像以前一样,我们先来画相图。
或者画一个相图,然后说这条线在这。
好,让我们看看温度,和摩尔分数相图。
OK, so we're going to look at temperature and mole fraction phase diagrams.
让我们从,这副相图开始。
So. Let's just start somewhere on a phase diagram like this.
定量地描述,整个相图。
To describe quantitatively throughout the entire phase diagram.
现在我可以对糖水画出相同的相图。
最后我们构造了可能的磁相图。
并给出了射影平面上的所有相图。
计算所得相图数据与实验结果一致。
Calculated phase diagrams are identical with the experimental data.
相图中完全是液相的区域。
他们都和这个相图相联系。
可以画出相图。
对金属相图实验仪器和方法进行了改进。
Imrprovements are made in the experiment instrument and method of metallic phase diagram.
好,看,我尽量使我画出的相图是正确的。
OK. See, I was really trying to make it so that my drawing was right.
并给出了全局定性相图。
以面积法为基础提取金相图像的特征参数。
当然,有些内容你也能,直接从相图中读出来。
And of course, that's something you can read right off the diagram as well.
这是纯物质的相图。
我上次也展示给你们,在这样的相图中改变温度。
Or change temperature in diagrams like I also showed last time.
相图上呈现两个两相共存区域和一个单相区域。
There are one single_phase region and two two_phase regions in the phase section.
在这样的相图中,改变压强时如何追踪上面发生的变化。
How to follow events on them as you change pressure in a diagram like this.
在这样的相图中,改变压强时如何追踪上面发生的变化。
How to follow events on them as you change pressure in a diagram like this.
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