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Temperature coefficient : ウィキペディア英語版
Temperature coefficient
A temperature coefficient describes the relative change of a physical property that is associated with a given change in temperature. For a property ''R'' that changes by ''dR'' when the temperature changes by ''dT'', the temperature coefficient α is defined by
:\frac = \alpha\,dT.
Here α has the dimension of an inverse temperature and can be expressed e.g. in 1/K or K−1.
If the temperature coefficient itself does not vary too much with temperature, a linear approximation can be used to determine the value ''R'' of a property at a temperature ''T'', given its value ''R''0 at a reference temperature ''T''0:
:R(T) = R(T_0)(1 + \alpha\Delta T),
where Δ''T'' is the difference between ''T'' and ''T''0.
For strongly temperature-dependent α, this approximation is only useful for small temperature differences Δ''T''.
Temperature coefficients are specified for various applications, including electric and magnetic properties of materials as well as reactivity.
==Negative temperature coefficient==
A '
Most ceramics exhibit NTC behaviour, which is governed by an Arrhenius equation over a wide range of temperatures:
:R=A \cdot e^}
where ''R'' is resistance, ''A'' and ''B'' are constants, and ''T'' is absolute temperature (K).
The constant ''B'' is related to the energies required to form and move the charge carriers responsible for electrical conduction – hence, as the value of ''B'' increases, the material becomes insulating. Practical and commercial NTC resistors aim to combine modest resistance with a value of ''B'' that provides good sensitivity to temperature. Such is the importance of the ''B'' constant value, that it is possible to characterize NTC thermistors using the B parameter equation:
:R = r^e^} = R_e^}}e^}
where R_ is resistance at temperature T_.
Therefore, many materials that produce acceptable values of R_ include materials that have been alloyed or possess variable ''negative temperature coefficient (NTC) occurs when a physical property (such as thermal conductivity or electrical resistivity) of a material lowers with increasing temperature, typically in a defined temperature range. For most materials, electrical resistivity will decrease with increasing temperature.
Materials with a negative temperature coefficient have been used in floor heating since 1971. The negative temperature coefficient avoids excessive local heating beneath carpets, bean bag chairs, mattresses etc., which can damage wooden floors, and may infrequently cause fires.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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