NH3 sensor based on electrochemically etched porous silicon
Khaniyev, B.A., Sagidolda, Y., Dikhanbayev, K.K., Tileu, A.O., Ibraimov, M.K.
Cogent Engineering
7, с.
13
ЦитированийMorphological, Structural, and Optical Properties of Silicon Nanostructures Formed in a Solution Containing Hydrogen Hexafluorosilicate H2(SiF6)
Zhumatova, S.A., Manakov, S.M., Sagidolda, Y., Darmenkulova, M.B., Azamat, R.M., Alpysbaeva, B.Y., Dikhanbaev, K.K.
Optics and Spectroscopy
128, с. 1487-1491
2
ЦитированийDetection of acetonitrile and chloroform using structures on the base of porous silicon
Manakov, S.M., Ibraimov, M.K., Sagidolda, Y., Zhumatova, S.A., Darmenkulova, M.B.
Eurasian Chemico Technological Journal
21, с. 89-93
5
ЦитированийSelective gas sensor using porous silicon
Ibraimov, M.K., Sagidolda, Y., Rumyantsev, S.L., Zhanabaev, Z.Z., Shur, M.S.
Sensor Letters
14, с. 588-591
15
ЦитированийLight trapping enhancement in gallium arsenide solar cells
Manakov, S.M., Dikhanbaev, K.K., Aueylkhankyzy, M., Taurbayev, T.I., Mansurov, Z.A., Lesbayev, A.B., Sagidolda, Y.
Journal of Nanoelectronics and Optoelectronics
9, с. 511-514