thermal conductivity - translation to English
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thermal conductivity - translation to English

CAPACITY OF A MATERIAL TO CONDUCT HEAT
Watt per meter-kelvin; Watt per metre-kelvin; Thermal conductor; Thermal Conductor; Thermal Conductivity; Thermal conductivities; Heat conductivity; Law of thermoconductivity; Law of thermal conductivity; Heat Conductivity; Thermal conduction in solids; Thermal resistant; Kelvin-metres; Thermal resistor; Thermal impedance
  • Exhaust system components with ceramic coatings having a low thermal conductivity reduce heating of nearby sensitive components
  • Thermal conductivity can be defined in terms of the heat flow <math>q</math> across a temperature difference.
  • date=April 2019}}

thermal conductivity         
thermal conductivity теплопроводность
thermal conductivity         

общая лексика

теплопроводность

температуропроводность

медицина

удельная теплопроводность

строительное дело

коэффициент теплопроводности

thermal conductivity         
теплопроводность; коэффициент теплопроводности

Definition

Conductivity
·noun The quality or power of conducting, or of receiving and transmitting, as heat, electricity, ·etc.; as, the conductivity of a nerve.

Wikipedia

Thermal conductivity

The thermal conductivity of a material is a measure of its ability to conduct heat. It is commonly denoted by k {\displaystyle k} , λ {\displaystyle \lambda } , or κ {\displaystyle \kappa } .

Heat transfer occurs at a lower rate in materials of low thermal conductivity than in materials of high thermal conductivity. For instance, metals typically have high thermal conductivity and are very efficient at conducting heat, while the opposite is true for insulating materials like Rockwool or Styrofoam. Correspondingly, materials of high thermal conductivity are widely used in heat sink applications, and materials of low thermal conductivity are used as thermal insulation. The reciprocal of thermal conductivity is called thermal resistivity.

The defining equation for thermal conductivity is q = k T {\displaystyle \mathbf {q} =-k\nabla T} , where q {\displaystyle \mathbf {q} } is the heat flux, k {\displaystyle k} is the thermal conductivity, and T {\displaystyle \nabla T} is the temperature gradient. This is known as Fourier's Law for heat conduction. Although commonly expressed as a scalar, the most general form of thermal conductivity is a second-rank tensor. However, the tensorial description only becomes necessary in materials which are anisotropic.

Examples of use of thermal conductivity
1. The high thermal conductivity of the pan acts to rapidly thaw most items.
What is the Russian for thermal conductivity? Translation of &#39thermal conductivity&#39 to Russian