Silicon

Silicon
Автор книги: id книги: 2326375     Оценка: 0.0     Голосов: 0     Отзывы, комментарии: 0 469,73 руб.     (4,58$) Читать книгу Купить и скачать книгу Купить бумажную книгу Электронная книга Жанр: Сделай Сам Правообладатель и/или издательство: Bookwire Дата добавления в каталог КнигаЛит: ISBN: 9783754915394 Скачать фрагмент в формате   fb2   fb2.zip Возрастное ограничение: 0+ Оглавление Отрывок из книги

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Описание книги

Science and research are currently in the process of discovering more and more two-dimensional molecular structures of different elements. Although the detectable properties of the layered structures are hardly compatible with the idea of a core-shell atom, the outdated idea of electron orbitals is still held on to. A conception that has long been untenable due to numerous inconsistencies. The paper makes it clear that two-dimensional, molecular atomic layers must also have their basis in two-dimensionally constructed atoms. The checkerboard-like, planar atomic structure by protons and neutrons is the natural atomic structure that determines both the two- and the three-dimensional, molecular structures. The paper refers in parts to earlier publication by the author on the checkerboard-like-planar atomic structure. (cf. Albert 2017, 2019a, 2019b, 2021).

Оглавление

Helmut Albert. Silicon

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Preliminary remarks

This e-book is the digitised edition of the paper with the same title already published as a print book. Changes have been made insofar as they were necessary for the e-book format. The translation from German was done with DeepL Pro.

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Helmut Albert, Freiburg, October 2021

In order to substantiate this claim concretely, the following chapters explain the basics that contribute to a better understanding and calculability of the elements, using the silicon atom as an example. The proton-neutron configuration of the silicon atom is shown in detail. It is made clear why each proton and neutron site is important for the valence of an atom, which compounds silicon can form and what effect the mass number has on a silicon isotope.

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