翻訳と辞書
Words near each other
・ Magnetohydrodynamic turbulence
・ Magnetohydrodynamics
・ Magnetohydrodynamics (journal)
・ Magnetolithography
・ Magnetomechanical effects
・ Magnetometer
・ Magnetomotive force
・ Magnetomyography
・ Magneton
・ Magnetone
・ Magnetopause
・ Magnetophon
・ Magnetophosphene
・ Magnetoplasmadynamic RF thruster
・ Magnetoplasmadynamic thruster
Magnetoquasistatic field
・ Magnetoreception
・ Magnetoresistance
・ Magnetoresistive random-access memory
・ Magnetorheological damper
・ Magnetorheological elastomer
・ Magnetorheological finishing
・ Magnetorheological fluid
・ Magnetorotational instability
・ Magnetorquer
・ Magnetosheath
・ Magnetosome
・ Magnetosonic wave
・ Magnetosphere
・ Magnetosphere chronology


Dictionary Lists
翻訳と辞書 辞書検索 [ 開発暫定版 ]
スポンサード リンク

Magnetoquasistatic field : ウィキペディア英語版
Magnetoquasistatic field

A magnetoquasistatic field is a class of electromagnetic field in which a slowly oscillating magnetic field is dominant. A magnetoquasistatic field is typically generated by ''low-frequency'' induction from a magnetic dipole or a current loop. The magnetic near-field of such an emitter behaves differently from the more commonly used far-field electromagnetic radiation. At low frequencies the rate of change of the instantaneous field strength with each cycle is relatively slow, giving rise to the name "magneto-quasistatic". The near field or quasistatic region typically extends no more than a wavelength from the antenna, and within this region the electric and magnetic fields are approximately decoupled.
Weakly conducting non-magnetic bodies, including the human body and many mineral rocks, are effectively transparent to magnetoquasistatic fields, allowing for the transmission and reception of signals through such obstacles. Also, long-wavelength (i.e. low-frequency) signals are better able to propagate round corners than shorter-wave signals. Communication therefore need not be line-of-sight.
The communication range of such signals depends on both the wavelength and the electromagnetic properties of the intervening medium at the chosen frequency, and is typically limited to a few tens of meters.
==Physical principles==
The laws of primary interest are Ampère's circuital law (with the displacement current density neglected) and the magnetic flux continuity law. These laws have associated with them continuity conditions at interfaces. In the absence of magnetizable materials, these laws determine the magnetic field intensity H given its source, the current density J. H is not everywhere irrotational. However, it is solenoidal everywhere.〔Haus, Hermann A., and James R. Melcher, Electromagnetic Fields and Energy. (Massachusetts Institute of Technology: MIT OpenCourseWare). http://ocw.mit.edu () (accessed 18 June 2014).〕

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
ウィキペディアで「Magnetoquasistatic field」の詳細全文を読む



スポンサード リンク
翻訳と辞書 : 翻訳のためのインターネットリソース

Copyright(C) kotoba.ne.jp 1997-2016. All Rights Reserved.