Ethereal nature of electricity and magnetism [Текст] / S. M. Makarov
Вихідні дані: Kyiv : TOV "7BC", 2024Опис: 169 сторінок : ілюстрації, схеми, таблиці ; 20 смМова: англійська; оригінал: українська; супровідний матеріал: англійська.Країна: Україна.Форматний номер: 2 формат (висота > 17-23 см)ISBN: 978-617-549-312-0.Вид літератури за цільовим призначенням: Науково-популярніВид/характер текстових документів: науково-популярні виданняУДК: 537.6/.8
Книга
| Тип одиниці зберігання | Поточна бібліотека | Шифр зберігання | Стан | Очікується на дату | Штрих-код | |
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Книга
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Книгосховище відділу книгозберігання (KSHVKZ) Фонд відділу книгозберігання | 01355885 (Огляд полиці(Відкривається нижче)) | Доступно | 01355885 |
Бібліографія українською
01355885 Дар автора
Бібліографія: сторінки 166-169 (50 назв)
CONTENTS
Introduction.....5
I. Short history of fight for ether.....7
II. The overview of modern references on ether problem.....14
III. Ethereal nature of magnetic field.....32
1. Magnetic lines of force.....32
2. The field of interaction of two horizontally installed magnets.....37
3. The field of vertically installed strip magnet.....42
4. Ether and magnetic lines of force.....53
5. The direction of the movement of ether in permanent magnet.....56
6. Measurement and analysis of parameters of the field of strip permanent magnet.....59
7. Circulation of ether in strip permanent magnet.....65
8. Serial connection of magnets.....66
9. Mechanism of interaction of iron sawdust with the field of permanent magnet.....68
10. Pulling of iron to magnet.....74
11. Parallel unidirectional coupling of magnets.....84
12. Ratio between "lateral" and "axial" parts of the field of permanent magnet.....88
13. Argumentation of ethereal essence of magnetic field.....92
14. Metrics of magnetic field.....94
15. Practical calculation of magnetic field.....96
16. Conclusions.....98
IV. Single questions of electricity and magnetism.....99
1. Not closed currents.....99
2. Realization of electrostatics.....105
3. Lines of force of electric field.....106
4. Ferromagnetism and permanent magnets.....110
5. Superconductivity and permanent magnets.....112
6. The existing theories of superconductivity.....113
7. Etherodynamic interpretation of superconductivity.....115
8. P. Grano and G. Nikolayev's experiments.....118
9. Longitudinal component of magnetic field of the conductor with current in it.....125
10. "Near" magnetic field of the conductor with big current.....127
11. Attraction of conductors with equally directed currents.....136
12. Pushing away of conductors with opposite directed currents.....144
13. Television antenna.....154
14. Radio waves.....155
15. Energy from ether.....159
16. Analysis of generalization of Maxwell.....160
Resume.....164
Literature.....166
Results of number of the experiments made for the purpose of detailing of separate aspects of realization of the electromagnetic phenomena as properties of gas-similar ether at the microlevel are published in this work. On the basis of research of magnetic field of permanent magnets ethereal nature of magnetic field is shown. On the basis of research of process of charging-discharging of the sequence of capacitors not closed electric currents are shown. Etherodynamic interpretation of realization of electrostatics, ferromagnetism and superconductivity is given. New explanations of some electromagnetic phenomena are given. The concept of new, fourth electric force is entered. At research of magnetic field of the conductor with direct current in it from 10A and above deformation of its magnetic flux in comparison with Ampere's circuital law is discovered. Number of the experiments characterizing electric and magnetic lines of force as vortexes of gas-similar ether is presented. The denial of generalization of J.K. Maxwell of the law of electromagnetic induction of M. Faraday on the nonconducting environment (in particular, vacuum) and based on this generalization of the interpretation of radio wave dominating nowadays as electromagnetic wave is given. It is claimed that process of radio communication is based on use of properties of electric field.