1.
wave resolution of X-ray spectrum
X射线光谱波长分辨率
2.
Likewise, the shorter the wavelength of visible light used, the better the resolution.
同样,使用的可见光波长越短,分辨率就越高。
3.
Effects of Fluorescent Wavelength on the Resolution of Two-photon Fluorescence Confocal Imaging;
荧光波长对双光子荧光共焦成像分辨率的影响
4.
Calculating Equations for Resolution and Wavelength Range of Grating Spectrograph
光栅光谱仪分辨率及波长范围计算公式的研究
5.
Study on High-Resolution Frequency Synthesizer at L-band;
L波段高频率分辨率微波频率源的研究
6.
The Development of the High Time Resolution Data Acquisition System of Solar Radio Bursts at 10-cm Wavelength
波长10厘米太阳射电高时间分辨率数据采集系统的研制
7.
A calculation method based on analysing Haar wavelet multiresolution
基于Haar小波多分辨率分析的计算方法
8.
high resolution proton NMR spectrometer
高分辨率质子核磁共振波谱仪
9.
high resolution NMR spectroscope
高分辨率核磁共振波谱仪
10.
Study on the Dual-Resolution Approach for Ensemble Kalman Filter
双分辨率集合卡尔曼滤波方法的研究
11.
Bi-regularized Super-resolution Algorithm Based on Lifting Wavelet
基于提升小波双正则化超分辨率算法
12.
Image Super-resolution Based On Wavelet-Contourlet Transform
基于小波-Contourlet变换的图像超分辨率重建
13.
Study on High Resolution Processing Method for Stoneley-Wave of Array Acoustic Logging;
阵列声波测井斯通利波高分辨率处理方法研究
14.
The shorter the wavelength, the smaller the limit of resolution of a microscope.
波长越短,显微镜的分辨限就越
15.
It can compute the seismic resolution limit in time and space(1/4 wavelength) according to seismic apparent dominant frequency and the velocity of targets.
根据地震视主频和目的层的速度可以计算出空间和时间地震分辨率(/波长)限。
16.
Theoretical model calculation shows that the distinquishable bed thickness esti- mated using seismic interval transit time is 1/8~1/4 wave length.
经理论模型计算,用时差估算薄层厚度的分辨率在1/8~1/4波长之间。
17.
This paper first introduces the basic ideas of wavelet transform and multi-resolution analysis.
介绍小波变换和多分辨率分析的基本思想.
18.
Multiresolution Segmentation of Noise Image Based on Wavelet Transform;
基于小波变换的有噪图像多分辨率分割