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Specific heat thermal conductivity

Saturation and superheat tables and a chart to 15,000 psia, 840 F appear in Stewart, R. B., R. T. Jacobsen, et al., Theimodynamic Propeities of Refiigerants, ASHRAE, Atlanta, GA, 1986 (521 pp.). For specific heat, thermal conductivity, and viscosity, see ASHRAE Theimophysical Propeiiies of Refiigerants, 1993. [Pg.268]

Saturation and superheat tables and a diagram to 200 har, 600 K are given by Reynolds, W. C., Theimodynarmc propeities in S.I., Stanford Univ. puhl., 1979 (173 pp.). Saturation and superheat tables and a chart to 10,000 psia, 640 F appear in Stewart, R. B., R. T. Jacobsen, et al., Theimodynamic Propeiiies of Refiigerants, ASHRAE, Atlanta, GA, 1986 (521 pp.). For specific heat, thermal conductivity, and viscosity, see Theimophysical Propeiiies of Refngerants, ASHRAE, 1993. Equations and data for thermal conductivity and viscosity are given by Nieuwoldt, J. C., B. LeNeindre, et al.,y. Chem. Eng. Data, 32, (1987) 1-8. [Pg.292]

For specific heat, thermal conductivity, and viscosity, see Theimophysical Piopeities of Refiigeiants, ASHRAE, 1993. [Pg.310]

Thermodynamic data (enthalpy of reaction, specific heat, thermal conductivity) for simple systems can frequently be found in date bases. Such data can also be determined by physical property estimation procedures and experimental methods. The latter is the only choice for complex multicomponent systems. [Pg.100]

Some major assumptions were made in the derivation of Eqs. (6.118) and (6.133). First, it was assumed that the specific heat, thermal conductivity, and the product Dp were constants and that the Lewis number was equal to 1. Second, it was assumed that there was no transient heating of the droplet. Furthermore, the role of finite reaction kinetics was not addressed adequately. These points will be given consideration in this section. [Pg.359]

The principal thermal properties of importance in the present context are specific heat, thermal conductivity, coefficient of expansion and stability. [Pg.86]

The term thermal properties is open to more than one interpretation. Specific heat, thermal conductivity and diffusivity clearly come under this heading but the term can be taken to also include heat ageing, low temperature tests and fire resistance. However, these are more properly dealt with, as in this volume, under Effect of Temperature. Thermal analysis is a group of techniques in which a property of a sample is monitored against temperature, or time at a temperature, and, therefore, is also generally concerned with measuring the effect of temperature. Nevertheless, for convenience, a brief overview of thermal analysis is given here. [Pg.275]

Other props of coals, such as specific gravity, relative friability, decomposition temperature, specific heat, thermal conductivity, etc are given in Ref 3, pp88 91... [Pg.137]

When a solid is exposed to a thermal environment, it will either absorb or release heat. This thermal energy is delivered via heat transfer mechanisms of conduction, convection, and radiation. Typical thermal properties of a solid include specific heat, thermal conductivity, thermal expansion, and thermal radiation properties. [Pg.32]

Carreau model parameter Carreau model parameter Zero shear rate viscosity Arrhenius law parameter Reference temperature Density Specific heat Thermal conductivity... [Pg.569]

Several of the low-temperature superconducting metals, such as lead, brass, and some solders (particularly lead-tin alloys), experience property changes when they become superconducting. Such changes can include specific heat, thermal conductivity, electrical resistance, magnetic permeability, and thermoelectric resistance. Consequently, the use of these superconducting metals in the construction of equipment for low-temperature operation must be evaluated carefully. [Pg.174]

Just as in molecules, the nuclei in an infinite, periodic system vibrate around their equilibrium positions according to their vibrational modes which are called phonons in solid state physics. They determine the system s specific heat, thermal conductivity, thermal expansion, infrared and Raman spectroscopy, and other mechanical properties [81-83]. [Pg.133]

Temperature Thermal diffusivity Specific heat Thermal conductivity °C) (cm2/s) (J/g-K) (W/mK)... [Pg.771]

Nanocrystalline materials comprising sub-100 / metal particles, when compressed to 50% of their bulk density, show properties (specific heat, thermal conductivity, saturation magnetization and critical temperature for superconductivity) provocatively different from those of their crystalline or glassy counterparts.(48) It is well known that the interfaces of mechanically reduced composites are effective in interacting with dislocations and with flux lines in superconducting composites. Precursor materials for the preparation of ultrafine filamentary composites can also be imagined. Here the combinations of interphasial boundaries and dislocations can... [Pg.178]

On the assumption that h depends upon pipe diameter, specific heat, thermal conductivity, viscosity, coefficient of thermal expansion, the acceleration of gravity, and temperature difference, dimensional analysis gives... [Pg.364]

Conversion factors for mass, density, pressure, energy, specific energy, specific heat, thermal conductivity, dynamic viscosity, and kinematic viscosity in different systems of units are also given in Chap. 2 (Tables 2.1-2.9). [Pg.49]


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See also in sourсe #XX -- [ Pg.303 , Pg.304 ]




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