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Conduction magnetization

Magnetic flow meters are sometimes utilized in corrosive Hquid streams or slurries where a low unrecoverable pressure drop and high rangeabiHty is required. The fluid is required to be electrically conductive. Magnetic flow meters, which use Faraday s law to measure the velocity of the electrically conductive Hquid, are relatively expensive. Their use is therefore reserved for special situations where less expensive meters are not appropriate. Installation recommendations usually specify an upstream straight mn of five pipe diameters, keeping the electrodes in continuous contact with the Hquid. [Pg.65]

Frank Knoll/ M S / Min Proc / President, Carpco, Inc., Jacksonville, EL. (Super Conducting Magnetic Separation and Electrostatic Separation)... [Pg.1753]

Thermoplastic embrittle tough resins as lubricity, conductivity, magnetic... [Pg.352]

Compound Preparation, properties Single crystals Structure Optical properties Phototropy Electric conductivity Magnetism... [Pg.352]

There have been no reports of complexes of " JV-substituted thiosemicarbazones derived from 2-formylpyridine, but 2-acetylpyridine JV-methyl-thiosemicarbazone, 3a, formed [Fe(3a-H)2]C104 and [Fe(3a-H)2]FeCl4 [117]. The nature of these two species was established by partial elemental analyses, molar conductivities, magnetic moments, electronic, infrared, mass and electron spin resonance spectra. A crystal structure of a related selenosemicarbazone complex confirmed the presence of a distorted octahedral iron(III) cation coordinated by two deprotonated anions so that each ligand is essentially planar and the azomethine nitrogens are trans to each other the pyridyl nitrogen and selenium donors are both cis. [Pg.15]

Generally, a phase transition is triggered by an external stress which most commonly is a change in temperature or pressure. Properties that can change discontinuously include volume, density, specific heat, elasticity, compressibility, viscosity, color, electric conductivity, magnetism and solubility. As a rule, albeit not always, phase transitions involve structural changes. Therefore, a phase transition in the solid state normally involves a change from one to another modification. [Pg.32]

Abstract In this chapter, recent progress in the synthesis, crystal structures and physical properties of monomeric phthalocyanines (Pcs) is summarized and analysed. The strategies for synthesis and modification of Pcs include axial coordination of central metal ions, peripheral substitution of Pc rings and the ionization of Pcs. The crystal structures of various typical Pcs, especially the effects of different synthetic and modification strategies on the supramolecular assemblies of Pcs via %—% interactions between Pc rings, are discussed in detail. Finally, the UV-vis spectroscopic, conducting, magnetic and catalytic properties of some Pcs with crystal structures are presented briefly, and the correlations between various properties and the molecular structure discussed. [Pg.51]

Solutions of alkali metals in liquid ammonia have been studied by many techniques. These include electrical conductivity, magnetic susceptibility, nuclear magnetic resonance (NMR), volume expansion, spectroscopy (visible and infrared), and other techniques. The data obtained indicate that the metals dissolve with ionization and that the metal ion and electron are solvated. Several simultaneous equilibria have been postulated to explain the unique properties of the solutions. These are generally represented as follows ... [Pg.341]

The six -electron [RCN2S2]+ ring is readily reduced to the corresponding seven re-electron radical [RCN2S2] .8 The structures and properties (conductivity, magnetic behaviour) of the radicals are discussed in Section 10.1. [Pg.256]

Electroactive Paramagnetic Complexes as Molecular Bricks for tt-d Conducting Magnets... [Pg.55]

Keywords n-d interaction, 3d transition metal, Electronic conductivity, Magnetism, Redox-active complexes, TTF... [Pg.55]

Conducting Magnets Having Quasi One-Dimensional Electron System. 83... [Pg.77]

Fig. 2 Schematic diagrams of two representative mechanisms for spin-alignment in conducting magnets, (a) Stoner mechanism, (b) RKKY mechanism... Fig. 2 Schematic diagrams of two representative mechanisms for spin-alignment in conducting magnets, (a) Stoner mechanism, (b) RKKY mechanism...

See other pages where Conduction magnetization is mentioned: [Pg.434]    [Pg.258]    [Pg.402]    [Pg.326]    [Pg.138]    [Pg.258]    [Pg.321]    [Pg.258]    [Pg.34]    [Pg.49]    [Pg.49]    [Pg.49]    [Pg.53]    [Pg.276]    [Pg.81]    [Pg.88]    [Pg.70]    [Pg.801]    [Pg.891]    [Pg.56]    [Pg.77]    [Pg.79]    [Pg.79]    [Pg.80]    [Pg.81]    [Pg.81]    [Pg.83]   
See also in sourсe #XX -- [ Pg.120 ]




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Conductive magnetic materials

Conductivity, magnetic fillers

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Electrical conductivity magnetic materials

Electromagnetic field of the magnetic dipole in a uniform conducting medium

Hybrid magnetic conducting system

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Magnetism and Conduction

Magnets conducting/magnetic hybrid materials

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Organic Superconductors: Synthesis, Structure Conductivity, and Magnetic Properties

Phthalocyanines, conductivity magnetic properties

Super-conducting magnets

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