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single-substrate
相关语句
  单基板
     Discharge Process Simulation of Discharge Cells in Single-substrate AC-PDP and Design Optimization of X,Y Electrodes Separation
     单基板彩色AC-PDP放电单元模拟及极间距离的优化计算
短句来源
     Based on the particle balance equations, a two-dimentional numerical model for simulating the discharge cell of a single-substrate color AC plasma display panel (SSAC-PDP) is introduced.
     介绍了基于粒子流运动连续方程建立的二维单基板彩色AC-PDP放电单元的数值计算模型。
短句来源
     This technology is particularly attractive for making single-substrate displays and also has potential for a double-layered guest-host display and a flexible display using IPS LCDs.
     该技术特别引人注目之处在于制作单基板显示器,同时它也具有实现双层宾主显示和IPS-LCD柔性显示的潜在应用。
短句来源
  “single-substrate”译为未确定词的双语例句
     Microcalorimetry Applied to the Study of Product Inhibition of Single - substrate Enzyme - catalyzed Reactions
     微量热法研究单底物酶促反应的产物抑制作用
短句来源
     Thermokinetics of arginase - catalyzed hydrolysis of L - arginine was studied by microcalorimetry, and the reaction product, L - ornithine, was established as a competitive reversible inhibitor. At 298.15K and pH 9.4, the Ki value for L - ornithine was 1. 22×10-3mol ·L -1. The reliability of this method for thermokinetics of single - substrate product - inhibited enzyme - catalyzed reactions has been verified by the experimental results.
     用微量热法研究了精氨酸酶催化水解L-精氨酸的热动力学,确定水解产物L-鸟氨酸属于竞争性可逆抑制剂,298.15K和pH 9.4时L-鸟氨酸与精氨酸酶作用的抑制常数K_i=1.22×10~(-3)mol·L~(-1). 实验结果验证了本文有产物抑制的单底物酶促反应热动力学研究法的正确性.
短句来源
     A Two-dimensional Numerical Model for the Discharge Cell of a Single-substrate Color AC-PDP
     单基扳彩色AC-PDP放电单元的二维数值模拟
短句来源
     Studies on Single-Substrate Enzyme-Catalyzed Reactions and Analysis of Transition State by Microcalorimetry
     微量热法研究单底物酶促反应的热力学和动力学性质及过渡态的分析
短句来源
     Multi-substrate systems were more congenial to the growth of bacteria than single-substrate systems.
     初始底物浓度可影响细菌生长速率,底物浓度过低或过高均不利于细菌生长。
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  相似匹配句对
     Single thinking
     思维单一是缺陷
短句来源
     from single to unity;
     从单一到统一;
     single-molecule imaging
     单分子显像
短句来源
     Single-electron device
     单电子器件
短句来源
     FCB Substrate
     FCB基板
短句来源
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  single-substrate
Electrophoretic surveys of two lizard species were used to test hypotheses that relate levels of enzyme variability to enzyme function (single-substrate versus multiple-substrate enzymes, regulatory versus nonregulatory enzymes).
      
The boundaries of the zone where double-limited growth occurs can be clearly defined from both cultivation data and cellular composition and they can be also predicted from growth yield data measured under single-substrate-limited conditions.
      
Transmittances of 0.7 over specific wavelength bands were achieved with resistivities as low as 6.0×10-6?Ω?cm, almost two orders of magnitude lower than that of the best single-substrate thin films, such as indium tin oxide.
      
Single-substrate kinetics indicate that the specific growth rate of the yeast and the specific ethanol productivity on glucose as the substrate was greater than on xylose as a substrate.
      


Enzymatic kinetics was studied chemokinetically by using an in-termittent reactor with single substrate concentration , and depletion ofenzymatic reaction to substrate concentration in the reactor. RuBPC ofwheat (Triticum aestivum) was studied with the new way. It was found thatK_m(CO_2)=14.4μmol·1~(-1), V_(max)=516·mol CO_2·mg~(-1)·chl·h~(-1). The results areconsistent with published data. The new method is simpler and makes less errorthan the old ones.

根据化学动力学原理,采用单一浓度,间歇式反应器,利用酶促反应对反应器中底物浓度的自动耗减特性进行了酶动力学研究,并以小麦的RuBP羧化酶为例测定出Km(CO_2)=14.4μmo1.1~(-1),Vmax=516μmol CO_2.mg_(-1)Ch1.h~(-1),与前人用常规方法测定的结果基本一致,但与常规方法相比,此方法可以大大简化测定手续,减少系统误差。

According to the assumptions of single-substrate enzymatic reaction with substrate inhibition,a kinetic model(eq.11)for the growth of cells from Yeast Culture forage additive,provided by Dia- mond V Mills,Inc.,is put forward in this paper.This kinetic model can be used to predict the ex- perimental results quite well,and provides a theoretical foundation for the scale-up of the produc- tion of this kind of forage additive.

按照具有基质抑制的单底物酶反应假设,推导了美国 Diamond V mills 公司 Yeast Culture 饲料添加剂菌体生长的动力学模型。该模型能够很好地预见实验结果,为扩大培养该种饲料添加剂提供了理论依据。

The thermokinetie equation in the enzyme-catalytic reaction of the single substrate is suggested from the integral of the rate equation and the relationship between the variation of energy and the amount of reactants in the reaction and is tested with the hydrolysis reaction between arginine and arginase. The calculated values of the Michaelis constant K_m and the maximum rate V_(max) are 4.98×10~(-3)mol/L and 2.33×10~(-5) mol/L·s, respectively, in agreement with those in the literature.

由酶促反应速率方程积分式和酶促反应中能量变化与物质参与反应量的关系推出了单底物酶促反应的热动力学方程。并用精氨酸的酶促水解反应进行了验证,求出的米氏常数K_m和最大速率Vmax与文献值相符。

 
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