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An Explanation of the Powers of Franz Mesmer
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作者 Bradley Y.Bartholomew 《Journal of Philosophy Study》 2022年第2期93-108,共16页
In his lifetime Franz Anton Mesmer was branded a charlatan by the scientific community on account of his claim of being able to cure many sickness and medical problems though animal magnetism.Notwithstanding this,alth... In his lifetime Franz Anton Mesmer was branded a charlatan by the scientific community on account of his claim of being able to cure many sickness and medical problems though animal magnetism.Notwithstanding this,although his specific claim to possess the power of animal magnetism has been discounted,his methods have had a vast influence in every branch of mental healing and spiritual healing and healing thru hypnotism as well as New Age techniques that involve not only―the power of suggestion‖but also the physical―laying on of hands.‖This article reviews Mesmer‘s techniques,and gives a broad overview of all the other branches of mental and spiritual healing where his methods are still used in one way or another,and presents recent scientific research that completely vindicates Mesmer‘s original claim to possess the power of being able to manipulate the―magnetic fluid‖in the living organism.It is now known from radiogenetics that the ferritin in our bodies can be manipulated not only by electromagnetic radiation(radio waves)but also by magnetic fields. 展开更多
关键词 Mesmer brain waves radiogenetics SPIRITUALISM hypnotism ELECTROENCEPHALOGRAPHY animal magnetism radiowaves
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The influence of ionospheric thin shell height on TEC retrieval from GPS observation 被引量:2
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作者 Xiao-Lan Wang Qing-Tao Wan +2 位作者 Guan-Yi Ma Jing-Hua Li Jiang-Tao Fan 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2016年第7期143-152,共10页
We investigate the influence of assumed height for the thin shell ionosphere model on the Total Electron Content(TEC) derived from a small scale Global Positioning System(GPS) network. TEC and instrumental bias ar... We investigate the influence of assumed height for the thin shell ionosphere model on the Total Electron Content(TEC) derived from a small scale Global Positioning System(GPS) network. TEC and instrumental bias are determined by applying a grid-based algorithm to the data on several geomagnetically quiet days covering a 10 month period in 2006. Comparisons of TEC and instrumental bias are made among assumed heights from 250 km to 700 km with an interval of 10 km. While the TEC variations with time follow the same trend, TEC tends to increase with the height of the thin shell. The difference in TEC between heights 250 km and 700 km can be as large as~8 TECU in both daytime and nighttime. The times at which the TEC reaches its peak or valley do not vary much with the assumed heights. The instrumental biases, especially bias from the satellite, can vary irregularly with assumed height. Several satellites show a large deviation of~3 ns for heights larger than 550 km. The goodness of fit for different assumed heights is also examined. The data can be generally well-fitted for heights from 350 km to 700 km. A large deviation happens at heights lower than 350 km. Using the grid-based algorithm, there is no consensus on assumed height as related to data fitting. A thin shell height in the range 350-500 km can be a reasonable compromise between data fitting and peak height of the ionosphere. 展开更多
关键词 Radiowave propagation Ionospheric TEC Ionospheric height GPS observation Instrumental bias
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Interpretation and Classification of P-Series Recommendations in ITU-R
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作者 Wei Li Zhaojun Qian Huiyu Li 《International Journal of Communications, Network and System Sciences》 2016年第5期117-125,共9页
As ITU-R Recommendations is widely implemented for countries all over the world, the role and status of ITU-R Recommendations are increasingly prominent in the field of radio engineering. ITU and ITU-R Study Groups ar... As ITU-R Recommendations is widely implemented for countries all over the world, the role and status of ITU-R Recommendations are increasingly prominent in the field of radio engineering. ITU and ITU-R Study Groups are summarized. Furthermore, the operating mode of the third study group, and the input documents are interpreted in detail. Lastly, from both wireless system design and electromagnetic compatibility analysis perspective, all of 79 P-series Recommendations are analyzed and classified, and the main contents of each Recommendation are summarized. The above research promote P-series Recommendations are widely used in China. 展开更多
关键词 ITU P-Series Recommendations Classification Radiowave Propagation Propagation Prediction Method
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Radio Wave Propagation Experiment in Sugarcane Fire Environments
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作者 Douglas Letsholathebe Kgakgamatso M. Mphale +1 位作者 Samuel Chimidza Malcolm L. Heron 《Journal of Electromagnetic Analysis and Applications》 2016年第7期124-131,共8页
Large fires have an effect of suppressing Very or Ultra High Frequency (VHF/UHF) radio wave signals strength which consequently impact negatively on the efficiency of radio communications at the frequency ranges. Mobi... Large fires have an effect of suppressing Very or Ultra High Frequency (VHF/UHF) radio wave signals strength which consequently impact negatively on the efficiency of radio communications at the frequency ranges. Mobile hand-held radio operating at the frequency ranges is a major communication tool during fire suppression;therefore inefficient radio communication systems put lives of fire fighters at risk. One of the causes of signal attenuation in fire environment is plume ionization. Plume species which include graphitic carbon, alkalis and thermally excited radicals such as methyl are responsible for ionization. As atmospheric pressure ionized medium (combustion plasma), sugarcane fire has momentum transfer electron-neutral collision frequency much higher than plasma frequency, hence propagation of VHF/UHF radio waves through such a medium is predicted to suffer a significant attenuation and phase shift. Radiowave propagation measurements were carried out in a moderate intensity prescribed sugarcane fire at 151 MHz frequency over a 590 m path using a radiowave interferometer. The radio wave interferometer measured signal attenuation of 0.43 dB through the fire with maximum temperature and flame depth of 1154 K and 8.7 m, respectively. 展开更多
关键词 Canefire Radiowave Loss ATTENUATION Thermal Ionization
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The Giant Radio Array for Neutrino Detection(GRAND):Science and design 被引量:3
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作者 Jaime Alvarez-Muniz Rafael Alves Batista +47 位作者 Aswathi Balagopal V. Julien Bolmont Mauricio Bustamante Washington Carvalho Jr. Didier Charrier Ismael Cognard Valentin Decoene Peter B.Denton Sijbrand De Jong Krijn D.De Vries Ralph Engel Ke Fang Chad Finley Stefano Gabici Quan Bu Gou Jun Hua Gu Claire Guépin Hong Bo Hu Yan Huang Kumiko Kotera Sandra Le Coz Jean-Philippe Lenain Guo Liang Léü Olivier Martineau-Huynh Miguel Mostafá Fabrice Mottez Kohta Murase Valentin Niess Foteini Oikonomou Tanguy Pierog Xiang Li Qian Bo Qin Duan Ran Nicolas Renault-Tinacci Markus Roth Frank G.Schroder Fabian Schüssler Cyril Tasse Charles Timmerman Matías Tueros Xiang Ping Wu Philippe Zarka Andreas Zech B.Theodore Zhang Jian Li Zhang Yi Zhang Qian Zheng Anne Zilles 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2020年第1期1-43,共43页
The Giant Radio Array for Neutrino Detection(GRAND)is a planned large-scale observatory of ultra-high-energy(UHE)cosmic particles,with energies exceeding 10~8 Ge V.Its goal is to solve the long-standing mystery of the... The Giant Radio Array for Neutrino Detection(GRAND)is a planned large-scale observatory of ultra-high-energy(UHE)cosmic particles,with energies exceeding 10~8 Ge V.Its goal is to solve the long-standing mystery of the origin of UHE cosmic rays.To do this,GRAND will detect an unprecedented number of UHE cosmic rays and search for the undiscovered UHE neutrinos and gamma rays associated to them with unmatched sensitivity.GRAND will use large arrays of antennas to detect the radio emission coming from extensive air showers initiated by UHE particles in the atmosphere.Its design is modular:20 separate,independent sub-arrays,each of 10000 radio antennas deployed over 10000 km^2.A staged construction plan will validate key detection techniques while achieving important science goals early.Here we present the science goals,detection strategy,preliminary design,performance goals,and construction plans for GRAND. 展开更多
关键词 radio telescopes neutrinos in astronomical observations cosmic rays in astronomical observations radiowave radiation:sources galactic and extragalactic cosmic rays:galactic and extragalactic
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