1) reaction charge
反应电荷
2) Charge transfer reaction
电荷转移反应
1.
METHODS: To utilize visible spectrophotometry based on the charge transfer reaction between clarithromycin as donor and alizarin as acceptor in alcohol-water solution.
方法 :利用克拉霉素与茜素在水 醇介质中发生电荷转移反应 ,形成电荷转移络合物 ,采用可见分光光度法测定 。
2.
A new spectrophotometric method for the determination of ve-rapamil is based on the charge transfer reaction with tetrachlorobenzoquinone inalkaline solution.
研究了电荷转移反应及其条件,以及该方法在制剂测定中的应用。
3.
Methods: To utilize visible spectrophotometry based on the charge transfer reaction between josamycin as donor and alizarin red as acceptor in alcohol-water solution.
方法:利用交沙霉素与茜素红在水-醇介质中发生电荷转移反应,形成电荷转移络合物,采用可见分光光度法测定。
3) charge exchange reaction
电荷交换反应
1.
In this paper is studied the antiproton-nucleus charge exchange reaction A (p-, n) B under the distorted wave impulse approximation.
本文研究在扭曲波冲量近似下,反质子与原子核的电荷交换反应A(p,n)B。
2.
Under the distorted wave impulse approximation, we discuss the antiprotonnucleus charge exchange reaction A B and the inelastic scattering ACalculations are presented for the differential cross sections of 12C 12B,18O 18N and 18O 18O at antiprotion energies 179.
在扭曲波冲量近似下,讨论了反质子与核的电荷交换反应A(p,n)B和非弹性散射A(p,p’)A。
4) double charge exchange reaction
双电荷交换反应
1.
The double charge exchange reaction on 18~O(π+, π- )"Ne is analyzed by using theGlauber theory and the differential cross section at the region of the 6-resonance (Tπ =164 MeV) is calculated in a model which the 18O and 18Ne are assumed to consist of twovalence nucleons and a core of four a-particles.
应用Glauber理论,对(18)O(π~+,π~-)、(18)Ne双电荷交换反应进行分析,假定(18)O和(18)Ne由2价核子和4α核心组成,计算了共振区Tx=164MeV的微分截面。
5) SCX reaction
单电荷交换反应
1.
The SCX reaction 13C (π+,π0)13N at Tx = 150 MeV and 165 MeV are analyzed by using the frame of the Glauber theory.
在Glauber理论框架下,对13C(π+,π0)13N单电荷交换反应(Tx=150MeV和165MeV)进行分析,核波函数假定由价核子和12C核心组成,核心部分以独立a集团模型描述。
6) Charge Transfer Reaction
荷移反应
1.
Spectrophotometric Determination of Tryptophan Based on Charge Transfer Reaction;
色氨酸与2,3-二氯-5,6-二氰-1,4-苯醌荷移反应的研究
2.
Study on Charge Transfer Reaction and Fluorescence Characteristic of Ofloxacin;
左氧氟沙星的荷移反应及荧光光谱行为研究
3.
Charge Transfer Reaction of Cysteine Hydrochloride with Tetrachlorobenquinone;
盐酸半胱氨酸和四氯对苯醌的荷移反应
补充资料:反应电荷
分子式:
CAS号:
性质:进行一单位的电极反应或电池反应时,电极上或电池中所通过的电量nF。n为反应式中的电子数,F为法拉第常数。对于电极上的氧化反应,nF可选正值;则还原反应nF有负值。反应电荷概念的运用使能斯特方程中第二项的正负号选择得以合理解决。
CAS号:
性质:进行一单位的电极反应或电池反应时,电极上或电池中所通过的电量nF。n为反应式中的电子数,F为法拉第常数。对于电极上的氧化反应,nF可选正值;则还原反应nF有负值。反应电荷概念的运用使能斯特方程中第二项的正负号选择得以合理解决。
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