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Author Index, 2022, Volume 9
D. Abdurahimov, see S. Zaynabidinov Comp. nanotechnol., 2022, Volume 9:2, 73–79
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N. E. Aleksandrov, D. N. Ermakov, N. M. Aziz, O. Yu. Kazenkov Finding the optimal machine learning model for flood prediction on the Amur river Comp. nanotechnol., 2022, Volume 9:2, 11–20
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M. A. Askarov, see E. Z. Imamov Comp. nanotechnol., 2022, Volume 9:4, 70–77
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N. M. Aziz, see N. E. Aleksandrov Comp. nanotechnol., 2022, Volume 9:2, 11–20
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A. Boboev, see S. Zaynabidinov Comp. nanotechnol., 2022, Volume 9:2, 73–79
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A. V. Bobrovskikh, A. V. Gureev, V. P. Los, A. S. Markov Consideration of multipath in modeling the field of secondary electromagnetic radiation on informatization objects Comp. nanotechnol., 2022, Volume 9:4, 63–69
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A. V. Dushkin, see A. S. Porkhun Comp. nanotechnol., 2022, Volume 9:4, 55–62
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V. G. Dyskin, see Sh. B. Utamuradova Comp. nanotechnol., 2022, Volume 9:4, 11–16
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K. E. Ergashev, see S. A. Radzhapov Comp. nanotechnol., 2022, Volume 9:3, 45–52
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D. N. Ermakov, see N. E. Aleksandrov Comp. nanotechnol., 2022, Volume 9:2, 11–20
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D. N. Ermakov, see O. A. Naim Comp. nanotechnol., 2022, Volume 9:2, 56–66
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N. M. Ershov Development and research of distributed control algorithms for swarm intelligence systems Comp. nanotechnol., 2022, Volume 9:2, 21–34
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N. N. Gavrilova, see M. E. Voronin Comp. nanotechnol., 2022, Volume 9:3, 73–79
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A. A. Gerasimova, see K. V. Goloshapov Comp. nanotechnol., 2022, Volume 9:4, 42–47
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K. V. Goloshapov, O. A. Kobelev, A. E. Titlianov, A. A. Gerasimova Using a ceramic insert with a bandage in the air tuyere of a blast furnace Comp. nanotechnol., 2022, Volume 9:4, 42–47
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A. A. Gonchar, see O. B. Shalaginova Comp. nanotechnol., 2022, Volume 9:4, 22–29
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A. V. Gureev, see A. V. Bobrovskikh Comp. nanotechnol., 2022, Volume 9:4, 63–69
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N. M. Hadi Identification algorithm faces and criminal actions Comp. nanotechnol., 2022, Volume 9:3, 19–31
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Yu. S. Haiduk, see R. Kh. Rakhimov Comp. nanotechnol., 2022, Volume 9:3, 60–67
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E. Z. Imamov, R. A. Muminov, R. Kh. Rakhimov, Kh. N. Karimov, M. A. Askarov Modeling of the electrical properties of a solar cell with many nano-hetero junctions Comp. nanotechnol., 2022, Volume 9:4, 70–77
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V. Kakadzhanov, see S. S. Kudryavtseva Comp. nanotechnol., 2022, Volume 9:2, 80–91
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Kh. N. Karimov, see E. Z. Imamov Comp. nanotechnol., 2022, Volume 9:4, 70–77
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T. S. Katermina, K. M. Tagirov, T. M. Tagirov Elements of artificial intelligence in solving problems of text analysis Comp. nanotechnol., 2022, Volume 9:2, 35–44
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T. S. Katermina, A. F. Sibagatulin Application of artificial intelligence methods to the task of diagnosing respiratory diseases Comp. nanotechnol., 2022, Volume 9:2, 92–103
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T. S. Katermina, E. V. Lazorenko Artificial intelligence elements for the task of determining the position of the vehicle in the image Comp. nanotechnol., 2022, Volume 9:3, 9–18
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O. Yu. Kazenkov, see N. E. Aleksandrov Comp. nanotechnol., 2022, Volume 9:2, 11–20
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O. Yu. Kazenkov, see O. A. Naim Comp. nanotechnol., 2022, Volume 9:2, 56–66
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R. A. Khaliulin, see S. S. Kudryavtseva Comp. nanotechnol., 2022, Volume 9:2, 80–91
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A. S. Khismatullin, see G. N. Kovalchuk Comp. nanotechnol., 2022, Volume 9:4, 30–34
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O. A. Kobelev, see K. V. Goloshapov Comp. nanotechnol., 2022, Volume 9:4, 42–47
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È. M. Koltsova, see D. O. Krasnov Comp. nanotechnol., 2022, Volume 9:3, 68–72
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È. M. Koltsova, see M. E. Voronin Comp. nanotechnol., 2022, Volume 9:3, 73–79
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È. M. Koltsova, see D. O. Krasnov Comp. nanotechnol., 2022, Volume 9:4, 17–21
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G. N. Kovalchuk, A. S. Khismatullin Dc boost converter using a fuzzy control system, simulated in Simulink Comp. nanotechnol., 2022, Volume 9:4, 30–34
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D. O. Krasnov, A. V. Zhensa, È. M. Koltsova Magnetic properties of chiral copper nanotubes Comp. nanotechnol., 2022, Volume 9:3, 68–72
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D. O. Krasnov, È. M. Koltsova Study of magnetic field generation in chiral copper nanotubess Comp. nanotechnol., 2022, Volume 9:4, 17–21
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S. S. Kudryavtseva, R. A. Khaliulin, V. Kakadzhanov Technologies for increasing production efficiency in industry Comp. nanotechnol., 2022, Volume 9:2, 80–91
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A. E. Lamotkin, see E. A. Mityushov Comp. nanotechnol., 2022, Volume 9:4, 48–54
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E. V. Lazorenko, see T. S. Katermina Comp. nanotechnol., 2022, Volume 9:3, 9–18
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V. P. Los, see A. V. Bobrovskikh Comp. nanotechnol., 2022, Volume 9:4, 63–69
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A. S. Markov, see A. V. Bobrovskikh Comp. nanotechnol., 2022, Volume 9:4, 63–69
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V. M. Melnikov, see O. A. Naim Comp. nanotechnol., 2022, Volume 9:2, 56–66
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R. V. Meshcheryakov, see A. S. Porkhun Comp. nanotechnol., 2022, Volume 9:4, 55–62
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N. E. Misyura, see E. A. Mityushov Comp. nanotechnol., 2022, Volume 9:4, 48–54
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E. A. Mityushov, N. E. Misyura, A. E. Lamotkin, E. Yu. Raskatov Modeling the kinematics and dynamics of universal joint Comp. nanotechnol., 2022, Volume 9:4, 48–54
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D. N. Mukhtorov, see R. Kh. Rakhimov Comp. nanotechnol., 2022, Volume 9:2, 67–72
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D. N. Mukhtorov, see R. Kh. Rakhimov Comp. nanotechnol., 2022, Volume 9:3, 60–67
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F. G. Mullagalieva, see S. A. Radzhapov Comp. nanotechnol., 2022, Volume 9:3, 45–52
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R. A. Muminov, see Sh. B. Utamuradova Comp. nanotechnol., 2022, Volume 9:4, 11–16
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R. A. Muminov, see E. Z. Imamov Comp. nanotechnol., 2022, Volume 9:4, 70–77
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O. A. Naim, D. N. Ermakov, V. M. Melnikov, O. Yu. Kazenkov Prospects for the application of additive technologies in Russia from an industry perspective (on the example of the aviation industry) Comp. nanotechnol., 2022, Volume 9:2, 56–66
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K. M. Nurboev, see S. A. Radzhapov Comp. nanotechnol., 2022, Volume 9:3, 45–52
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Yu. I. Ozhigov, see N. B. Viktorova Comp. nanotechnol., 2022, Volume 9:3, 32–36
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V. V. Pan'kov, see R. Kh. Rakhimov Comp. nanotechnol., 2022, Volume 9:3, 60–67
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S. V. Ponomarenko, see Ya. E. Prokushev Comp. nanotechnol., 2022, Volume 9:2, 45–55
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A. S. Porkhun, A. V. Dushkin, R. V. Meshcheryakov, Yu. V. Savchenko, V. A. Shcherbakov Software and hardware complex for investigation of technical channels of information leakage based on high-frequency irradiation method Comp. nanotechnol., 2022, Volume 9:4, 55–62
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Ya. E. Prokushev, S. V. Ponomarenko, N. V. Shishov The modeling of processes of design of information protection systems in critical information infrastructures Comp. nanotechnol., 2022, Volume 9:2, 45–55
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B. S. Radzhapov, see S. A. Radzhapov Comp. nanotechnol., 2022, Volume 9:3, 45–52
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S. A. Radzhapov, K. M. Nurboev, F. G. Mullagalieva, M. A. Zufarov, B. S. Radzhapov, K. E. Ergashev Development of silicon detectors and electronic units for radiometer alpha-, beta and gamma-radiation Comp. nanotechnol., 2022, Volume 9:3, 45–52
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M. R. Rakhimov, see R. Kh. Rakhimov Comp. nanotechnol., 2022, Volume 9:2, 67–72
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M. R. Rakhimov, see R. Kh. Rakhimov Comp. nanotechnol., 2022, Volume 9:3, 60–67
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R. Kh. Rakhimov, V. P. Yermakov, M. R. Rakhimov, D. N. Mukhtorov Capabilities of polyethylene-ceramic composite in comparison with polyethylene film in real operation conditions Comp. nanotechnol., 2022, Volume 9:2, 67–72
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R. Kh. Rakhimov, see R. M. Saidov Comp. nanotechnol., 2022, Volume 9:3, 53–59
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R. Kh. Rakhimov, V. V. Pan'kov, V. P. Yermakov, Yu. S. Haiduk, M. R. Rakhimov, D. N. Mukhtorov Development of a method for obtaining ceramic nanocomposites using sol-gel technology elements to create inclusions of amorphous phases with a composition similar to the target crystalline ceramic matrix Comp. nanotechnol., 2022, Volume 9:3, 60–67
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R. Kh. Rakhimov, see E. Z. Imamov Comp. nanotechnol., 2022, Volume 9:4, 70–77
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F. M. Rakhimova, see R. M. Saidov Comp. nanotechnol., 2022, Volume 9:3, 53–59
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E. Yu. Raskatov, see E. A. Mityushov Comp. nanotechnol., 2022, Volume 9:4, 48–54
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R. M. Saidov, R. Kh. Rakhimov, F. M. Rakhimova Results of the application of functional ceramics in composition of the Fe$_{3}$O$_{4}$-CaO$_{2}$-TiO$_{2}$ slag system for welding electrode coatings Comp. nanotechnol., 2022, Volume 9:3, 53–59
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Yu. V. Savchenko, see A. S. Porkhun Comp. nanotechnol., 2022, Volume 9:4, 55–62
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O. B. Shalaginova, R. E. Stakhno, A. A. Gonchar Development of an automated information system for calculating the movement of a high-speed small-sized body Comp. nanotechnol., 2022, Volume 9:4, 22–29
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V. A. Shcherbakov, see A. S. Porkhun Comp. nanotechnol., 2022, Volume 9:4, 55–62
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N. V. Shishov, see Ya. E. Prokushev Comp. nanotechnol., 2022, Volume 9:2, 45–55
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A. F. Sibagatulin, see T. S. Katermina Comp. nanotechnol., 2022, Volume 9:2, 92–103
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Ya. V. Slavolyubova Application of computer mathematics systems for solving problems of contact geometry Comp. nanotechnol., 2022, Volume 9:3, 37–44
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R. E. Stakhno, see O. B. Shalaginova Comp. nanotechnol., 2022, Volume 9:4, 22–29
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K. M. Tagirov, see T. S. Katermina Comp. nanotechnol., 2022, Volume 9:2, 35–44
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T. M. Tagirov, see T. S. Katermina Comp. nanotechnol., 2022, Volume 9:2, 35–44
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A. E. Titlianov, see K. V. Goloshapov Comp. nanotechnol., 2022, Volume 9:4, 42–47
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A. A. Trishin Math methods and models of products knowledge management Comp. nanotechnol., 2022, Volume 9:4, 35–41
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O. F. Tukfatullin, see Sh. B. Utamuradova Comp. nanotechnol., 2022, Volume 9:4, 11–16
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Sh. B. Utamuradova, R. A. Muminov, V. G. Dyskin, O. F. Tukfatullin A program for calculating the projective range and straggling of ions in a solidusing the approximation of V.V. Yudin Comp. nanotechnol., 2022, Volume 9:4, 11–16
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N. B. Viktorova, Yu. I. Ozhigov Modeling of optical conductivity of networks with full binary encoding Comp. nanotechnol., 2022, Volume 9:3, 32–36
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M. E. Voronin, N. N. Gavrilova, È. M. Koltsova, A. V. Zhensa Simulation of aggregation process in cerium and zirconium dioxide nanoparticles Comp. nanotechnol., 2022, Volume 9:3, 73–79
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V. P. Yermakov, see R. Kh. Rakhimov Comp. nanotechnol., 2022, Volume 9:2, 67–72
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V. P. Yermakov, see R. Kh. Rakhimov Comp. nanotechnol., 2022, Volume 9:3, 60–67
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S. Zaynabidinov, A. Boboev, D. Abdurahimov Features of the electrical properties of heterojunctions n-GaAs-p-(GaAs)$_{1-x-y}$(Ge$_{2}$)$_{x}$(ZnSe)$_{y}$ Comp. nanotechnol., 2022, Volume 9:2, 73–79
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A. V. Zhensa, see D. O. Krasnov Comp. nanotechnol., 2022, Volume 9:3, 68–72
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A. V. Zhensa, see M. E. Voronin Comp. nanotechnol., 2022, Volume 9:3, 73–79
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M. A. Zufarov, see S. A. Radzhapov Comp. nanotechnol., 2022, Volume 9:3, 45–52
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