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1)  Charge transfer effect
电荷转移效应
2)  charge transfer efficiency
电荷转移效率
1.
The effect of neutron irradiation on the charge transfer efficiency of the linear CCD(charge coupled device) is studied.
研究结果表明:在1012-1013cm-2中子注量范围内,该器件的电荷转移效率(CTE)随辐照中子注量的增加而线性下降;电荷转移效率的下降与电荷包在沟道中的转移时间及转移电荷包的电量有关。
2.
By using two-dimensional device simuation software MEDICI, the variable regularity of charge transfer efficiency (CTE) for charge couled device(CCD) is simulated under the conditions that CCD is irradiated by neutron beam with the energies of 1 MeV and 14 MeV, respectively,and in dose range of 3× 1013 -5 × 1014 cm-2.
运用半导体器件二维数值模拟软件MEDICl,分别对能量为1 MeV和14 MeV的中子,在注量范围为3×1013~5×1014 cm-2辐照下,对CCD器件电荷转移效率的变化规律进行数值模拟研究。
3)  charge packet transfer efficiency
电荷包转移效率
4)  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。
5)  transferred-electron effect
转移电子效应
1.
The microcosmic process of the formation and the development of a high-field domain are explored by the theory of the multi-energy valley structure associated with transferred-electron effect and domain kinetics.
应用多能谷结构的转移电子效应结合畴动力学分析探讨了高场畴的形成和发展的微观过程,在此基础上把非线性光导开关中观察到的重要特征现象——电流丝与气体放电中的放电现象相比较,合理地提出了一个重要的物理模型:畴电子崩。
2.
It is shown that the breakdown of PCSS fabricated from indirect band-gap semiconductors is determined mainly by limited conduction of trap filling, but for PCSS\'s fabricated from materials that exhibit the transferred-electron effect, such as GaAs, breakdown of the PCSS is caused mainly by the negative-resistance-induced electric field enhancement at the anode boundary.
基于转移电子效应对GaAs光电导开关击穿电压进行了理论计算,计算结果与实验相一致。
6)  Charge transfer
电荷转移
1.
Determination of Phosphate by Charge Transfer Spectrophotometry;
磷酸盐的电荷转移反应分光光度法测定
2.
Charge Transfer Induced Surface-Enhanced Raman Scattering in Silver Colloid;
银溶胶中电荷转移诱导的表面增强拉曼光谱研究
3.
Based on the semiclassical model of the charge transfer,electric charge transfer constants of the tr.
根据电子转移的半经典模型计算了苯并菲及氟和羟基取代苯并菲化合物分子的电荷转移常数,氟和羟基的引入使正电荷转移速率常数明显减小,即不利于正电荷的传输,对负电荷的传输速率常数影响不大。
补充资料:正常人白细胞转移因子 , 白细胞转移因子,转移因子
药物名称:转移因子

英文名:Transfer Factor

别名: 正常人白细胞转移因子 , 白细胞转移因子,转移因子
外文名:Transfer Factor ,TF
适应症: 为细胞免疫反应增强剂,能将细胞免疫活性转移给受体,以提高受体的免疫功能。
临床上用于治疗某些抗生素难以控制的病毒性或酶菌性细胞内感染(如带状皰疹、流行性乙型脑炎、白色念珠菌感染等)。对恶性肿瘤可作为辅助治疗剂,对自体免疫性疾病也有一定治疗作用。
用量用法:
一般采用皮下注射,注于上臂内侧或大腿内侧腹股沟下端,1次注射1支,每周1~2次,1个月后改为每2周1次。对带状疱疹,一般只需注射1次。
规格: 注射液:每支2ml,相当于1×1000000000白细胞提取物(上海产),北京产则相当于5~10×1000000000.
注:严禁静脉给药.



类别:免疫调节剂
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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