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1)  Sub-aperture stitching
子孔径拼接
1.
Application of sub-aperture stitching technique;
子孔径拼接技术应用的研究
2.
This paper gave a brief introduction of the realization principle of sub-aperture stitching examination method.
介绍子孔径拼接检测方法的实现原理,利用实验验证和数理统计理论的理论推导,分析出了元件的倾斜放置和采样点数的大小能够对检测精度产生影响。
3.
The application of sub-aperture stitching in long optical flat was researched.
研究子孔径拼接在长平晶测试中的应用。
2)  Subaperture stitching
子孔径拼接
1.
Testing asphere by subaperture stitching interferometric method;
子孔径拼接干涉法检测非球面
2.
As a high-precision testing method for optical surfaces,accuracy of the subaperture stitching interferometry is very important and must be evaluated quantitatively.
作为一种高精度的光学镜面测量方法,子孔径拼接干涉测量的精度指标十分重要,必须对其进行定量估计。
3)  stitching interferometer
子孔径拼接
1.
Testing the large aperture optical components by the stitching interferometer;
使用子孔径拼接法检测大口径光学元件
2.
Study on the experiments of the stitching interferometer;
子孔径拼接干涉检测实验研究
4)  stitching interferometry
子孔径拼接
1.
Study on the sub-aperture stitching interferometry for large plano-optics;
大口径光学平面的子孔径拼接检验研究
5)  annular subaperture stitching
环形子孔径拼接
1.
Mathematical model and simulation for testing aspheric surface by annular subaperture stitching interferometry;
环形子孔径拼接干涉检测非球面的数学模型和仿真研究
2.
In order to satisfy high precision and fast optical surface measuring,an iterative algorithm for annular subaperture stitching is discussed based on the Subaperture Stitching and Localization(SASL) algorithm.
研究了该算法在环形子孔径拼接测量中出现的如何确定重叠点的问题,并详细介绍了该算法的步骤。
6)  SSI
子孔径拼接干涉
1.
In order to test large aspheric surfaces without the aid of null optics,the subaperture stitching interferometry(SSI)was proposed.
为了无需其他辅助光学元件就能够实现对大口径非球面的测量,提出了子孔径拼接干涉检测方法。
2.
In order to test large aspheric surfaces without the aid of null optics, a novel method called subaperture stitching interferometry (SSI) is presented.
为了无需辅助元件就能够实现对大口径非球面的检测,将子孔径拼接技术与干涉技术相结合,提出了一种利用子孔径拼接干涉检测非球面的新方法。
补充资料:信使拼接
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性质:对来自高等生物的基因的一次转录的编辑,通过核酶(ribozyme)切除非编码的插入序列。信使拼接后留下了连续的编码序列,以此规定所编码的蛋白质。

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