1) frequency fogging
频率互换
2) exchanging frequency of the electrodes
电极互换频率
1.
The synthesis mechanism of Al_(13)in the process of electrolysis was discussed,the effects of electrolysis voltage,the original concentration of Al~(3+),the circulation mixing rate of the electrolyte and the exchanging frequency of the electrodes on the synthesis velocity of Al_(13),ratio of Al_(13)in total Al(Al_T)and the electrolysis time were studied.
本工作对电解过程中Al_(13)的形成机理进行了探讨,并研究了电解电压、Al~(3+)的初始浓度、电解液的循环搅拌速度和阴阳电极的互换频率对Al_(13)的合成速度、Al_(13)占总铝的比率及电解所需时间的影响,得出了电解法制备Al_(13)的最佳工艺条件:电极互换频率为1次·min~(-1)、电解液中Al~(3+)的初始浓度为0。
3) interest rate swap
利率互换
1.
Research on interest rate swaps;
关于利率互换的分析和研究
2.
Software of Pricing Model for Interest Rate Swaps on The Basis of Zero Coupon Bonds in China;
关于利率互换定价模型的设计与软件开发
3.
Pricing of Interest Rate Swap under Default Risk;
违约风险条件下利率互换合约的定价
4) interest rate swaps
利率互换
1.
This paper has some specific examples to analyze in detail the ways of utilizing currency swaps and interest rate swaps,thus benefit from them.
本文通过具体的例子,详细分析了筹资者利用货币互换和利率互换的方法以及所能得到的好处。
2.
The article studied the motivation for a company to use interest rate swaps under the condition of open economy.
在开放经济条件下,以公司为背景,对利率互换的使用动机进行研究。
5) cross power
互换功率
6) frequency conversion
频率变换
1.
The lithium thioindate(LiInS_2) crystal is an attractive material,which can be widely used for nonlinear optical frequency conversion in the infrared region.
LiInS2晶体是一种极具吸引力的晶体,可以应用于红外区域的非线性光学频率变换。
2.
The theoretical calculation of frequency conversion in a new bismuth triborate (BiB3O6) crystal with high nonlinear optical (NLO) coefficient is present.
理论计算了新型高非线性光学系数三硼酸铋晶体(BiB3O6)中的频率变换。
3.
This paper presents a new type of low noise frequency conversion circuit based on the research of phase noise conception, generation as well as relativity measurement method.
本文在对相位噪声的概念、产生及其相关测量方法研究的基础上,设计出一种低噪声频率变换电路。
补充资料:频率计量(见时间频率计量)
频率计量(见时间频率计量)
frequency metrology: see time and frequency metrology
口n IQ liliang顷率频率计皿(f比quency metrolo盯) 计t。见时闰
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条