mathematical physics 中文意思是什麼

mathematical physics 解釋
數理
  • mathematical : adj 數學(上)的,數理的;嚴正的,精確的。 mathematical instruments 制圖儀器。 mathematical logic...
  • physics : n. 〈通常用作單數〉 1. 物理學。2. 物理過程;物理現象;物理性質;物理成分。
  1. Analog computers are general-purpose devices which employ laws of physics for performing mathematical operations.

    模擬計算機是用物理定律進行數學運算的通用裝置。
  2. Galileo strongly fought against the traditional ideas of the aristotle ' s theories, and he formed the thought of identity, continuance and dialectical materialism in course of his scientific research. he had written the book dialogue concerning the two chief world systems - ptolemaic and copernican to refute the theory that the earth was static, and push the copernicus " revolution forward by protecting and advocating the cosmic principle of copernicus ; he get many scientific theories by making a thorough study of motion, so provided the materials need of which newton was ; he applied the scientific method firstly in history of science which combined mathematical inference with experience and observation organically, and entrusted modern meaning to some old - time methods, so advanced the development of scientific knowledge greatly and began the history of modern physics

    伽利略強烈反對亞里士多德式的傳統思維觀念,在長期深入的運動研究中發展了同一性和連續性思想,以及把物質性質劃分為兩類的機械唯物主義思想;他著書立說駁斥「地靜說」 ,捍衛和宣揚「地動日心」的宇宙結構,推動了「哥白尼革命」 ;他深入研究運動,獲得大量科學理論,為牛頓綜合提供了豐富的材料;他在科學史上首次使用數學演繹與觀察實驗有機結合的科學方法,並賦予一些古老研究方法以現代含義,大大推進了科學認識的發展,開創了現代物理學歷史。
  3. The extremum of function in mathematical physics

    數學物理問題中的泛函極值
  4. Much mathematical discovery has been stimulated by physics.

    物理學促進了數學上的許多發現。
  5. Mathematical physics keeps wolfram in business

    數學物理學不斷鎢生意。
  6. Mathematical physics equa - tions printed lectures second edition in chinese

    數學物理方程講義.第2版
  7. Harmonic maps between riemannian manifolds are very important in both differential geometry and mathematical physics. riemannian manifold and finsler manifold are metric measure space, so we can study harmonic map between finsler manifolds by the theory of harmonic map on general metric measure space, it will be hard to study harmonic map between finsler manifolds by tensor analysis and it will be no distinctions between the theory of harmonic map on finsler manifold and that of metric measure space. harmonic map between riemannian manifold also can be viewed as the harmonic map between tangent bundles of source manifold and target manifold

    黎曼流形間的調和映射是微分幾何和數學物理的重要內容。黎曼流形和finsler流形都是度量空間,自然可利用一般度量空間調和映射的理論討論finsler流形間的調和映射。但由於控制finsler流形性質的各種張量一般情況下很難應用到一般度量空間調和映射的理論中,使得這樣的討論大都是形式上的,並與一般度量空間調和映射的理論區別不大。
  8. It is the underlying mathematical framework of many fields of physics and chemistry, including condensed matter physics, atomic physics, molecular physics, computational chemistry, quantum chemistry, particle physics, and nuclear physics

    它是許多物理學和化學領域的根本數學框架,包括濃縮物質物理學、原子物理學、分子物理學、計算化學、量子化學、粒子物理學和核子物理學。
  9. It plays a very important role in many application, according to the point of mathematics point, its mostly application originate from equations of mathematical physics, difference equations, markov process, and so on, its purpose is to solve the problems of solid, fluid, electromagnetic, microscopic particles, system control, and etc. in practical science research and engineer applications, such as, architecture project, research of aeronautics and astronautics, bioscience, computing physics and oil reconnoiter, many large scale generalized eigenvalue problems need to be solved

    它在很多應用中扮演非常重要的角色,從數學角度來看,矩陣特徵值問題的應用大多來自數學物理方程、差分方程、 markov過程等。目的是為了計算固體、流體、電磁、微觀粒子、系統控制等重大問題。在實際的科學研究與工程應用中,比如在建築工程、航空航天研究、生物科學、計算物理以及石油勘探中,都要涉及到大規模矩陣廣義特徵值問題的計算。
  10. Special functions of mathematical physics ; symbols and concepts

    數理特定函數.符號和概念
  11. Study on visualize - teaching in mathematical equation of physics

    的數理方程可視化教學淺探
  12. Based on the research and model test, the head loss of flap valves is analyzed by both mathematical physics method and the equation of criterion, and the impulsive force and open angle of flap valve are researched. the flap valve approximate - calculation method is the emphases in this paper. the design methods and using effect of air - filled floating flap valve are studied in the paper by combining with engineering example

    在總結前人研究的基礎上,對照試驗結果,通過數理解析和準則方程分析了拍門水頭損失,研究了拍門水流沖力的求解和拍門開啟角度的求解,著重研究分析了拍門近似計算方法,分析拍門在水中的運動規律,並結合工程實例,研究探討充氣浮箱式拍門的配重方法及其使用效果,為今後開拓充氣浮箱式拍門的運用領域作些探討研究。
  13. Involve mathematical economics, finance, control theory, mechanics, physics and so on. they become an important foundation and tool for studying multiobjective and multilevel programs and one of focal point problems paid close attention by scholars in the field of applied mathematics

    集值變分包含問題涉及數理經濟學、金融學、控制論、機械學、物理學等學科,是研究多目標規劃和多層規劃的重要基礎和工具,也是目前應用數學領域中備受關注的熱點之一。
  14. The research of system makes the observational information of tongbo dam realize standardization manage, tidy up and analyze the information quickly and exact, give the environmental physics number and diagnostic numer of displacement, stress and seepage, build the mathematical model of each observational information, evaluate the working modality of the dam, thereby ensure safe working of the dam

    系統的研製使桐柏抽水蓄能電站的觀測資料實現規范化管理,快速、準確地整理、分析觀測數據,給出環境物理量及位移、應力和滲流等觀測效應量的特徵值,建立各觀測效應量的數學模型,分析評估大壩的工作形態,從而保證大壩的安全運行。
  15. Secondly, we build the physics and mathematical model of space - to - ground optical communication systems. and the link equation is deducted, based on which we calculate the communication link

    其次,建立了空-地激光通信系統的物理和數學模型,得到了空間光通信的鏈路方程,並依據鏈路方程進行了通信鏈路的模擬計算。
  16. Equations of mathematical physics

    數理方程
  17. Variational principles play an important role in the formulation of many problems of mathematical physics.

    變分原理現在許多數學物理的表述中起著重要作用。
  18. Method of mathematical physics

    數學物理方法
  19. The first results of riesz space and positive operators go back to f. riesz ( 1929 and 1936 ). since then positive operator theorems have always played an essential role on the subject of functional analysis and have been applied to some fields such as mathematical physics and economics

    自從二十世紀三十年代, f . riesz首次提出riesz空間和正運算元以來,正運算元的研究一直成為人們關注的課題,並逐步把這一理論開拓到應用領域,使得正運算元理論在數學物理,經濟學方面得到廣泛運用。
  20. The mathematical physics essentiality of phenomenological similitude is pointed out to have the same dimensionless models, including the same model structures and the same values of all characteristic numbers in a dimensionless normalized coordinate basis

    摘要指出了現象相似的數學物理本質是它們在同一個量綱為1的單元座標體系中有相同的量綱為1的模型:模型的結構相同且各特徵數數值一對應相等。
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