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单词 Thermal capacity
释义

Thermal capacity

原声例句
经济学人(汇总)

But their wings, being thin protein membranes, have a limited thermal capacity.

但是它们的翅膀,由于是薄薄的蛋白质膜,所以热容量有限。

中文百科

热容量 Heat capacity

(重定向自Thermal capacity)

热容量英语:heat capacity)是用以衡量物质所包含的热量的物理量,用符号C 表示,单位是J·K或J·℃。

热容量的定义是一定量的物质在一定条件下温度升高1度所需要的热,其公式为:

C = \lim_{\Delta T \to 0} \left( \frac{Q}{\Delta T}\right) = \frac{\delta Q}{{\rm{d}}T}

英语百科

Heat capacity 热容量

(重定向自Thermal capacity)
Molecules undergo many characteristic internal vibrations. Potential energy stored in these internal degrees of freedom contributes to a sample’s energy content,
[17]
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but not to its temperature. More internal degrees of freedom tend to increase a substance's specific heat capacity, so long as temperatures are high enough to overcome quantum effects.
Constant volume specific heat capacity of a diatomic gas (idealised). As temperature increases, heat capacity goes from 3/2 R (translation contribution only), to 5/2 R (translation plus rotation), finally to a maximum of 7/2 R (translation + rotation + vibration)
Constant volume specific heat capacity of diatomic gases (real gases) between about 200 K and 2000 K. This temperature range is not large enough to include both quantum transitions in all gases. Instead, at 200 K, all but hydrogen are fully rotationally excited, so all have at least 5/2 R heat capacity. (Hydrogen is already below 5/2, but it will require cryogenic conditions for even H2 to fall to 3/2 R). Further, only the heavier gases fully reach 7/2 R at the highest temperature, due to the relatively small vibrational energy spacing of these molecules. HCl and H2 begin to make the transition above 500 K, but have not achieved it by 1000 K, since their vibrational energy level spacing is too wide to fully participate in heat capacity, even at this temperature.
The dimensionless heat capacity divided by three, as a function of temperature as predicted by the Debye model and by Einstein’s earlier model. The horizontal axis is the temperature divided by the Debye temperature. Note that, as expected, the dimensionless heat capacity is zero at absolute zero, and rises to a value of three as the temperature becomes much larger than the Debye temperature. The red line corresponds to the classical limit of the Dulong–Petit law

Heat capacity or thermal capacity is a measurable physical quantity equal to the ratio of the heat added to (or removed from) an object to the resulting temperature change. The SI unit of heat capacity is joule per kelvin \mathrm{\tfrac{J}{K}} and the dimensional form is LMTΘ. Specific heat is the amount of heat needed to raise the temperature of one gram of mass by 1 kelvin .

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更新时间:2025/6/18 6:52:17