transition-temperature approach - tradução para russo
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transition-temperature approach - tradução para russo

TEMPERATURE ABOVE WHICH CERTAIN MATERIALS LOSE THEIR PERMANENT MAGNETIC PROPERTIES
Néel temperature; Curie Point; Neel temperature; Néel Temperature; Neel Temperature; Curie temp; Curie Temperature; Curie point; Neel Point; Néel point; Neel point; Ferrorelectric transition
  • '''Figure 3.''' The Weiss domains in a ferromagnetic material; the magnetic moments are aligned in domains.

transition-temperature approach      

строительное дело

оценка характера работы (сталей) с учётом температуры перехода

transition-temperature approach      
оценка характера работы (сталей) с учётом температуры перехода
transition element         
  • Oxidation states of the transition metals. The solid dots show common oxidation states, and the hollow dots show possible but unlikely states.
SERIES OF CHEMICAL ELEMENTS
Transition element; Transition metals; Transition elements; Transition Metals; Transition Metal; Transition Element; Metal Oxidation States; Metal oxidation states; First-row transition metal; Transitional metal; First transition series; Transitional metals; Transition metal catalyst; D-block element; Transition-metal catalyst; Transition-metal

[trænziʃ(ə)n'elimənt]

химия

переходный элемент

переходный металл (с незавершённой внутренней электронной оболочкой)

переходный металл (с незавершённой внутренней электронной оболочкой)

Definição

Absolute Temperature
Temperature reckoned from absolute zero (see "Zero, Absolute"). It is obtained by adding for the centigrade scale 273, and for the Fahrenheit scale 459, to the degree readings of the regular scale.

Wikipédia

Curie temperature

In physics and materials science, the Curie temperature (TC), or Curie point, is the temperature above which certain materials lose their permanent magnetic properties, which can (in most cases) be replaced by induced magnetism. The Curie temperature is named after Pierre Curie, who showed that magnetism was lost at a critical temperature.

The force of magnetism is determined by the magnetic moment, a dipole moment within an atom which originates from the angular momentum and spin of electrons. Materials have different structures of intrinsic magnetic moments that depend on temperature; the Curie temperature is the critical point at which a material's intrinsic magnetic moments change direction.

Permanent magnetism is caused by the alignment of magnetic moments and induced magnetism is created when disordered magnetic moments are forced to align in an applied magnetic field. For example, the ordered magnetic moments (ferromagnetic, Figure 1) change and become disordered (paramagnetic, Figure 2) at the Curie temperature. Higher temperatures make magnets weaker, as spontaneous magnetism only occurs below the Curie temperature. Magnetic susceptibility above the Curie temperature can be calculated from the Curie–Weiss law, which is derived from Curie's law.

In analogy to ferromagnetic and paramagnetic materials, the Curie temperature can also be used to describe the phase transition between ferroelectricity and paraelectricity. In this context, the order parameter is the electric polarization that goes from a finite value to zero when the temperature is increased above the Curie temperature.

Como se diz transition-temperature approach em Russo? Tradução de &#39transition-temperature approac