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1)  Resonance light scattering(RLS)
共振光散射(RLS)
1.
In the presence of sodium dodecyl sulphate(SLS),the complex anion 2-formed by KI and Hg2+ combined with methyltriphenylphosphonium bromide(MTPB) to form a ion-association complex,which made resonance light scattering(RLS) intensity to increase evidently.
在十二烷基硫酸钠(SLS)存在条件下,KI和Hg2+形成的络阴离子[HgI4]2-与甲基三苯基溴化鏻(MTPB)结合形成的离子缔合物能使共振光散射(RLS)光谱强度明显增强,据此建立了测定汞的新方法。
2)  Resonance Light Scattering
共振光散射(RLS)
3)  Resonance Light Scattering (RLS) Immunoassay
共振光散射(RLS)免疫分析方法
4)  resonance light scattering
共振光散射
1.
Resonance light scattering of 1-hydroxypyrene-brilliant green-sodium dodecylbenzene sulfonate system and its analytical application;
1-羟基芘-灿烂绿-十二烷基苯磺酸钠体系的共振光散射光谱及分析应用
2.
A study on interaction of zincon with proteins by resonance light scattering measurements;
锌试剂-蛋白质体系的共振光散射光谱研究
3.
The Application of Resonance Light Scattering Technique in the Environmental Analysis;
共振光散射技术在环境分析中的应用
5)  Resonance light-scattering
共振光散射
1.
Study on resonance light-scattering of histene-DNA and its application;
组蛋白-DNA共振光散射法的建立及应用
2.
Determination of nucleic acid by a resonance light-scattering technique with water-soluble schiff base C_(13)H_(22)NO_6;
水杨醛氨基葡萄糖席夫碱C_(13)H_(22)NO_6共振光散射法测定DNA
3.
Study on the resonance light-scattering spectroscopy of the triple system of the Fe(bpy)(phen)SO_4-myristyldyridinium bromide-BSA;
Fe(phen)(bpy)SO_4-溴代十四烷基吡啶-蛋白质三元体系共振光散射光谱的研究
6)  resonance light scattering (RLS)
共振光散射
1.
Research was conducted on the spectral characteristics of resonance light scattering (RLS) of colloidal silverchloride, with factors including the effects of time and order of reagent addition, as well as effects of silver nitrate,ethylene glycol, and nitric acid concentrations on scattering intensity of resonance light.
研究了氯化银胶体的共振光散射光谱特征,讨论了硝酸银用量、乙二醇用量、硝酸用量、时间及加入顺序对共振光散射强度的影响。
2.
Since its simplicity and high sensitivity, resonance light scattering (RLS) technique, developed more than ten years ago, has attracted considerable attentions and become widely applicable in the determination of nucleic acids, proteins, carbohydrates, metallic ions, drugs, surfactants, nanoparticles, bacteria etc.
共振光散射(RLS)分析技术是二十世纪90年代发展起来的,因其简单、灵敏度高而引起了人们的广泛兴趣,已经应用于核酸、蛋白质、糖类等生物大分子、金属离子、药物、表面活性剂、纳米离子和细菌等的分析。
补充资料:弹性散射和非弹性散射
弹性散射和非弹性散射
elastic scattering and inelastic scattering
    使用粒子间碰撞来研究粒子的性质、相互作用和内部结构的两种情况。如果碰撞过程中两粒子间只有动能的交换,粒子类型、其内部运动状态和数目并无变化,则称为弹性散射或弹性碰撞。如果碰撞过程中除了有动能交换外,粒子的数目、类型和内部状态有所改变或转化为其他粒子,则称为非弹性散射或非弹性碰撞。
   散射过程的研究对于了解许多物理现象具有很重要的意义。例如E.卢瑟福对a粒子被物质散射的研究,提出原子的有核模型;J.弗兰克和G.L.赫兹的电子与原子碰撞实验证实了N.玻尔的定态假设;建造高能加速器就是利用被加速粒子的散射过程来研究粒子的性质、相互作用和相互转化的规律。60年代末到70年代初利用高能轻子对质子和中子的深度非弹性散射的实验,发现质子和中子内部存在点状结构。
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