dynamical number 中文意思是什麼

dynamical number 解釋
動力勢差數
  • number : n 1 數;數字;〈pl 〉算術。2 (汽車等的)號碼;第…,第…卷,第…期〈通常略作 No (復數 Nos ),用於...
  1. Given the initial conditions including ( 1 ) number density distribution in space which has the similar form to the present day ones, ( 2 ) both the power law and gaussian mass functions for clusters, and ( 3 ) two different velocity distributions which one has a constant dispersion and the other is described by the eddington formula, the dynamical evolution of globular clusters in our milky way galaxy is investigated in detail by means of monte carlo simulations

    本文採用與觀測結果具有相同形式的球狀星團空間密度分佈函數,在給定兩種球狀星團系統的初始質量譜(冪律的和對數高斯的)和兩種球狀星團系統的初始速度分佈函數(愛丁頓速度分佈函數和常數的速度彌散度)條件下,我們採用montecarlo的方法對球狀星團系統的動力學演化進行討論。
  2. Abstract : in this paper, we consider a class of irrational rumber which can be approximated by rational number at most exponental order , applications are given in partial differential equation and dynamical systems

    文摘:文中考慮一類最多可以指數地有理逼近的無理數,並指出它們自然地存在於偏微分方程解析理論及動力系統中
  3. We found through experimental and mc studies that the dynamical property of 2 - jet event sample in e + e ~ collisions is very different with the average property of the event sample with various number of jets

    這個標度值與實驗中在1730gev能區首先發現3噴注的歷史事實一致,因而也就是實驗中「可觀測噴注」的標度。
  4. The number density distribution of globular cluster in space will change with time due to the dynamic evolution, especially for those in the central region of the galaxy ; 5. for the power law initial cluster mass function, the peak value of the mass function after the dynamic evolution is sensitive to the lower limit of the initial mass function we adopt. the suggested value in this paper is - 104m, which is consistent with that reduced from the dynamical analyses for the giant molecular clouds

    對于冪率的初始質量譜,球狀星團系統動力學演化后質量分佈的轉折點質量主要是由初始質量函數的質量下限決定的,最為適合的值為10 ~ 4m _ ;冪率的初始質量譜的譜指數對球狀星團系統動力學演化后質量分佈的轉折點質量也有影響,其最佳值為1 . 5 2 . 0 ;經過大約5gyr的動力學演化,冪率的初始質量譜就會演化成為高斯的對數質量分佈並具有在隨后的動力學演化中保持對數高斯形式質量分佈的特性。
  5. Considering the influence of dynamical factor of sediment discharge as well as the difficulty of calculating number of input cell, the model is provided with strong nonlinear mapping capacity and applied to simulate and forecast monthly sediment discharge of longchuan river watershed, the outcome is reasonable with higher precision

    模型既能考慮到影響輸沙量時間序列的動力因子,又能解決網路的輸入單元數確定的困難和利用神經網路超強的非線性映射功能,通過對龍川江流域控制站月輸沙量的擬合與預測表明其結果合理,預測精度較高。
  6. In the introduction, we briefly introduce the history of symbolic dynamics development, the research of the symbolic dynamical system of an finite number of sym - bols, the research of the general symbolic dynamical system, the research of chaotic properties of shift and subshift of symbolic dynamical system and lists main conclusions in the paper

    在引言部分,簡要介紹了符號動力學發展的歷史;有限個符號的符號動力系統與一般符號動力系統研究;符號動力系統移位及子移位的渾沌性質研究,並敘述了本文的主要結論。
  7. This paper is devoted to seeking formulas and rules of representation for generating new fractal graphics. the main works are as followed : ( l ) construct new formulas for new fractal aspects after revisited methods for the visualisation of mandelbrot and julia sets based on ifs, we described the other new formulas originating from z z2 + c. including norton and polynomials iterated function, which have integer index instead quadratic index, we also constructed formulas with complex number index. 3 - d dynamical system is discussed then. besides the most widely used sequential visualisation methods, we designed two methods to change the original vectors and get new graphics with special effects

    在對公式指數的推廣中,包括指數為整數的牛頓迭代法和多項式迭代法,還包括指數為復數的迭代公式;在離散動力系統的吸引子生成演算法討論中,將復數z向高維空間推廣,重點論述了生成了三維離散動力系統吸引子的收斂條件,實現了此吸引子對應的三維空間向量在平面上的投影圖的條件;還討論了迭代前對初值點進行兩種不同變換對得到的分形圖形的影響,以及這兩種變換組合圖形的生成。
  8. Then we also study the effect of string on the dynamical characteristic under the symmetric load and not under the symmetric load as the prestressing is the key making beam string structure the balanceatie system, having large rigidity and embodying the superiority of dynamical characteristic of this structure, this paper studies and conceives how to deteimine the number of the prestressing in each stage of construction and through comparing between the plan of onetime and repeated pulling construction choose the suitable pulling construction plan

    並且本文還研究了在對稱荷載和不對稱荷載兩種工況下,結構的受力性能隨豎向撐桿數目、結構垂跨比以及下弦索預應力等參數改變時的變化情況,總結出該結構受力方面的特徵,為實際工程設計提供依據。鑒于預應力是使張弦梁結構形成自平衡體系、具備較大剛度和體現結構性能優勢的關鍵,本文研究和探討了結構施工各階段該預應力大小的確定方法,通過一次張拉與二次張拉方案各項指標的比較,選擇適當的預應力張拉施工方案。
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