So in the high temperature limit, the energy does change with temperature.
所以在高温极限下,能量随温度变化而变化。
So it's easy to get into the high temperature limit, in that case. Where you basically see a temperature independent heat capacity.
所以它很容易到高温极限,在那种情况下,你基本上就能看到,不依赖于温度的热容。
So at high temperature, well we can start by just looking at the energy.
那么在高温时,我们从能量开始。
And it does so at a high enough temperature to ignite the solid fuel.
在足以点燃固体燃料的高温中,HTP就是这样反应的。
So in the high temperature limit we can easily calculate things.
因此在高温极限下,我们可以很简单进行计算。
So in that case, the high temperature limiting heat capacity is zero.
所以在这种情况下,高温极限的热容是零。
So now let's look at the high temperature limit.
那么现在我们来看看高温极限。
So these are the high temperature limits.
那么这就是高温极限。
So the high temperature limit, physically, is one that's simple to understand.
因此高温极限,从物理的角度是容易理解的。
The temperature is so high as to change water into steam.
温度是如此的高,以至于水都变成了水蒸气。
This side effect is rare; so you must speak to your doctor if you develop a high temperature.
这种副作用是罕见的;所以你要告诉你的医生如果你开发了一个高温度。
So it is valuable to research the high temperature characteristic of microelectronics devices.
因此对微电子器件的温度特性的研究有着重要实际意义。
When summer comes, the air is stuffy and the temperature is so high.
当夏天到来的时候,空气很闷热,气温也很高。
It is of high heat conductivity, simple structure, reliability temperature uniformity and so on.
具有导热性能高、结构简单、工作可靠、温度均匀等优点。
SCR components will heat at work, so that high temperature equipment.
可控硅元件在工作时会发热,使设备内温度很高。
The temperature in the sun is so high that nothing can exist in the solid state.
太阳内的温度是如此之高,以致没有东西能以固态存在。
So the high temperature liquid transfer in various occasions in use.
因此在各种输送高温液体的场合中得到使用。
But its brittleness at high temperature and hard to machine limited its applications so far.
但是其高温脆性大,加工成型困难,至今得不到工业应用。
But its brittleness at high temperature and hard to machine limited its applications so far.
但是其高温脆性大,加工成型困难,至今得不到工业应用。
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