这就是一个关于函数等高线图的例子。
因此,等高线图看起来就像这样?
然而,等高线图是完全一样的。
那就是为什么等高线图是均匀间隔线的排列的。
现在,在等高线图上取一点。
等高线图看起来是这样的。
我们来放大它的等高线图。
这些都是现实生活中关于等高线图的例子,有问题吗?
OK, so these are examples of contour plots in real life. OK, no questions?
我相信我的电脑是对的,最后,这一个,它的等高线图比较复杂。
But, I trust my computer. And, finally, this one, well, so the contour plot looks a bit complicated.
一个等高线图,显示了两个地震同相轴或反射层之间的时间变化。
A contour map that displays the variation in time between two seismic events or reflections.
本文还研究了通过扫描数字化等高线图建立数字地形模型的方法。
The methods to obtain the Digital Terrain Model (DTM) from contour map by scan digitizing were studied.
我将举出两个相同例子,这样我们就能看到图像与等高线图的关系。
And, I'm going to take the same two examples as there to start with so that we see the relation between the graph and the contour plots.
好的,另外一个等高线图的例子,你们可能见过,多种这样的温度图。
OK, so another example of contour plots, well, you've probably seen various versions of these temperature maps.
结合微波亮温等温线图和南极等高线图分析了南极地区亮温分布的特点。
The microwave brightness temperature(Tb) isoline, combined with the topographic contour line of ice sheet, interprets the characteristic of brightness temperature distribution in Antarctica.
煤层底板等高线图是煤矿生产中最重要的地质图件,是煤矿设计、生产、储量计算的基础。
The contour map of coal-floor is the most important geological map in the production of coal-mine. It is the base of design, production and reserve-counting of coal-mine.
利用某煤矿剖面为原始资料,参照底板等高线图,成功地在微机上生成了该煤矿矿体立体图。
The 3d hologram is formed using the section of a coal orebody as original data, with reference to the floor contour figure.
给出了平面等高线地形图,带地物符号的工程地形图,立体等高线图及逼真地形图等多种造型方法。
And various methods of modelling, that is, contour maps, engineering maps with surface feature symbols, 3 D contours and realistic maps are given.
我提供了一份(当前世界地图的)675英尺等高线图以及一份显现于极移后的新地学地图作为直观的指导。
I provided a map of where this 675 foot level would ride, as well as a map of the new geography that will emerge after the pole shift, as visual guidelines.
在优化阶段,我们开发了一个系统的预测模型,通过响应面的等高线图或者数学优化,去寻找合适的操作条件。
In the optimization phase, we develop a predictive model for the system to find useful operating conditions through response surface contour plots and perhaps mathematical optimization.
在优化阶段,我们开发了一个系统的预测模型,通过响应面的等高线图或者数学优化,去寻找合适的操作条件。
In the optimization phase, we develop a predictive model for the system to find useful operating conditions through response surface contour plots and perhaps mathematical optimization.
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