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1.
This method is known as time-domain IP.
这种方法称为时间域激发极化法
2.
Induced polarization surveys are made by the time-domain method, using the decay phenomenon, and by the frequency-domain method, using the resistivity contrast phenomenon.
激发极化发就是利用衰减现象来进行时间域方法测量,利用电阻率差异现象来进行频域方法测量。
3.
THE NUMERICAL ANALYSIS ON THE RESPONSE OF INDUCED POLARIZATION RELAXATION TIME SPECTRA WELL LOGGING
激发极化弛豫时间谱测井仪探测特性理论分析
4.
Experimental Study on Induced Polarization Potential of Rock Frequency Domain
岩样频率域激发极化电位的实验研究
5.
The Research on Some Key Technologies and Theory of Frequency Domain IP Decoupling by Chop-wave;
频率域激发极化斩波去耦关键技术与理论研究
6.
Application of Induced Polarization Method in Yingshan Deposits Exploration
激发极化法在银山矿区找矿中的应用
7.
THE APPLICATION OF TEM AND IP METHOD TO MENGXING Pb-Zn DEPOSIT
瞬变电磁法、时间域激电法在勐兴铅锌矿的应用
8.
Modeling of Time-domain SIP Method in Consideration of Electromagnetic Effect
考虑电磁效应的时间域谱激电法数值模拟研究
9.
The Software System about Two-dimension Forward of Dc Resistivity and Induced Polarization;
直流电阻率法和激发极化法二维正演软件系统
10.
The Math Model Serching for Fire Source by Parallactic Polarizability of Homogeneous Medium;
单一介质热源激发极化法探测的数学模型
11.
Application of induced polarization method to Liushengdian Mo deposit of Antu,Jilin
激发极化法在吉林安图刘生店钼矿的应用
12.
The region in a transistor between the emitter and the collector.
晶体管中发射极和集电极之间的区域。
13.
Temporal Response Properties of Electrically Evoked Potentials Elicited by Penetrative Optic Nerve Stimulation;
基于刺入式电极视神经电刺激诱发视皮层响应的时间特性研究
14.
Secondly, to inspire the imagination and creation in the area of new city space against the back-ground of globalization.
其次,在全球化发展背景下,于新城市空间领域激发想象力与创造力。
15.
Observation of relaxation time for polarization clusters in BaTiO_3 near TC by photon correlation spectroscopy
光子相关谱法测量BaTiO_3中极化团簇的弛豫时间
16.
STUDY ON SPATIAL OPTIMIZATION OF REGIONAL DEVELOPMENT OF HENANPROVINCE IN THE NEW PERIOD;
新时期河南省区域开发的空间优化研究
17.
Spatio-temporal Visualization Method of Spatial Interaction between Regions
区域间相互作用大小的时空可视化方法
18.
Pulse Shaping by the Electro-Optic Effect in Chirped Periodically Poled Lithium Niobate and Adaptive Time-Domain Pulse Shaping System;
基于啁啾极化铌酸锂晶体电光效应和自适应时域脉冲整形方法