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particle number造句

"particle number"是什么意思   

例句與造句

  1. the particle number increased with surfactant and initiator concentration though the data are insufficient for evaluating the nature of these relationships .
    粒子數(shù)隨表面活性劑和引發(fā)劑的濃度而增加,雖然數(shù)據(jù)還不足以評價這些關(guān)系的本質(zhì)。
  2. mean leading particle number and mass effects
    平均領(lǐng)頭粒子數(shù)與質(zhì)量效應(yīng)
  3. determination of impurities particles number in polyvinyl chloride paste resins
    聚氯乙烯糊樹脂中雜質(zhì)粒子數(shù)測定方法
  4. the result shows that the particle numbers in the two states oscillate with time due to the asymmetric perturbations dependent on the coordinate
    結(jié)果表明,在與坐標(biāo)有關(guān)的不對稱的微擾的作用下,兩個態(tài)上的粒子數(shù)是隨時間振蕩的。
  5. on the other hand, a thermal number state is defined in the coordinate representation . then the position variance and the variance of the particle number are given in the r |-? space-time
    另一方面本文構(gòu)造了熱化粒子態(tài),并在-時空中給出了熱化粒子態(tài)的波函數(shù),幾率密度,以及其位置的變化和粒子數(shù)目的變化。
  6. It's difficult to find particle number in a sentence. 用particle number造句挺難的
  7. bose-einstein condensation, although more than 70 years old, is bringing to the science fresh air . chapter ii gives the relation between the critical temperature and the particle number through a direct numeric summary
    第二章主要用數(shù)值求和的方法研究了理想氣體玻色-愛因斯坦凝聚轉(zhuǎn)變溫度與粒子數(shù)的關(guān)系。
  8. from the number of particles in two near bins of the histogram, we can calculate the relative fluctuation of particle number . these pictures on relative fluctuations are the same as those of well-known soc systems
    在直方圖中每一個小間隔內(nèi)都有一定數(shù)量的粒子,利用相鄰間隔內(nèi)粒子的數(shù)目我們可以計算出粒子數(shù)的相對起伏。
  9. for the transition induced by the asymmetric perturbations is double-direction, the particle number in the core state is always less half of the total particle number . so, from the point of view of average over time, it is a coexisting state of rotating and without rotating that is formed . this state which is in the josephson tunneling regime of the macroscopic quantum tunneling is a quantum self-trapping state
    由于不對稱的微擾引起的躍遷是雙向的,使得核心態(tài)上的粒子數(shù)總是少于總粒子數(shù)的一半,因此從時間平均的角度看,形成的是旋轉(zhuǎn)的和不旋轉(zhuǎn)的態(tài)共存的狀態(tài),而且處于宏觀量子隧穿的約瑟夫森隧穿區(qū)域中,是量子自束縛狀態(tài)。
  10. for the transition induced by the asymmetric perturbations is double-direction, the particle number in the core state is always less half of the total particle number . so, from the point of view of average over time, it is a coexisting state of rotating and without rotating that is formed . this state which is in the josephson tunneling regime of the macroscopic quantum tunneling is a quantum self-trapping state
    由于不對稱的微擾引起的躍遷是雙向的,使得核心態(tài)上的粒子數(shù)總是少于總粒子數(shù)的一半,因此從時間平均的角度看,形成的是旋轉(zhuǎn)的和不旋轉(zhuǎn)的態(tài)共存的狀態(tài),而且處于宏觀量子隧穿的約瑟夫森隧穿區(qū)域中,是量子自束縛狀態(tài)。
  11. the particles aggregation was simulated using particle-cluster and cluster-cluster aggregation model . several type of floes was reached and its morphological characteristics was analyzed the fractal dimension, density and porosity of floes was studied by changing sticking probabilities, sticking position, particle number, particle concentration, difrusion coefficient and motion trajectory . the parameters by which special floes growth were determined . in the study of morphology, floes of yellow river's loess particles was observed by tv-microscope . its morphological characteristics were obtained by image analysis . the effect of fractal dimensions by stirring time strring speed, macromolecule flocculant dosage, flocculant concentration and particle concentration was studie . its rule of change was obtained . on the basis of other studies, the flocculation kinetics and floes structure was studied
    本文應(yīng)用計算機模擬技術(shù),在二維空間內(nèi)采用單體凝聚和集團??集團凝聚兩種模型對顆粒凝聚過程進行了模擬,得到了多種形態(tài)的絮體,并對絮體進行了形態(tài)分析,通過改變粘附概率、粘附位置、顆粒數(shù)量、顆粒濃度、擴散系數(shù)和運動路徑等模擬參數(shù),我們考察了絮體分形維數(shù)、密度和孔隙率隨模擬條件變化的影響規(guī)律,得到了形成特定形態(tài)絮體的控制參數(shù)。
  12. the difference at low temperature and the concordance at high temperature still appear . analysis is made and all the results are shown in the form of graph . the result shows the tendency of the critical temperature's changing to the given particle number, when the quantum effect is major, is more slow than that got by the integral method
    并利用所得能級找出了相互作用系統(tǒng)中粒子的狀態(tài)分布、相互作用對激發(fā)態(tài)占據(jù)數(shù)的影響、不同作用下基態(tài)占據(jù)與溫度的關(guān)系以及相互作用對系統(tǒng)轉(zhuǎn)變溫度的影響,然后用圖形表現(xiàn)出有相互作用時和無相互作用時所得結(jié)果的區(qū)別。
  13. by analyzing and synthesizing the experimental results many optimized experimental parameters are achieved . 4 . in order to value the cleanliness of super-smooth surface before and after laser cleaning rapidly and precisely, a software is developed to automatically value it by processing the surface images, which can present key parameters about the surface cleanliness, such as maximal contaminant particle size, the total particle number per unit, the contaminant area per unit, etc
    超光滑光學(xué)基片表面激光清洗的機理和試驗研究西北工業(yè)大學(xué)碩士學(xué)位論文4.對試驗中基片清洗前后sem照片進行統(tǒng)計分析,提取了基片表面上雜質(zhì)微粒的圖像特征,結(jié)合計一算機圖象處理技術(shù),開發(fā)了表面清潔度自動評價軟件,實現(xiàn)了對超光滑基片表面上吸附的污染微粒進行自動識別和特征分析,包括微粒的尺寸分布、單位面積的微粒數(shù)、最大的微粒尺寸等重要參數(shù)。
  14. it shows that the particle number will fluctuate with the recombination coefficient; 3 ) the dynamic process of the n-type doped diamond film is simulated . the particle distributions of s, s + and ar + are gotten . the result has important reference to the investigation of n-type diamond film doping at low temperature
    (3)對不同氣壓、偏壓和不同的配比情況下n型硫摻雜的金剛石薄膜的動力學(xué)過程進行了模擬,得出了摻雜元素s和s~+以及惰性氣體ar~+的粒子數(shù)分布,計算結(jié)果對摻雜過程的研究有重要的參考價值。
  15. using digital image processing technique to process the solid-gas-water three-phase flow image and separate dispersed phase from the three-phase flow image, author calculated the bubble number, particle number in instantaneous image, area of bubble image and other parameters, and analyzed the effect of image enhancement, image segmentation, image analysis and other problems existed in bubble image processing
    應(yīng)用數(shù)字圖像處理方法對水氣固三相流圖像進行處理,將其中的分散相分別提取出來,計算得出瞬時圖像范圍內(nèi)的氣泡個數(shù)、粒子個數(shù),氣相所占流動截面比等參數(shù);分析了圖像增強、圖像分割、圖像分析等方法在多相流圖像測量上的作用以及氣泡圖像處理中存在的問題。
  16. the relationship between the gas and particles is obtained as well as the distributions of velocities both of gas and particle, temperature, particle number density, and other turbulent qualities such as turbulent kinetic energy and its dissipation rate . it finds that micro zone clean control through the well-designed flow pattern is possible
    在仿真的條件下探討了氣流運動和顆粒運動的關(guān)系,初步研究了通過氣流對不同分區(qū)進行潔凈度的控制實現(xiàn)的可能性,得出了不同送風(fēng)狀態(tài)下氣相速度場和顆粒數(shù)密度的分布、溫度及相關(guān)的湍流量的分布。
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