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Magnetic ferromagnetic

Molten iron Density 7.00 g/cm at 1,564°C vapor pressure 0.06 torr at 1,600° C, and 1 torr at 1,850°C, respectively viscosity 4.45 centipoise at 1,743°C surface tension 1,835-1,965 dynes/cm electrical resistivity 139 microhm-cm at the melting point. Magnetic properties attracted by magnets rapidly loses its magnetism ferromagnetic at ordinary temperature becomes paramagnetic when heated to its Curie point, 768°C. [Pg.411]

Abstract Magnetism and electronic structure of two types of phthalocyanine-based magnets, ferromagnets and single-molecule magnets, both of which exhibit spontaneous magnetization but by different mechanism, are reviewed. [Pg.211]

A multipurpose torque sensor was developed by FAST Technology. The specifications of this sensor allows its use in electrically assisted steering systems. FAST Technology developed a method for permanently magnetizing ferromagnetic steel shafts. Fig. 7.12.11 shows the shape of the toroidal magnetic field. The magnetic field beside the shaft varies with the mechanical stress on the shaft. A sensor... [Pg.456]

PHYSICAL PROPERTIES steel-gray, shiny, hard metal ductile somewhat malleable hydrated salts of cobalt are red soluble salts form red solutions which become blue on adding concentrated hydrochloric acid exists in two allotropic forms hexagonal form is more stable than the cubic form at room temperature readily soluble in dilute nitric acid insoluble in water magnetic ferromagnetic permeability two-thirds that of iron MP (1493°C, 2719°F) BP (3100°C, 5612°F) DN (8.92 g/cm at 20°C) SG (8.92) CP (0.1056 cal/g/°C at 15-100°C) LHV (1500cal/g) VP (0 mmHg at 68°F BHN (1.25). [Pg.513]

Carburi- zation Total Magnetization Ferromagnetic Phases, Fraction of M (%) ... [Pg.137]

State/Rietveld Refinement/Magnetization/Ferromagnetic Resonance... [Pg.323]

Magnetism Non-magnetic Ferromagnetic Smaller speed fluctuation... [Pg.329]

Magnetic Ferromagnetic Solids mixing in a bed of FCC, Dj = 0.15 m i.d. Bed operated in a bubbling, slugging, and turbulent regime Avidan and Yerushalmi (1985)... [Pg.670]

Figure 3.1.2F. Simplified cross-sectional view of the magnetic forces acting on a paramagnetic particle flowing past a magnetized ferromagnetic wire in a background field H. (After Dobby and Finch (1977).)... Figure 3.1.2F. Simplified cross-sectional view of the magnetic forces acting on a paramagnetic particle flowing past a magnetized ferromagnetic wire in a background field H. (After Dobby and Finch (1977).)...

See other pages where Magnetic ferromagnetic is mentioned: [Pg.366]    [Pg.419]    [Pg.1800]    [Pg.114]    [Pg.419]    [Pg.423]    [Pg.612]    [Pg.1560]    [Pg.532]    [Pg.423]    [Pg.154]    [Pg.1804]    [Pg.27]    [Pg.394]    [Pg.84]    [Pg.540]    [Pg.624]    [Pg.157]    [Pg.444]    [Pg.39]    [Pg.22]    [Pg.922]   
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See also in sourсe #XX -- [ Pg.264 ]

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See also in sourсe #XX -- [ Pg.440 ]

See also in sourсe #XX -- [ Pg.12 , Pg.22 ]




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Ferromagnet

Ferromagnet spontaneous magnetization

Ferromagnetic

Ferromagnetic Materials with Localized Magnetic Moments

Ferromagnetic materials, magnetic transition

Ferromagnetic materials, magnetic transition temperatures

Ferromagnetism

Ferromagnetism saturation magnetization

Magnetic ceramics ferromagnetic materials

Magnetic excitations ferromagnetic films

Magnetic heat capacity ferromagnet

Magnetic moment, ferromagnetic

Magnetic moment, ferromagnetic relaxation

Magnetic properties bulk ferromagnets

Magnetic properties ferromagnetic systems

Magnetic properties ferromagnetism

Magnetic resonance ferromagnetic

Magnetic structure ferromagnetic

Magnetism ferromagnetism

Magnetism ferromagnetism

Magnetism, antiferromagnetism ferromagnetism

Magnetism: ferromagnetic interactions

Magnets, molecular Ferromagnetism

Order, magnetic ferromagnetic

Surface magnetism ferromagnetic films

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