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thermokinetic equation
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  热动力学方程
     Thermokinetic equation, ln[P/(Pm - P)v+1] = ln[P0/(Pm-P0)v+1] + k·t, was established based on the generalized logistic equation.
     根据广义logistic方程,建立了细菌生长过程的热动力学方程:ln[P/(P_m-P)~(v+1)]=ln[P_0/(P_m-P_0)~(v+1)]+k·t.
短句来源
     By using LKB2277 Bioactivity Monitor, we determined the thermogenic power curves of Halobacterium halobium R1, J7, S9 and F9. Thermokinetic equation, ln[ P(1-P/P m) r -1 ]=ln[ P 0(1-P 0/P m) r-1 ]+kt ,was established based on the characteristics of growth curves.
     用 LKB2 2 77生物活性检测系统测定了盐生盐杆菌 R1、J7、S9以及 R1和 J7的融合子 F9生长的产热功率曲线 . 根据曲线的特征 ,建立了古生菌生长过程的热动力学方程 :ln[P· ( 1 -P/Pm) r- 1 ]=ln[P0 · ( 1 -P0 /Pm) r- 1 ]+k· t.
短句来源
     Studies on Thermokinetic Equation of Enzyme-Catalytic Reaction
     酶促反应热动力学方程的研究
短句来源
     The thermogenesis power curves of Brucellas M 5(55010) and 83 981 at 27℃ and 40℃ have been determined. From the thermogenesis power curves,a thermokinetic equation as : ln (P m /P t-1) = ln (P m /P 0-1) - k·t could be established for cell continue growth under limited condition . From this equation, the cell growth constant k were obtained.
     用微量热法测定了布鲁氏菌M5(55010)和83-981在27℃和40℃时的生长发热功率曲线.由这些生长发热功率曲线,建立了细胞有限条件下连续增长热动力学方程:ln(Pm/Pt-1)=ln(Pm/P0-1)-kt从而求出了细菌的生长常数k.这个方程非常适合“S”型的生长发热功率曲线
短句来源
     Due to the character of isothermal microcalorimetry, we can obtain complete thermogenic curves of cell metabolism and thermokinetic equation during metabolic process.
     通过它可获得完整的细胞代谢过程产热曲线及其热动力学方程 ;
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  “thermokinetic equation”译为未确定词的双语例句
     A new chemical method to calibrate the instrument constants of conduction calorimeter, including the cooling constant a of thermal system and the cooling constant β of thermal element which are related with thermal conductivity of the thermal system, has been proposed on the basis of the single parameter or double parameters theoretical model of conduction calorimeter and thermokinetic equation of chemical reaction.
     热导式热量计是热力学研究的重要工具,其量热体系之仪器常数的标定目前所广泛采用的方法是电能标定法,有时也采用化学标定法.前者简单、方便,能满足热静力学与热动力学研究中的需要,但电能标定所得仪器常数与化学反应时的仪器常数不一定完全相同[1],特别是有些热.
短句来源
     Accelerating Rate Calorimeter(ARC) is the newest thermal analysis apparatus developed for thermal hazard evaluation to provide time-temperature-pressure data for chemical reactions taking place under adiabatic conditions. According kinetic equation, this paper has induced the thermokinetic equation of ARC, which is easier to simulate the chemical processing industry compared with Differential Thermal Analysis(DTA).
     从动力学基础方程推导出绝热条件下ARC热分析动力学方程,与传统的DTA动力学方程比较,ARC理论模型更接近于化学过程工业.
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     equation
     方程(之4)
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     For the equation
     我们称方程(?)
短句来源
     Studies on Thermokinetic Equation of Enzyme-Catalytic Reaction
     酶促反应热动力学方程的研究
短句来源
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  thermokinetic equation
It was shown that the thermokinetic equation, g(α)=(AT/q)exp(-E/RT), appeared to connect both laws analyzed.
      
Then the suitable growth thermokinetic equation was established based on the characteristics of growth thermogenic curves.
      
The TG curves were further analyzed by the thermokinetic method to obtain thermokinetic parameters of the different phases during the wood pyrolysis and to derive a thermokinetic Equation.
      
The thermokinetic equation was established for the active recovery and decline phase of metabolism as follows: dP/dt =kmP (1-SP).
      
From the thermogenesis curves, we established the growth thermokinetic equation: dP/dt=km·Pn, the order of growth metabolismn=0, and calculated the mean specific rate constant of multiplication {ie95-1}.
      
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Tian's equation is taken as a theoretical model of conduction calprimerer, and the changing states of a reacting system is described with the extent of reaction. And then thermokinetic equations of the whole system (thermokinetic system) have been derived in the light of nonequilibrium thermodynamics.The rate law of a thermokinetic system and analytical expressions of thermokinetic curves can be derived from the thermokinetic equations respectively. On this theore-tical basis,...

Tian's equation is taken as a theoretical model of conduction calprimerer, and the changing states of a reacting system is described with the extent of reaction. And then thermokinetic equations of the whole system (thermokinetic system) have been derived in the light of nonequilibrium thermodynamics.The rate law of a thermokinetic system and analytical expressions of thermokinetic curves can be derived from the thermokinetic equations respectively. On this theore-tical basis, a new studying method of thermokinetics has been suggested in this paper.

本文根据化学反应热与反应进度的对应关系,导出了热动力学体系的基本方程和热动曲线的解析表达式。并提出了一种新的热动力学研究法。

On the theoretical basis of thermokinetics and the general thermokinetic equations of the n-th order reactions, a thermokinetic method for a variety of fractional order reactions has been established and verified by applying it to 1st order and 2nd order reactions with the resulting basic thermokinetic formulas being quite the same as that in the literature. Various functional tables for related dimensionless parameters in the basic formulas of this method have been worked out by M-340 computer....

On the theoretical basis of thermokinetics and the general thermokinetic equations of the n-th order reactions, a thermokinetic method for a variety of fractional order reactions has been established and verified by applying it to 1st order and 2nd order reactions with the resulting basic thermokinetic formulas being quite the same as that in the literature. Various functional tables for related dimensionless parameters in the basic formulas of this method have been worked out by M-340 computer. The main properties as well as the graphs of some functions have been thoroughly discussed.

根据热动力学基础理论和n级反应通用的热动力学方程,本文建立了各种分数级反应的热动力学研究法.应用M-340计算机编制了研究法基本公式中有关无量纲参数的各种函数表,并深入讨论了有关函数的基本性质及其图象.同时将本文建立的分数级反应研究法应用于整数级反应的热动力学研究,所得结果与文献报道的一、二级反应的无量纲参数法基本公式完全相同,该研究法还可用于判断化学反应的级数.

Microcalorimetry and thermokinetic equations were used to study H2O2 decomposition by beef liver catalase.The catalase reaction obeyed the Michaelis-Menten kinetics,and at 298.15 K and pH 7.0,the Michaelis constant (Km),the turnover number and the molar enthalpy(ΔrHm)of the reaction were 2.36×10-2 mol/L,1.20×104s-1 and-83.67 kJ·mol-1,respectively.The later period of catalase reaction was a first order reaction for H2O2,=6.31×105L·mol-1·s-1 and k1=6.31×10-5/[Eo]s-1,respectively.The catalase reaction obeyed...

Microcalorimetry and thermokinetic equations were used to study H2O2 decomposition by beef liver catalase.The catalase reaction obeyed the Michaelis-Menten kinetics,and at 298.15 K and pH 7.0,the Michaelis constant (Km),the turnover number and the molar enthalpy(ΔrHm)of the reaction were 2.36×10-2 mol/L,1.20×104s-1 and-83.67 kJ·mol-1,respectively.The later period of catalase reaction was a first order reaction for H2O2,=6.31×105L·mol-1·s-1 and k1=6.31×10-5/[Eo]s-1,respectively.The catalase reaction obeyed Ogura mechanism,and the ternary complex decomposition rate constant was 6.00×103s-1.

利用微量热法和热动力学方程研究了过氢化氢酶反应。该反应遵循Michaelis-Menten动力学,298.15K和pH7.0时,其米氏常数、酶转换数以及摩尔反应焓分别为2.36×10-2mol/L、1.20×104s-1和-83.67kJ·mol-1。过氧化氢酶反应后期对底物是一级反应,其总反应速度常数和一级速度常数分别为ko=6.31×105L·mol-1·s-1和k1=6.31×105/[Eo]s-1。该反应服从Ogura机理,其酶-底物三元复合物的分解速度常数为6.00×103s-1。

 
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