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1) concurvity
共曲线性
1.
AIM: To explore the effect of concurvity of generalized additive models (GAMs) in the study of air pollution and human health and to diminish the influence of concurvity.
目的:针对大气污染与健康关系研究中拟合广义 可加模型时的共曲线性现象进行研究并试图减小其影响。
2.
The author introduced GAM, meanwhile he discussed the influence of outliersin Y space and concurvity to the result.
本文在研究广义可加模型的基础上对用此模型分析数据所出现的异常点的影响、共曲线性问题进行了较深入的研究,并介绍了几种克服方法,同时给出了医学应用的实例。
2) conjugate curve
共轭曲线
1.
New design method of conjugate curve based on Willis theorem about the additive barof instantaneous center curve;
基于Willis定理的瞬心线附加板共轭曲线设计的新思路
2.
A mathematical model for conjugate curves of defined original curves was set up through analysis of intermeshing mechanism of counter rotating twin screw extruders.
通过对双螺杆挤出机啮合机理的分析 ,建立了确定曲线的共轭曲线的数学模型 ,并且讨论了作为端面曲线的代数条件。
3.
This paper was based on the theory of indexing cam, applied the theory of engagement of plane conjugate curve, established the geometrical model of plane cam reducing mechanism.
以分度凸轮理论为基础,运用平面共轭曲线啮合原理,建立了的平面凸轮减速机构的几何模型。
3) Coexistence curve
共存曲线
1.
The coexistence curves (T, n) (T, n are temperature and refractive index, respectively) of water/l,4-di(2-ethyl-l-hexyl)sulphosuccinate(AOT)/decane and dimethylacetamide (DMA)/AOT/octane with different droplet sizes were determined by measurements of refractive indexes of coexisting phases at constant pressure for various temperatures in the critical regions.
本文采用“折射率法”测定了具有不同液滴尺寸的含水微乳体系(水/AOT/正癸烷)和非水微乳体系(DMA/AOT/正辛烷)的温度-折射率(T,n)共存曲线,根据标准曲线将其转化为温度-体积分数(T,φ)和温度-有效体积分数(T,ψ)共存曲线,并由共存曲线推导出临界指数β,指前因子B,Wegner校正项B_1及共存曲线直径ρ_d。
2.
Coexistence curves of (T-n) (T and n are temperature and refractive index, respectively) for {N,N-dimethylaccetamide(DMA)/sodium bis(2-ethylhexyl)sulfosuccinate(AOT)/n-octane} nonaqueous microemulsion systems with various molar ratios ωs of DMA to AOT have been determined by the measurement of refractive index.
采用折射率法测定了非水微乳体系{N,N-二甲基乙酰胺(DMA)/二(2-乙基己基)琥珀酸酯磺酸钠(AOT)/正辛烷}在不同DMA与AOT摩尔比ωs时的温度-折射率(T-n)共存曲线,并根据曲线推导出临界指数β和指前因子B。
3.
Coexistence curves of (T-n) (T is temperature and n is refractive index) for two systems were determined by the measurements of refractive indices of coexisting phases.
采用折射率法在较宽温度范围内测定两个体系的温度-折射率(T-n)共存曲线,利用标准曲线法将其转化为温度-摩尔分数(T-x)和温度-体积分数(T-准)共存曲线,求得临界指数β、指前因子B、Wegner校正项因子B1及与共存曲线直径ρd相关的参数。
4) resonanance curye
共振曲线
5) colinearity
共线;共线性
6) linearity curve
线性曲线
补充资料:机械原理:共軛曲线
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
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