
Методами масс-спектрометрии, растровой электронной микроскопии и рентгено-флуоресцентного анализа исследованы продукты, возникающие в результате низкоэнергетического электроразряда между угольными электродами в водном растворе глицерина. Установлено, что формирующийся в процессе эксперимента осадок обладает отличающимся от исходных составляющих химическим составом и микроструктурой. Обсуждается вопрос о механизме и катализаторе протекания низкоэнергетической ядерной трансформации.The products obtained through a low-energy electric discharge between carbon electrodes in glycerin's water solution are investigated by means of mass spectrometry, raster electronic microscopy, and X-ray fluorescence analysis. The residue formed during experiment is found to possess chemical composition differing from the initial components in its chemistry and microstructure. The mechanism and the catalyst of a low-energy nuclear transformation course are discussed.
ЖИДКОСТЬ, ЭЛЕКТРОРАЗРЯД, НИЗКОТЕМПЕРАТУРНАЯ ПЛАЗМА, МАГНИТНОЕ ПОЛЕ, ТРАНСФОРМАЦИЯ ХИМИЧЕСКИХ ЭЛЕМЕНТОВ
ЖИДКОСТЬ, ЭЛЕКТРОРАЗРЯД, НИЗКОТЕМПЕРАТУРНАЯ ПЛАЗМА, МАГНИТНОЕ ПОЛЕ, ТРАНСФОРМАЦИЯ ХИМИЧЕСКИХ ЭЛЕМЕНТОВ
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