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Academic literature on the topic 'Електрофізичний вплив'
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Journal articles on the topic "Електрофізичний вплив"
Gorban, V. A., A. O. Huslistyj, M. V. Mandrygelia, and V. O. Pohribnyak. "Вплив лісової рослинності на діелектричну проникність та електрофізичні показники чорноземів." Fundamental and Applied Soil Science 18, no. 1-2 (January 9, 2018): 38–45. http://dx.doi.org/10.15421/041704.
Full textКузнецов, Г. В. "Вплив хімічного складу на електрофізичні властивості ненадпровідних купратних фаз." Вісник Київського університету імені Тараса Шевченка. Серія "Фізико-математичні науки", вип. 1 (1998): 256–61.
Find full textVernydub, R. M., O. I. Kyrylenko, O. V. Konoreva, P. G. Litovchenko, D. P. Stratilat, V. P. Tartachnyk, and M. M. Filonenko. "Influence of radiation on the electrophysical parameters of GaAsP LEDs." Nuclear Physics and Atomic Energy 22, no. 1 (March 25, 2021): 56–61. http://dx.doi.org/10.15407/jnpae2021.01.056.
Full textBurlakov, V. O., O. E. Pogorelov, and O. V. Filatov. "Impact of Impurity Atoms on the Electrophysical Properties of Magnetic Tunnel Junction." METALLOFIZIKA I NOVEISHIE TEKHNOLOGII 42, no. 7 (September 18, 2020): 919–28. http://dx.doi.org/10.15407/mfint.42.07.0919.
Full textGorban, Vadym. "INFLUENCE OF ARTIFICIAL FOREST PLANTATIONS ON ELECTROPHYSICAL INDEX OF ORDINARY CHORNOZEM." Visnyk of Lviv University. Biological series, no. 81 (January 28, 2020): 76–85. http://dx.doi.org/10.30970/vlubs.2019.81.09.
Full textVasyliuk, Y., Y. Zinchenko, S. Gnatiuk, I. Sofiienko, and D. Petrova. "Use of Modern Shielding Properties Materials for Technical Protection of Infor-Mation." Èlektronnoe modelirovanie 43, no. 1 (February 1, 2021): 81–96. http://dx.doi.org/10.15407/emodel.43.01.081.
Full textТітов, Ю. О., М. С. Слободяник, Р. М. Кузьмін, and В. В. Чумак. "Електрофізичні властивості A3 IILaNb3O12 (AII = Sr, Ba) з шаруватою перовськітоподібною структурою." Reports of the National Academy of Sciences of Ukraine, no. 4 (August 26, 2021): 53–60. http://dx.doi.org/10.15407/dopovidi2021.04.053.
Full textGaidar, G. P., and P. I. Baranskii. "Influence of Ge isovalent impurity and thermoannealings on the electrophysical properties of silicon crystals." Reports of the National Academy of Sciences of Ukraine, no. 7 (July 15, 2016): 62–69. http://dx.doi.org/10.15407/dopovidi2016.07.062.
Full textMakhno, S. M. "Influence of noncontact dispergation of carbon nanotubes on the electrophysical properties of composites containing polychlorotrifluoroethylene." Himia, Fizika ta Tehnologia Poverhni 6, no. 3 (September 30, 2015): 372–79. http://dx.doi.org/10.15407/hftp06.03.372.
Full textPlugin, O. A., V. V. Kasyanov, A. A. Plugin, D. A. Plugin, and O. S. Borziak. "INFLUENCE OF STRUCTURE AND COMPONENTS TO ELECTROPHYSICAL PROPERTIES OF COMPOSITIONS BASED ON PORTLANDCEMENT." Scientific Bulletin of Civil Engineering 91, no. 1 (2018): 156–63. http://dx.doi.org/10.29295/2311-7257-2018-91-1-156-163.
Full textDissertations / Theses on the topic "Електрофізичний вплив"
Вінніков, Денис Вікторович. "Електрофізичний вплив потужного підводного іскрового розряду на процеси обробки речовин." Thesis, Національний науковий центр "Харківський фізико-технічний інститут", 2017. http://repository.kpi.kharkov.ua/handle/KhPI-Press/33188.
Full textThesis for the scientific degree of the candidate of engineering sciences by specialty 05.09.13 – Technology of Strong Electric and Magnetic Fields. – National Science Center "Kharkiv Institute of Physics and Technology", Ministry of education and science of Ukraine National Technical University "Kharkiv Politechnic University" Kharkiv, 2017. This thesis is devoted to the improvement of the electric discharge equipment that is used for the substance treatment by heavy-current underwater spark discharges. The properties of materials and liquids were analyzed as a function of the electric parameters of discharge circuit, in particular, the charging voltage, the capacitance and the spark gap size. The structures of electrohydraulic reactors that are used for the treatment of general mechanical rubber goods and materials that simulate in the first approximation the spent solid nuclear fuel were developed and modernized to improve the methods of fuel recycling. The liquid degassing intensification method was suggested to initiate underwater spark discharges in the electrohydraulic reactor under the evacuation. The electrode system was created to provide the ordered motion of a pulsating steam and gas cavity in the water space at a reduced pressure in the reactor. A structure of the electric discharge generator of elastic vibrations that allows us to have an influence on the metal melts in vacuum-arc furnaces has been developed. It has been proved that mechanical acoustic vibrations generated by spark discharges in the liquid have a positive effect on the distribution of admixtures in treated metals and a decrease in the size of crystal grains. Technological recommendations on the improvement of the processes of electrophysical impact on the materials and liquid media were given. A mathematical model used for the investigation of the progress of current conducting channel that short-closes the spark gap at an early stage of its development, in particular a process of the expansion of current conducting channel and steam-gas cavity was improved. An opportunity for a fast (5–20 s) change in the redox potential of the liquid to the side of negative values with a moderate increase in the pH value was revealed for the first time. It has been shown that a change in the redox potential depends on the input of total energy into the treated volume. We established that a change in the redox potential is related to the processes that occur inside the steam-gas cavity, in particular chemical transformations that occur in its volume and the formation of electric erosion products of the electrodes that result in the chemical changes in the composition of treated medium. The size and dimensions of the particles that are formed during the electric erosion of electrodes have been defined. The chemical diagram of their influence on water properties has been suggested. A degree of the change in the redox potential is related to a number of formed polydisperse particles. Nanosize particles (37 % of the total volume of particles) with an increased physical and chemical activity were revealed.
Вінніков, Денис Вікторович. "Електрофізичний вплив потужного підводного іскрового розряду на процеси обробки речовин." Thesis, НТУ "ХПІ", 2017. http://repository.kpi.kharkov.ua/handle/KhPI-Press/33183.
Full textThesis for the scientific degree of the candidate of engineering sciences by specialty 05.09.13 – Technology of Strong Electric and Magnetic Fields. – National Science Center "Kharkiv Institute of Physics and Technology", Ministry of education and science of Ukraine National Technical University "Kharkiv Politechnic University" Kharkiv, 2017. This thesis is devoted to the improvement of the electric discharge equipment that is used for the substance treatment by heavy-current underwater spark discharges. The properties of materials and liquids were analyzed as a function of the electric parameters of discharge circuit, in particular, the charging voltage, the capacitance and the spark gap size. The structures of electrohydraulic reactors that are used for the treatment of general mechanical rubber goods and materials that simulate in the first approximation the spent solid nuclear fuel were developed and modernized to improve the methods of fuel recycling. The liquid degassing intensification method was suggested to initiate underwater spark discharges in the electrohydraulic reactor under the evacuation. The electrode system was created to provide the ordered motion of a pulsating steam and gas cavity in the water space at a reduced pressure in the reactor. A structure of the electric discharge generator of elastic vibrations that allows us to have an influence on the metal melts in vacuum-arc furnaces has been developed. It has been proved that mechanical acoustic vibrations generated by spark discharges in the liquid have a positive effect on the distribution of admixtures in treated metals and a decrease in the size of crystal grains. Technological recommendations on the improvement of the processes of electrophysical impact on the materials and liquid media were given. A mathematical model used for the investigation of the progress of current conducting channel that short-closes the spark gap at an early stage of its development, in particular a process of the expansion of current conducting channel and steam-gas cavity was improved. An opportunity for a fast (5–20 s) change in the redox potential of the liquid to the side of negative values with a moderate increase in the pH value was revealed for the first time. It has been shown that a change in the redox potential depends on the input of total energy into the treated volume. We established that a change in the redox potential is related to the processes that occur inside the steam-gas cavity, in particular chemical transformations that occur in its volume and the formation of electric erosion products of the electrodes that result in the chemical changes in the composition of treated medium. The size and dimensions of the particles that are formed during the electric erosion of electrodes have been defined. The chemical diagram of their influence on water properties has been suggested. A degree of the change in the redox potential is related to a number of formed polydisperse particles. Nanosize particles (37 % of the total volume of particles) with an increased physical and chemical activity were revealed.
Гербей, Я. С. "Вплив фазових перетворень на електрофізичні властивості інтерметалідних тонких плівок." Thesis, Сумський державний університет, 2013. http://essuir.sumdu.edu.ua/handle/123456789/41292.
Full textТкач, Олена Петрівна, Елена Петровна Ткач, and Olena Petrivna Tkach. "Процеси фазоутворення в надрешітці Pd/Fe та їх вплив на електрофізичні властивості." Thesis, Сумський державний університет, 2013. http://essuir.sumdu.edu.ua/handle/123456789/43921.
Full textВовченко, Людмила Леонтіївна. "Вплив структурно-морфологічного стану нановуглецевого компонента на теплові та електрофізичні властивості вуглецевих композитів." Diss. of Doctor of Physical and Mathematical Sciences, М-во освіти і науки України, Київ. нац. ун-т ім. Тараса Шевченка, 2014.
Find full textПриходько, А. М., В. О. Скубко, Андрій Олександрович Степаненко, Андрей Александрович Степаненко, and Andrii Oleksandrovych Stepanenko. "Вплив матеріалу підкладки на властивості фулеритових плівок." Thesis, Сумський державний університет, 2017. http://essuir.sumdu.edu.ua/handle/123456789/64376.
Full textСтепаненко, Андрій Олександрович, Андрей Александрович Степаненко, Andrii Oleksandrovych Stepanenko, Сергій Ігорович Воробйов, Сергей Игоревич Воробьев, Serhii Ihorovych Vorobiov, Юрій Михайлович Шабельник, Юрий Михайлович Шабельник, and Yurii Mykhailovych Shabelnyk. "Вплив ізотермічного відпалювання на фазовий склад і електрофізичні властивості тонко плівкових систем на основі Аl та Ті." Thesis, Видавництво СумДУ, 2007. http://essuir.sumdu.edu.ua/handle/123456789/15223.
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