1) electric control series
电控序列
1.
According to analysis of electric control launching system of aerodynamic non-balance torpedo launcher,a petri net about electric control series is gotten.
以气动不平衡式鱼雷发射装置电控发射系统作为研究对象,针对电控发射系统的电控序列建立了petri网,得到标识可达树仿真结果,并以此对电控发射系统的可靠性进行分析评估。
2) regulatory sequence
调控序列
1.
Objective To analyze different mutations in regulatory sequence of prolactin (PRL) gene during the formation of 17 beta-estradiol(E_ 2 )-induced prolactinoma in eutopic and ectopic pituitary of rats.
目的观察17-β-雌二醇(E2)诱发大鼠原位和移植于肾囊的异体垂体形成催乳素瘤的过程及原位和移植垂体催乳素(PRL)基因调控序列突变的差异性。
2.
To reveal the infection mechanism of white spot bacilliform virus,the regulatory sequence upstream was cloned into the luciferase reporter vectors by the putative DNA polymerase from the genome of the virus.
为了揭示对虾白斑杆状病毒的致病机理,将该病毒基因组中推测的DNA聚合酶上游调控序列克隆进荧光素酶报告基因载体中,以便寻找一个能表达该病毒基因的细胞系统。
3) Regulation sequence
调控序列
1.
Cloning and analysis of the human CCR5 5′ flank regulation sequence and its motifs;
人CCR55′侧翼调控序列克隆测定及基序分析
4) clock control sequence
钟控序列
1.
By means of the triad-tree theory in graph theory,a sequence in GF(3) is transformed from a sort of clock control sequence in GF(2),and its longest pattern is no more than 2,its linear complexity is higher and its stochastic is more ideal.
利用图论中的三元树理论将GF(2)上的一类钟控序列构造成GF(3)上的最长游程仅为2的序列,从而获得了一个线性复杂度更高,随机性更强的新序列。
6) phase-controlled sequences
相控序列
1.
The key idea of the new design is to use the analytical method of shift sequences to improve phase-controlled sequences in theory and use interleaved sequences to be basic sequences instead of the original sequences with the two-level autocorrelation function to construct a set of long sequences with the desire properties.
这种设计的关键之处在于利用移位序列分析法在理论上对相控序列进行改进,使用交织序列做基础序列代替原来的理想自相关序列,再利用具有理想自相关性的序列和相应的移位序列一起得到新伪随机序列。
补充资料:电控光散射效应
分子式:
CAS号:
性质:当一细束光通过粗晶透明铁电陶瓷薄片时,透射光以一定的角度分布向前散射,且此角度分布依赖于陶瓷极化轴的取向(即依赖于剩余极化的方向),因此,用施加电场的方法改变陶瓷极化轴的取向时,就可改变和控制散射光强度和角度分布,这就是电控光散射效应。利用此效应可制成光开关器件。
CAS号:
性质:当一细束光通过粗晶透明铁电陶瓷薄片时,透射光以一定的角度分布向前散射,且此角度分布依赖于陶瓷极化轴的取向(即依赖于剩余极化的方向),因此,用施加电场的方法改变陶瓷极化轴的取向时,就可改变和控制散射光强度和角度分布,这就是电控光散射效应。利用此效应可制成光开关器件。
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