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1)  near infrared spectroscopy (NIRS)
近红外光谱学
1.
By combining the near infrared spectroscopy (NIRS) and modern laser techniques based on above principle, a new method fo.
在此基础上,通过结合组织近红外光谱学技术(NIRS)与现代激光技术,研究了一种用近红外光学相干相位阵列调制法探测生物组织非均匀性(肿瘤)的新方法。
2)  Spectroslopy near infrared
谱学近红外光
3)  NIRs
近红外光谱
1.
Rapid determination of moisture in silver carp surimi by near infrared reflectance spectroscopy(NIRS);
利用近红外光谱技术快速测定白鲢鱼糜中的水分含量
2.
Determination of 1000-grain Weight of Paddy Using NIRS Technique
稻谷千粒质量近红外光谱定量分析
3.
A Convenient Measuring System for Sugar Content of Fruits has been designed Based on NIRS Technology,and Least Squire is then used to establish the prediction models,finally the result shows ideal through a series of test.
基于近红外光谱技术设计了一种便携式的水果含糖量检测系统,在特定特征波长应用最小二乘法建立了数学模型,并对其进行了校验,结果比较理想。
4)  near-infrared spectroscopy
近红外光谱
1.
Determination of chemical oxygen demand in wastewater by near-infrared spectroscopy;
近红外光谱法测定废水化学需氧量
2.
Rapid analyze of denatured fuel ethanol by near-infrared spectroscopy(DA7200);
变性燃料乙醇的快速近红外光谱(DA7200)分析
3.
On-line determination for concentrating process of red ginseng alcohol extract using near-infrared spectroscopy;
红参醇提液浓缩过程近红外光谱在线分析方法
5)  Near infrared spectrum
近红外光谱
1.
On-line monitoring quality index of carbon/phenlic resin prepreg cloth by means of near infrared spectrum;
用近红外光谱在线监测炭布/酚醛预浸料的质量指标
2.
Applications of Near Infrared Spectrum Technique for Non-Destructive Measurement of Fruit Quality
近红外光谱分析技术在水果品质无损检测上的应用
3.
A mathematical relation model between liquor near infrared spectrum and liquor alcoholicity was established by use of the combination of discrete cosine transformation (DCT) and BP neural networks, which was a new approach for rapid liquor alcoholicity determination.
采用近红外光谱的离散余弦变换和BP神经网络相结合,建立了白酒近红外光谱与其酒精度之间的数学关系模型,为快速检测白酒的酒精度提供了一种新的方法。
6)  near infrared spectroscopy
近红外光谱
1.
Research on the determination of the alcohol degree and the content of amino acid nitrogen in rice wine by near infrared spectroscopy;
近红外光谱法测定黄酒中氨基酸态氮和酒精度的研究
2.
Identification of wool and cashmere with near infrared spectroscopy technology;
利用近红外光谱技术进行羊毛、羊绒鉴别
3.
Prediction of nicotine in total particulate matter by near infrared spectroscopy;
近红外光谱法预测烟气总粒相物中的烟碱含量
补充资料:红外光谱学
分子式:
CAS号:

性质:应用红外光谱研究分子结构或进行基团分析的学科。研究最广泛的是中红外区(2.5~50μm),它是由分子振动能级间的跃迁加上转动能级间的跃迁引起的,即通常所说的振动光谱。4.0~13.0μm称指纹区,该区吸收光谱很复杂,可反映分子结构的变化。红外吸收光谱具有高度的特征性,每种有机化合物均有特征的红外吸收光谱,因此适用于鉴定有机物、高聚物以及其他复杂结构的化合物。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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