activity coefficient
- activity coefficient的基本解释
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[计] 活动系数
- 相似词
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From the results of different coefficient and similar coefficient,Schima superbashowed high total mean different coefficient and low total mean similar coefficient;Castanopsis chinensis showed high total mean different coefficient and media totalmean similar coefficient;Cryptocarya chinensis showed low total mean differentcoefficient and high total mean similar coefficient.
从相异系数和相似系数的计算看,荷木总平均相异系数最大,总平均相似系数最小;锥栗总平均相异系数大,总平均相似系数居中;厚壳桂总平均相异系数最小,总平均相似系数最大。
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Transcriptional activity of ACL recombinants normalized by Renilla was significant difference with pGL3-Basic expect for construct -27 and -15 (P<0.01). Construct -919 contains highest activity. 3 times reduction of transcriptional activity from-919 to -679bp indicated that negative regulation factors located probably in this region. The activity started on construct -73 suggested the basal promoter activity was located within the -73 to +77bp region; Transcriptional activity of IDHβrecombinants was not significantly different between the recombinant -58 and pGL3-Basic. The activity started on construct -82, decreasing with the length of the fragment up to -164 in despite of a bit of fluctuation, and kept increasing from construct -164 up to -279. Thus, the basal promoter activity was located within the -82 to +16bp region, whereas the upstream 197bp conferred maximal transcriptional activity.
采用5'端缺失策略,结合启动子预测结果,分别构建了8个ACL基因和19个IDH3β基因启动子区重组子,将其转染猪PK15细胞系,并利用荧光素酶双报告基因系统检测了它们的活性,结果表明:在所构建的猪ACL基因5侧翼序列的8个重组子中,除pGL-ACL27和pGL-ACL15外,其它重组子的荧光素酶活性与阴性对照均达到极显著水平(P<0.01),表明它们均具有启动子活性,pGL-ACL919活性最强,到pGL-ACL679活性下降了将近3倍,说明从-919bp到-679bp区域可能存在负的调控位点,从pGL-ACL621到pGL-ACL73活性有小幅度下降,到pGL-ACL27活性降到与阴性对照水平无显著差异,表明维持该启动子的基本活性区域位于-73bp到+77bp之间;IDH3β基因启动子活性开始于pGL-IB82,然后虽然有些波动,但是活性一直下降直到-164bp处,之后活性又开始升高,直到-279bp处活性达到最高,这些表明维持该启动子的基本活性区域位于-82bp到+16bp之间,从-82到-279之间的179bp区域具有最高的启动子活性。
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This study is to give a solution for the estimation of flash point for mixtures, the necessity for classification of flammable liquids. The traditional models for predicting flash point of mixtures usually by the activity coefficient approach. However, the parameters of activity coefficient were regressed from phase equilibrium data in the literatures. If there is no such parameter in literatures for the desired mixture, the model cannot predict the flash point oft hat mixture. Thus, this research aims at the improvement of deficiency of the flash point prediction models in the literatures by useing UNIFAC (Universal Quasi-chemical Functional Group Activity Coefficient) equation, Dortmund-UNIFAC equation and Lyngby-UNIFAC equation. In this study, we were aim at the prediction model for miscible mixtures.From the result, it is suggested to use different type of UNIFAC equation to estimast activivity coefficient in the predition of flash point for different mixture type.
易燃液体分类的主要依据参数为闪火点值,因此本研究目的为解决易燃液体中混合物分类时所面临到的闪火点值缺乏的问题,而在过去文献中所提出的闪火点预测模式会使用到活性系数,但这些模式使用到的活性系数均需要相平衡的数据以回归其所需参数,若所欲估算闪火点的混合溶液文献上未有相关参数,则无法有效利用闪火点预测模式估算其闪火点,因此针对文献中现有闪火点预测模式的缺点,利用描述液体混合物活性系数UNIFAC (Universal Quasi-chemical Functional Group Activity Coefficient)方程式、Dortmund-UNIFAC方程式和 Lyngby-UNIFAC方程式,建立发展一闪火点预测模式,而本研究以互溶溶液为对象。
- 更多网络解释 与activity coefficient相关的网络解释 [注:此内容来源于网络,仅供参考]
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activity coefficient:活度系数
式中(称为活度系数(activity coefficient)或活度因子,它表示了溶液中离子间相互吸引和牵制作用的大小. 活度系数的大小与离子浓度,尤其是离子电荷数有关. 为了更好地说明这一问题,引入了离子强度(ionic strength)的概念,并定义为:严格来说,
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activity coefficient:活性系数
活性 activity | 活性系数 activity coefficient | 活性试验 activity test
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activity coefficient:激活系数
Activity 放射性活度,活性 | activity coefficient 激活系数 | actual image point 实际像点
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activity coefficient:活性系数;活度系数
"activity ","活性;活度" | "activity coefficient","活性系数;活度系数" | "activity constant","活性常数"
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mean activity coefficient:平均活度系统
平均活度 mean activity | 平均活度系统 mean activity coefficient | 平均摩尔热容 mean molar heat capacity
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