1) spectrum unscrambling
解谱
1.
The theoretical design of experiment plan was done and the data for spectrum unscrambling were obtained by simulation.
对实验方案进行了理论模拟设计,并获得了解谱必要的理论数据,通过测量不同吸收片后光强的实验方法获得了透射系数,用微扰的数学方法完成了测量谱的解析,复现了测量位置处快脉冲硬X射线辐射场能谱,最后对该方法的可靠性进行了验证。
3) spectral decomposition
谱分解
1.
Comparison and limitations of seismic spectral decomposition algorithms;
地震谱分解算法对比与局限性分析
2.
Applications of Spectral Decomposition Technique to Reservoir Prediction;
谱分解技术在储层预测中的应用
3.
Carbonate cave identification by using a spectral decomposition technique;
基于谱分解技术的缝洞型碳酸盐岩溶洞识别方法
4) mass spectrum analyzing
质谱解析
1.
Five by-products were identified by manually mass spectrum analyzing and mass s.
通过对该反应产物进行人工质谱解析,并结合计算机谱库检索,鉴定出三乙基硼合成反应的5种副产物。
5) spectral decomposition
频谱分解
1.
Application of spectral decomposition for fine seismic structural interpretation in coalfield and gas-bearing property predication of coal seam
频谱分解技术在煤田精细构造解释及煤含气性预测中的应用
2.
This paper presents theory and method of spectral decomposition in detail,and analyzes the fracture-cavern reservoir with forward model and then generalizes the spectrum's character which depends on the varied fracture-cavern's size and fracture's density.
本文详细描述了频谱分解技术的原理和方法,利用模型正演模拟分析缝洞储层,对缝洞尺度和裂隙密度变化频谱特征进行分析和总结,得出溶洞尺度、裂缝密度与最大振幅谱呈同向变化趋势,与最大振幅谱对应频率呈反向变化趋势。
3.
On base of the results,GST is applied to seismic spectral decomposition and seismic sequen.
将S变换引入到地震地层研究中,用广义S变换代替短时Fourier变换或连续小波变换,用于地震数据频谱分解和提取地震旋回特征。
6) spectra analysis
波谱解析
1.
Teaching reform and a questionnaire survey of the course of Spectra Analysis;
《波谱解析》课程教学改革及教学效果调查分析报告
2.
In the teaching reform of Spectra Analysis of Pharmaceutical Engineering,according to the practice of scientific study and production,the teaching methods and contents of spectra analysis such as IR,UV,1HNMR and MS have been reformed with the students' enthusiasm and consciousness enhanced and good results achieved.
在制药工程的《波谱解析》教学过程中,根据科学研究和生产实践的需要,应用多媒体手段,对IR、UV、1HNMR、MS波谱分析内容和教学方法予以改进,提高了学生学习的积极性与自觉性,收到了较好的效果。
补充资料:解吸谱法
分子式:
CAS号:
性质:又称解吸谱法(desorption spectrum method),将试样气体导入预先作成的纯净表面上吸附,再在程序升温条件下,依据压力变化测量升温解吸过程。若抽气速度小于解吸速度,压力呈阶梯状上升,得到积分型解吸谱;若抽气速度大于解吸速度,得到微分型解吸谱。
CAS号:
性质:又称解吸谱法(desorption spectrum method),将试样气体导入预先作成的纯净表面上吸附,再在程序升温条件下,依据压力变化测量升温解吸过程。若抽气速度小于解吸速度,压力呈阶梯状上升,得到积分型解吸谱;若抽气速度大于解吸速度,得到微分型解吸谱。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条