量子

liàng zǐ
  • quantum;gion
量子量子
量子 [liàng zǐ]
  • (1) [quantum]

  • (2) 极小的增量或部分之一,许多能量形式被支分为这种极小的增量或部分并且经常直接或间接地与频率 v 相联系,而总量等于普朗克常数乘以 v

  • (3) 量子物理量值的小支分之一(如分子自旋、角速度、磁矩)

量子[liàng zǐ]
  1. 量子力学和混沌理论都表明世界永远处于不断变化中。

    Both quantum mechanics and chaos theory suggest a world constantly in flux .

  2. 量子理论并不只是一个深奥的附录。

    The quantum theory is not just an esoteric addendum .

  3. 量子力学本身就存在着许多不能直接测量的概念。

    In quantum mechanics itself there are many constructs that we cannot measure directly .

  4. 根据量子理论,分子和原子具有的能量是量子化的。

    The energy that atoms and molecules can possess according to quantum theory is quantized .

  5. 方法应用量子透射和降纤酶同时治疗高粘血症病人,并进行自身对照比较。

    Patients with high blood-viscosity were treated by quantum transmission and defibrase , and contrast was made before and after treatment .

  6. 我们可以用量子数L描写一个原子的状态。

    We may characterize an atomic state by a quantum number L.

  7. 量子信息学是近几年迅速发展起来的一门新兴交叉学科,它是量子力学和信息科学相结合的产物

    What is called quantum information science is substantively to research information science encoding with quantum states .

  8. 量子科技发展具有重大科学意义和战略价值,是一项对传统技术体系产生冲击、进行重构的重大颠覆性技术创新,将引领新一轮科技革命和产业变革方向。

    The development of quantum science and technology is of great scientific significance and strategic value . It is a major disruptive technological .

  9. 加快发展量子科技,对促进高质量发展、保障国家安全具有非常重要的作用。

    It plays a very important role to accelerate the development of quantum science and technology in promoting high-quality development and safeguarding national security .

  10. 要系统总结我国量子科技发展的成功经验,借鉴国外的有益做法,深入分析研判量子科技发展大势,找准我国量子科技发展的切入点和突破口。

    It is imperative and judge the development trend , and find out the breakthrough point for the development of quantum science and technology in China .

  11. 用B样条技术研究半导体微晶中激子的量子受限效应

    Studies of quantum confinement effects of excitons in semiconductor crystallites with the B-spline Technique

  12. HOMK(M,N),是左右量子扬巴克斯特模;

    HOM k ( M , N ) is a left-right quantum Yang-Baxter modules ;

  13. 10维紧致baby宇宙模型与量子引力中的几率函数

    Compact Baby Universe Model in ten Dimension and Probability Function of Quantum Gravity

  14. 利用量子遗传算法改进BP学习算法

    Using Quantum Genetic Algorithm to Improve BP Learning Algorithm

  15. 退火对AlGaInP/GaInP多量子阱LED外延片性能的影响

    Influence of Thermal Annealing to the Characteristics of AlGaInP / GaInP Multiple Quantum Wells LED Wafers

  16. 单模辐射场与耦合双原子Raman相互作用过程中光场的量子特性

    Dynamics of single mode field Raman interacting with two coupled atoms

  17. 量子宇宙学、baby宇宙和虫洞

    Quantum Cosmology , Baby Universe and Wormhole

  18. 大功率In(Ga)As/GaAs量子点激光器

    High Power In ( Ga ) As / GaAs Quantum Dot Laser

  19. Ga(1-x)AlxN/GaN量子点红外吸收谱

    Infrared Absorption Spectra of Ga_ ( 1-x ) Al_xN / GaN Quantum Dots

  20. In(Ga)As量子点红外探测器

    In ( Ga ) As Quantum-Dot Infrared Photodetectors

  21. 然而,他的结果从来考虑过量子修正因数&Planck函数p(f)。

    But , the result does not give the quantum correction factor , i. e the planck functionp ( f ) .

  22. 自优化剩余函数量子MonteCarlo方法

    Self-optimizing Surplus Function Quantum Monte Carlo Approach

  23. 弱量子代数wUi~d的最高权模和中心

    The Highest Weight Module and the Center of the Weak Quantum Algebra wU_i ~ d

  24. 非线性包层多量子阱波导的TE波

    TE Waves in Multiple Quantum Well Waveguides with Nonlinear Cladding

  25. 量子尺寸效应对超微粉TiO2表面态的影响

    Effect of Quantum Size on the Surface of TiO_2 Ultrafine Particles

  26. 量子交换余模代数与相对Hopf模范畴

    Quantum Commutative Comodule Algebras and Categories of Relative Hopf Modules

  27. 用这些作为能量缓变函数的量子亏损,可以实现对任意高激发态(n≥10)能量的可靠预言。

    The energies of any highly excited states with n ≥ 10 also can be reliably predicted by using the quantum defects which are function of energy .

  28. SU(3)线性非自治量子系统的代数动力学求解

    An algebraic dynamics approach to the solution of the Su ( 3 ) linear nonautonomous quantum system

  29. 量子阱激光二极管泵浦单块Nd∶YLF激光器

    Quantum-well laser diode pumped monolithic Nd : YLF laser

  30. GaAs/GaAlAs透射阴极量子效率相关参量分析

    Analyses on Parameters Related with Quantum Efficiencies of GaAs / GaAlAs Transmission Mode Photocathodes