稀释倍数
- 网络Dilution;Dilution Factor;dilution times
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酶活力的测定条件受很多因素的影响,如酶浸提液的pH、酶液稀释倍数、反应温度、作用时间。
It was affected by several factors such as pH , dilution rate , temperature and reaction time .
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AI酶标抗体最佳稀释倍数为1∶100;
Optimal dilution ratio of AI enzyme-labeled antibody was1 ∶ 100 ;
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连接产物最适稀释倍数为5倍;4、promoterⅡ和promoterⅠ。
( 4 ) the products of ligation was diluted to 5 times for preamplification ;
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BOD5样品分析中稀释倍数的确定
Determination of dilute times of samples for analysis of BOD _5
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用TOC值估算含油废水BOD5的稀释倍数
Estimate the Dilution Multiple of BOD_5 with TOC Value in Refinery Effluent
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生化需氧量(BOD5)测定中稀释倍数的简捷确定法
A simple method of estimation of the dilution ratio in bod_5 determination
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医院污水中BOD测定稀释倍数的探讨
Study on sample dilution multiple in determination of BOD in hospital sewage
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新形式下工业废水BOD5稀释倍数的计算
The method of calculating dilution multiple in test BOD_5 of industrial sewage
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BOD5测定中稀释倍数选择的探讨
Discussion of Selection of Dilution Ratio in Determination of BOD5
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BOD5测定稀释倍数选取在医院污水中的应用
Selection of Dilution Multiple for BOD_5 Measurement of Hospital Wastewater
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快速确定BOD5测定中稀释倍数的方法
Method of fast calculating dilute multiple in BOD_5 determination test
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方法:用正常人阴性血清按不同稀释倍数梯度稀释HIV抗体阳性血清后,制备出弱阳性血清。
Methods : Diluting ordinary person ′ s serum by grads ′ multiple , prepared the serum showing HIV-Ab feeble masculine in screening test .
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水样BOD5测定中稀释倍数的正确选取
A Correct selection of the Dilution Ratio of Water Sample to Determine BOD_5
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废水测定中BOD5稀释倍数的选取
The Choice of BOD_5 Dilution Times in Wastewater Determination
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同时,对超滤过程中的工艺条件进行研究,其中物料的稀释倍数15倍、搅拌速率125r/min、操作压力0.15MPa及pH值为7。
The conditions during ultrafiltration is diluting 15 times , stirring rate of 125 r / min , operating pressure 0.15 MPa and the pH value is 7 .
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FAAS测定人发中钙时样品所需稀释倍数的研究
The dilution of sample was investigated when determination of calcium in hair by FAAS
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测定BOD5时计算水样稀释倍数的通式及其求证和运用
The General Formula for Computation of Coefficient of Dilution of Water Sample in the Determination of BOD _5
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本文探讨了稀释倍数影响BOD测定结果的生化机理。
This paper discusses the biochemical mechanism of the influence of dilution multiple on the results of BOD measurement .
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通过对内切酶用量、酶切时间、连接时间、稀释倍数等的研究,建立了适于核桃分析的AFLP银染技术体系。
After systematically study on the main factors involved , an AFLP silver-staining analysis system suitable for walnut genomic DNA was established .
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结果表明,该实验改良可以提高效率和稳定性,不同稀释倍数的医药工业废水所引起四膜虫细胞DNA损伤之间呈现良好的剂量-效应关系,这个结果与流式细胞术的结论一致。
The results showed that the experimental improvement can improve the efficiency and stability , and showed a good dose-effect relationship between dilution ratio and Tetrahymena thermophila DNA damage . This result is consistent with the flow cytometry .
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考察了酸度和模拟高放废液(HLLW)的稀释倍数对萃取分配比的影响。
The influences of acidity and dilution factor of simulated HLLW are studied .
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IWF的最低稀释倍数为100倍;某些最小公倍的等价形式
The limitation dilution was 100 X. EQUIVALENT FORM OF SOME LEAST COMMON MULTIPLES
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结果空白对照能很好地监测污染造成的假阳性,以不同稀释倍数的BCG不但能很好地检测试剂的敏感度,且能对整个实验加以质控。
Results Blank control can monitor polluting positive reaction well and BCG of different rate of dilution not only detect sensitivity of reagents , but control quality of whole experiment .
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研究发现将稀释倍数F校正为F0.82后,计算得出的纤维素酶活性值几乎不受稀释倍数影响。
The study discovered that the dilution ratio almost had no effect on cellulase activity when F value was adjusted to F0.82 .
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举例说明了对地表水中BOD5值的估算和稀释倍数确定的应用。
Some examples were given to show the application in BOD5 value estimation and confirmation of the sample dilution multiple for surface water monitoring .
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定量计算公式的有效性:以cDNA稀释倍数对数值为X轴,以相应目的基因和看家基因的ΔCt为Y轴得到直线的斜率为0.084,可以应用公式2-ΔΔQ。
Effectiveness of quantitative formula : Taking logarithm value of cDNA dilution power as X-axis , Δ Ct of relative objective gene and house-keeping gene as Y-axis , the slope of straight line was 0.084 with the 2 - ΔΔ Q formula .
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鸡卵黄抗体的最佳ELISA操作参数为:包被抗原浓度为7.5μg/ml,封阻剂浓度为2.5%,抗体稀释倍数为1000,酶标二抗稀释倍数为14000;
The optimum ELISA parameters with IgY were that the concentration of antigen and blocking agent was 7.5 μ g / ml , 2.5 % and the dilution multiples of IgY and anti-chicken rabbit antibody-HRP were 1000 and 14000 , respectively .
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根据自身工作实践,介绍了测定水中COD应注意的几个主要问题,如水样pH的调整、溶解氧含量的调整及确定稀释倍数的方法。
According to relevant working experience , some major issues during the measurement of COD content in water are described , like adjustment of PH in water sample , adjustment of content of dissolved oxygen and method of determination of multiple of dilution .
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研究结果表明,稀释倍数不同所引起的BOD测定值不同的原因在于培养体系内食料微生物比F/M值的不同。
The research show that the cause that dilution multiple influences BOD measurement results is the difference in the ratios of food to microorganism ( F / M ) in incubation systems .
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结果实验理想的包被抗体浓度为1μg/ml,血清稀释倍数1∶100,HRP标抗体的最佳工作浓度1∶400。
Results Experiment showed that the optimal concentration of the coating antibody , diluted ratio of serum and McAb with HRP were 1 μ g / ml , 1 ∶ 100 and 1 ∶ 400 , respectively .