采用外标面积归一化法进行定量计算。
The quantitative calculation is carried out by external standard and area normalization method.
面积归一化法计算相对含量。
The relative contents in percentage were calculated with Area Normalization Method.
定量方法:面积归一化法。
同时又应用气相色谱归一化法计算其各成分含量。
The content of each constituents was determined by area normalization method.
定性方法为相对保留值法,定量方法为修正面积归一化法。
The relative retention was used as qualitative analysis, and the quantitative analysis was corrected area normalization method.
运用气相色谱面积归一化法确定各个成分的相对百分含量。
The content of relative percentage of each ingredient was determined by the gas chromatography area normalizing.
该方法采用氢火焰离子化检测器,并用面积归一化法进行计算。
This method made use of hydrogen flame ionization detector(FID) and counted by area normalization method.
结果检出41个色谱峰,用峰面积归一化法得出色谱峰的相对含量;
The relative content of each peak was detected by the normalization method of peak area.
该方法采用氢火焰离子化检测器(FID),并用面积归一化法进行计算。
衬度异常法和归一化法的计算模型近于一致,对弱小异常也有一定的识别作用。
Contrast anomaly method and normalization method have the near same calculating model, and can also identify puniness anomalies.
本文还研究了多目标函数问题,采用归一化法和灰色理论方法对目标函数进行了改进。
Besides, it has done some research on the problem of multi-Objective Optimization. Unitary method and gray theory have been introduced to improve on objection function.
用气相色谱质谱联用法对其化学成分进行鉴定,用归一化法计算各组分的相对百分含量。
The components of the volatile oil were separated and identified by GCMS. The relative content of each component was determined by area normalization.
用峰面积归一化法通过化学工作站数据处理系统得出各化学成分在挥发油中的相对百分含量。
Then the contents of the compounds of the volatile oil were determined using the square peak to normalization.
方法通过水蒸气蒸馏,利用GC-MS进行分析,采用相对保留指数对化合物进行定性,用峰面积归一化法进行定量。
MethodsBy steam distillation and GC-MS analysis methods, chemical compounds were analyzed qualitatively using relative reservation index, and analyzed quantitatively by area normalization.
方法采用CO2超临界流体萃取飞机草地上部分的挥发油,GC - MS法鉴定化学成分,归一化法测定各成分相对含量。
METHODS the essential oils were extracted by CO2 supercritical fluid extraction (SFE-CO2) method, then separated and identified by GC-MS.
方法采用水蒸气蒸馏法获得挥发油,经GC - MS技术结合计算机检索对其化学成分进行分离和鉴定,用色谱峰面积归一化法计算各组峰的相对含量。
METHODS The oils were extracted by steam distillation. The chemical compounds were separated and identified by GC-MS. The relative content of each component was determined by area normalization.
重力归一化总梯度法用于研究单个或为数不多的密度不均匀体的分布和位置,已被证明是有效的。
It has been proved that normalized total gravity gradient method can be effectively used to ascertain the existence and exact location of single (or several) nonuniform density body.
介绍中位值法和平均值法数字滤波的原理、特点和实例,给出控制输出的归一化模型,以及软件的总体结构。
The principle and characteristic and example of middle value and average value filter is provided, the uniform model of output control and the flow of software is put forward.
然后利用归一化互相关匹配法和概率支撑法对特征点进行匹配。
Then, normalized cross-correlation matching and probability support matching method are used to match the images feature points.
应用差分能量法和归一化月速率方法处理了江苏省高邮台的地电阻率观测资料。
The ground resistivity data measured at Gaoyou station, Jiangsu province are processed and analysized by using the differences energy and normalized monthly variation rate methods.
等人提出的重力归一化总梯度法是一种利用重力数据来确定场源以及密度分界面的方法。
The normalized total gradient method of gravity presented by V. M. Berezkin et al is a method for determining field source and density interface by means of gravity data.
本文用等效介电常数法计算了镜象波导各模式的归一化截止频率,给出了通用的模式图。
The normalized cut-off frequencies of Epqy and Epqx modes for image waveguide arc investigated by EDC method. A generalized mode chart for image waveguide is given.
采用归一化反距离加权插值法计算纠正后像素点的属性值。
The value of output pixels is calculated by the distance inverse weight method.
方法应用TOPS IS法对数据进行同趋势化和归一化处理,并结合RSR法按医疗质量的好、中、差进行分组。
They dealt with the statistics with TOPSIS in the same trends and normalization and defined good, medium level and poor groups of medical service with RSR.
用归一化总梯度法确定油气上方场源位置;
Normalized total gradient method, which can be used to determine location of magnetic field source above hydrocarbon accumulations;
用归一化总梯度法确定油气上方场源位置;
Normalized total gradient method, which can be used to determine location of magnetic field source above hydrocarbon accumulations;
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