Plot distance on the vertical Y-axis against time on the horizontal x-axis. 以垂直y轴表示距离,而以水平x轴表示时间。
Therefore, the X-axis span should be divided into four equal segments of length= span/ 4. 所以,应该将X坐标轴的跨度分成4个相等的区段,每个区段的长度=跨度/4。
By default, time ( the units on the X-axis) is shown in seconds. 默认情况下,时间(X轴上的单位)的显示单位为秒。
The first box rotates around the y-axis, and the second box rotates around the x-axis. 第一个立方体是围绕y轴旋转,而第二个立方体则围绕x轴旋转。
In the table below, the token on the X-axis can follow the token on the Y-axis if their meeting place is marked with an X. 在下面的表格中,若X轴上的符号和Y轴上的符号对应的交界处用X作了记号,则相应X轴上的符号可以接在Y轴上符号的后面。
Hence each reading is plotted at20-pixel intervals along the X-axis. 因此每次读取操作的结果在X轴上间隔20像素进行绘制。
For the x-axis, we only need to specify the first column where the data starts. 对于x轴,我们仅需要指定数据开始的第一列。
Now, we notice that the x-axis is not really marked in degrees and does not look good. 现在,我们注意到x轴实际没有标记为度数,看起来不是很好。
So, for example, I tell you how to set the x-range to limit the range on the x-axis of the graph. 所以,例如,我告诉您如何设置x范围来限制图表中x轴的范围。
First, calculate the X-axis scaling factor. 首先计算X轴的比例因子。
Well, we know we are on the x-axis. 我们在x轴上。
Well, the first ray that we might want to consider is the one that goes along the x-axis. ,我们要考虑的起始射线,是沿着x轴的射线。
The motion is only in the x-axis, along the x direction. 只在x轴,沿着x轴的方向进行移动。
But my x-axis here is the composition in the liquid phase There's no liquid around. 但是我这里的x轴是液体中的组分比,实际上没有液体了。
So, let's do the first one on the x-axis. 首先算x轴上的。
And if I choose, as my x-axis, xB I can draw a coexistence line on this axis. 如果你选择xB作为x轴,从0变到1,to,have,xB,going,from,zero,to,one,我可以在轴上画出共存曲线。
Angles are measured starting from the x-axis. 以x轴为始测量角度。
Because my x-axis is describing a phase which doesn't exist on the diagram. 因为我的x轴是描述一个,在这个图中不存在的相的。
What point in the plane x X-axis is foobar y-axis ought to be foobass something else, right? 在平面中指向哪个点呢?,轴是foobar的?,does,p,now,point,to?,而y轴应该是其他一些foobass的,对不对?我知道这看起来像一个?
Let's say we do rotation about the x-axis. 也就是绕x轴旋转。
If I'm on the x-axis, my vector field is actually in the y direction. 也就是,x轴上,向量场都是y方向的。
Of course, you can also do it geometrically because geometrically, you can see in the picture along the x-axis, the vector field is pointing vertically. 当然,你可以直观地算出来是因为,你可以直观地在图上看出x轴上,向量场是垂直指向的。
If I look only at the slice parallel to the x-axis then maybe I am going through the minimum. ,如果我只观察平行于x轴的切面,那这应该是一个极小值点。
But, I moved along the x-axis to one. 先沿着x轴走到。
It is slightly strange but I have y in inertia about the x-axis. 这有点奇怪,关于x轴的转动惯量跟y有关。
The other thing I want you to notice, is the x-axis runs from to3. 另一件事是,这个x轴是从3开始的。
Distance to x-axis is absolute value of y. 到x轴的距离是y的绝对值。
We can let the X-axis coincide with one of the forces, which will simplify the problem. 我们可以让X轴与其中的一个力相重合,这就简化了问题。
So I can draw a diagram that looks just like this except now with the x-axis being the gas phase composition. 这样我就可以做一个,和这个相似的相图,唯一不同之处就在于x轴代表气体组分比。
But the x-axis here doesn't tell me about the composition of pure liquid. It's all yB. 但是x没有告诉我们纯液体的组分,液体组分是用yB表示的。