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Electricity magnets and electromagnets

Ionization, electrical, magnetic, and electromagnetic phenomena accompanying detonation) (12 refs are included) 9) Dunkle s Syllabus (1960-1961), p lOd (Review of works listed here as refs 3, 4, 5 6) p 14g (Review of work of Pokrovskii, listed here as Ref 2)... [Pg.264]

Detonation (and Explosion), Ionization, Electrical, Magnetic, and Electromagnetic Phenomena Accompanying It. See under Detonation (and Explosion), Electrical, Electromagnetic, and Magnetic Phenomena Accompanying It... [Pg.420]

A particular problem with inductive measuring principles for automotive applications is sensitivity to electrical, magnetic, and electromagnetic fields, which can disturb signals picked up by the receiving coils. This results in a fault angle depending on the kind of disturbance. Appropriate measures have to be taken to compensate for the influence of external fields. [Pg.441]

ICNIRP. 1998. Guidelines on Limiting Exposure to Time-Varying Electric, Magnetic, and Electromagnetic Fields (up to 300 GHz). Health Physics, 74(4) 494-522. [Pg.726]

The electric, magnetic, and electromagnetic fields became a serious factor of everyday life of all living systems, starting from occupational and everyday life of human population, as well as for the entire biosphere. While considering environmental impact of these factors, science must dedicate serious attention to potential benefit of using EMF for human health. [Pg.383]

Flytzanis, C. French patent "Nonlinear Behaviour of molecules Atoms and Ions in Electric, Magnetic or Electromagnetic 22. [Pg.106]

C. Flytzanis, in Nonlinear Behaviour of Molecules Atoms and Ions in Electrics, Magnetics or Electromagnetic Fields... [Pg.184]

Flytzanis, C. in Nonlinear behaviour of molecules, atoms, and ions in electric, magnetic, or electromagnetic fields, Neel, L., Ed., Elsevier/North Holland, 1979. [Pg.107]

Our knowledge of the structure of matter and of its electric, magnetic, and optical properties is based on the theory of the electron, " quantum theories, quantum and dassical electrodynanucs, statistical mechanics, " and the theory of molecular interactions. " The fundamentals of electron theory were first stated in the classical work of Lorentz and then developed in a modem approach by Rosenfeld. The quantum-mechanical theory of the electromagnetic properties of matter is presented semi-dassically in the work of Born and Jordan, and to Heitler is due the complete quantum theory of interaction between matter and the electromagnetic field. The above-named methods have permitted the determination of the atomic and molecular structure of matter, in... [Pg.107]

Figure 3.11 Michael Faraday, who among many things discovered electromagnetic induction in 1831 and established the connection between electricity, magnetism, and light he also discovered electrolysis. (Published with permission from the Deutsches Museum, Munich.)... Figure 3.11 Michael Faraday, who among many things discovered electromagnetic induction in 1831 and established the connection between electricity, magnetism, and light he also discovered electrolysis. (Published with permission from the Deutsches Museum, Munich.)...
In contra.st to their interaction with applied electric, magnetic or electromagnetic fields, porphyrins and metalloporphyrins can also interact with other chemical species. One might view such interactions as chemo-responsive rather than field-responsive. The development of chemo-responsive materials based on porphyrins, however, is somewhat less advanced. One example of such applications is that porphyrin solids, being highly porous, are involved in the current development of molecularly based molecular sieves or shape-selective solid catalysts. Porphyrins and metalloporphyrins have also been examined for a variety of sensor applications, further proving their importance as a class of chemo-responsive materials. [Pg.44]

The present entry briefly discusses two of the basic discretization techniques commonly used for computational fluid dymamics (CFD) analysis of systems involving fluid flow, heat transfer, and associated phenomena such as chemical reactions. These mathematical tools, however, are generalized enough to address other transport processes occurring in electrical, magnetic, or electromagnetic systems as well. [Pg.1107]

M. De Maeyer, R. Nackaerts, R. Ooms and L. Hellemans, "The Nonlinear Dielectric Effect and Chemical Relaxation a Happy Marriage",in Nonlinear Behaviour of Molecules, Atoms and Ions in Electric, Magnetic or Electromagnetic Fields, L. Neel ed., Elsevier, Amsterdam (in press). ... [Pg.508]


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See also in sourсe #XX -- [ Pg.391 ]




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