specific heat capacity信息详情
[热]比热容
specific heat───n.比热
specific───n.特性;细节;特效药;adj.特殊的,特定的;明确的;详细的;[药]具有特效的
capacity───n.能力;容量;资格,地位;生产力
specific resistance───[电]比电阻;电阻系数;比电阻,电阻率,电阻系数
specific way───具体方式;特定方式
specific issues───具体问题;特定问题
specific gravity───[物]比重
heat to heat───热对热
heat───vt.使激动;把…加热;n.高温;压力;热度;热烈
calculation formula for determining the specific heat capacity of solid with an improved RD496-III microcalorimeter was derived.───了用改进的RD496 - II I型微热量计测定固态物质比热容的计算式。
The product of a solid element's relative atomic mass and its specific heat capacity is approximately 6.4.───元素相对原子质量与它的比热容的乘积,大约为6.4。
The results show that the specific heat capacity at constant volume in a fractal medium is always less than that in a homogenous medium.───结果表明,同一材料的分形介质定容比热恒小于均匀介质的定容比热。
Comparison method, which measures the metal specific heat capacity in accordance with Newton's law of cooling.───用比较方法,根据牛顿冷却定律测定金属的比热容。
Advanced technical ceramics - Ceramic composites, thermophysical properties - Part 3 : determination of specific heat capacity.───高级工业陶瓷.陶瓷复合材料的热物理性能.第3部分:比热的测定
Improvement on Equipment of Temperature Measure in "Mixing Method Measuring Metal Specific Heat Capacity"───“混合法测定金属比热容”实验中温度测量装置的改进
Advanced technical ceramics - Ceramic composites - Thermophysical properties - Determination of specific heat capacity───高级工业陶瓷.陶瓷复合材料.热机械性能.比热容的测定
Advanced technical ceramics - Monolithic ceramics - Thermo-physical properties - Determination of specific heat capacity───高级工业陶瓷.单片陶瓷.热物理性能.比热热容测定
With the miniaturization of a solid down to nanometers scale, the elasticity, extensibility, Debye temperature, and the specific heat capacity are no longer ...
The product of a solid element's relative atomic mass and its specific heat capacity is approximately 6.4.
Ccontents is the specific heat capacity of the contents; and T is the temperature change of the contents.
A calculation formula for determining the specific heat capacity of solid with an improved RD496-III microcalorimeter was derived.
A calorimeter based on the quasi-steady state theory was developed to measure the latent heat of fusion and specific heat capacity of substance from 250 K to 400 K at atmosphere pressure.
This paper discussed the assessment of uncertainty of air's specific heat capacity ratio, and gave a method of more reasonable, standard and easy for teaching.
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