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by the charge is used here and electrical energy is derived from this, because these forces and laws will always act and will not change their strength. Moreover, the system is fully controlled, the only thing is, if you increase the number of neutrons and wait for the right stage, you can artificially produce one of the most powerful explosions.

      With this technology, it is possible to supply a maximum current of up to 12.2 MA for neutrons for high-current devices, and if the energy of the tsar bomb or AN-602 leaves 2.4* 1017 J, for resonant nuclear reactions at such a current, 2.554* 1018 J of energy is released, or 10.64 times more, and for one neutron unit at the same time at the same current, 3,04446 * 1021 J is released, that is, it can generate such a volume of energy that in its power will exceed the strongest instantaneous uranium energy release from the tsar bomb, with this calculation by 126 852.5 times.

      Used literature

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      USAGE PARAMETERS AND A PARTICULAR DESCRIPTION OF THE PROCESS OF CREATING PHOTOVOLTAIC DEVICES BASED ON CADMIUM TELLURIDE

      UDC 621.383

      Mavlonov Paxlavon Ibrohimovich

      Senior Lecturer of the Department of "Natural Sciences" of the Faculty of Computer Engineering of the Ferghana branch of the Tashkent University of Information Technologies

      Ferghana Branch of Tashkent University of Information Technologies, Ferghana, Uzbekistan

      Annotation. Activity in the field of the use of semiconductor materials in the field of energy technologies today opens up a large number of opportunities, which indicates the need for further more active development and use. In addition, it is also worth paying attention to the use of a large number of different materials, among which individual representatives may stand out, dramatically increasing the overall efficiency of the entire semiconductor structure and are currently in greater priority for such a measurement in the face of binary, ternary, etc. chemical compounds.

      Keywords: cadmium telluride, semiconductor elements, photovoltaic devices, efficiency, production technology, industrialization.

      Аннотация. Активность в области использования полупроводниковых материалов в области энергетических технологий на сегодняшний день открывает большое количество возможностей, что говорит о необходимости дальнейшего более активного развития и использования. Кроме того, стоит также обращать внимание и на применение большого количества различных материалов среди коих могут выделяться отдельные представители, резко повышающие общую эффективность всей полупроводниковой конструкции и находящиеся на данный момент в большем приоритете по подобному измерению в лице бинарных, тернарных и т. д. химический соединений.

      Ключевые слова: теллурид кадмия, полупроводниковые элементы, фотоэлектрические устройства, эффективность, технология производства, индустриализация.

      Photovoltaic

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