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1)  liquid alkali metals
液态碱金属
1.
Experiments were performed to investigate heat transfer characteristics of liquid alkali metals in a micro-circular enclosure.
本文选用钠钾合金工质来研究封闭循环小通道内液态碱金属的热驱动换热性能。
2)  liquid metals
液态金属
1.
Based on the law of electromagnetic induction,a method to measure the magnetic susceptibility variation of liquid metals was proposed and the instrument was developed.
提出一种基于电磁感应原理的测量液态金属材料磁化率变化的方法并开发相应装置,分析该装置的基本工作原理。
2.
Development of the method to measure the susceptibility of the liquid metals is simply introduced in the paper.
简要介绍了液态金属材料磁化率测量方法的研究进展,着重论述了电子自旋共振和法拉第方法在测量液态金属磁化率中的原理和具体应用。
3.
Measuring methods and theoretical studies of diffusion in liquid metals were introduced.
介绍了液态金属扩散系数的测量方法和理论研究,对比了各种实验方法的优缺点,分析了理论计算对实测结果的偏差原因,并指出了存在的问题和发展方向。
3)  Liquid metal
液态金属
1.
Overview on viscosity of liquid metals;
液态金属粘滞性的研究进展
2.
A simulation on rapid solidification of liquid metal Ga;
液态金属Ga的快速凝固模拟
3.
Numerical calculation for magnetic flux density and electromagnetic pressure under dual frequency electromagnetic shaping of liquid metal;
液态金属双频电磁成形中磁感应强度和电磁压力的数值计算
4)  liquid metal In
液态金属In
1.
Simulation study of microstructure transition of liquid metal In during solidification processes;
液态金属In凝固过程中微观结构转变的模拟研究
5)  alkali metal and liquid ammonia solution
碱金属液氨溶液
1.
According to the main ideas of "Hole Theory "and some experimental facts , the articl expounds the super-conductivity of alkali metal and liquid ammonia solution, the stability of dynamics and the main physical and chemical characteristics of solid sodium - liquid ammonia double split-phase diagram.
以“空穴理论”为基本观点,根据有关实验事实,阐述了碱金属液氨溶液的超常导电性、动力学稳定性、Na_(g)-NH_3(?)双组分相图等主要物化特性,在此基础上提出具有电子迁移和离子迁移双重导电性能的金属非水溶液体系为第三类导体的新概念。
6)  liquid metal Ga
液态金属Ga
1.
A simulation study for the effects of cooling rate on evolution of microstructures during solidification of liquid metal Ga;
冷速对液态金属Ga凝固过程中微观结构演变影响的模拟研究
补充资料:非碱金属离子传感器
分子式:
CAS号:

性质:是一类测定非碱金属阳离子和阴离子的光导纤维化学传感器。测定机理大多依据离子与固定化试剂相生成有色、荧光络合物或造成荧光猝灭来进行测定。如将8-羟基喹啉-5-磺酸固定在离子交换膜上,因其与Mg2+、Zn2+、A13+和Cd2+形成1:1荧光络合物,可对上述离子浓度进行测定。

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