非弹性碰撞

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  • inelastic collision
非弹性碰撞非弹性碰撞
  1. ~(19)F+~(27)Al深部非弹性碰撞产物的角分布

    Angular Distribution of Products in Deep Inelastic Collision of ~ ( 19 ) F + ~ ( 27 ) Al

  2. 确定了与实验松弛时间相符的非弹性碰撞数ZV,ZR,得到了有转动、振动激发耦合的离解反应的满意的直接模拟。

    The inelastic collision numbers are determined in accordance with the relaxation times obtained experimentally , a satisfactory simulation for the dissociation coupled with rotational and vibrational excitation is realized .

  3. 在这个桌上,可以演示二维的弹性和非弹性碰撞。

    Two-dimensional collisions , both elastic and inelastic , may be demonstrated on this table .

  4. e-p深度非弹性碰撞中Scaling破坏解释的一种尝试

    A New Trial Interpretation of Scaling Violation in e-p Inclusive Deep Inelastic Collision

  5. 本文采用电子与光子非弹性碰撞模型,首次给出了磁逆多光子非线性Compton散射的谱功率。

    Here , it has been given by using an inelastic collision model of electron with photon for the first time .

  6. 利用相对论性电子与光子非弹性碰撞模型,研究了激光等离子体中发生多光子非线性Compton散射时,由于尾波场的作用而引起的散射光子频率的变化。

    The change of the photon frequency of the multi-photon nonlinear Compton scattering in the laser-plasma is derived by using the inelastic collision model of relativity electron and photon .

  7. He-LiH体系转动非弹性碰撞的理论研究

    Theoretical Studies of Rotationally Inelastic Collisions of LiH with He

  8. 用CC方法计算了在BTT势能面上碰撞能为27.3meV下He-N2转动非弹性碰撞截面。

    The integral and differential cross sections for He-N2 were calculated at a collision energy of 27 . 3 meV on the BTT potential energy surface by using the coupled channel ( CC ) method .

  9. 应用相对论性电子与多光子集团非弹性碰撞模型和经典相对论电动力学理论,分析、计算了锥形飞秒强激光等离子体中多光子非线性Compton散射的能量转换。

    The energy conversion efficiency of the multi-photon nonlinear Compton scattering in the cone-shaped femto-second high power laser-plasma is given by using the inelastic collision model of relativistic electron and photon , and relativistic electricity theory .

  10. 电容器的能量损失与完全非弹性碰撞能量损失的类比

    Capacitor Energy Loss and Total Non-elastic Collision Energy Loss of Analog

  11. 完全非弹性碰撞;(3)部分弹性碰撞。

    Non - elastic collisions and ( 3 ) partially elastic collisions .

  12. 也谈完全非弹性碰撞和恢复系数

    On the completely inelastic collision and the coefficient of restitution

  13. 我们失去了动能,这是完全非弹性碰撞。

    We lose kinetic energy when there is a completely inelastic collision .

  14. 考虑非弹性碰撞的低浓度固液两相流动理学模型

    Kinetic modeling of dilute solid-liquid two-phase flows with inelastic collisions

  15. 在非弹性碰撞中,总是失去动能,能否在一次碰撞中,动能增加?

    Always in inelastic collisions do you lose kinetic energy .

  16. 深部非弹性碰撞中动力学与扩散方程的一种关联处理

    A correlative treatment of dynamics and diffusion equations in deep inelastic collisions

  17. 非弹性碰撞:有机械能损失的碰撞。

    Nonelastic collision : collision with lost of kinetic energy .

  18. 一个典型非弹性碰撞问题的讨论

    A Discussion of Problem on Typical Inelastic Collision Problem

  19. 好,上节课,我们只讲了,完全非弹性碰撞。

    All right , last time we talked exclusively about completely inelastic collisions .

  20. O2+O2反应及非弹性碰撞动力学

    Reactive and inelastic collisions of o_2 + o_2

  21. 重离子深部非弹性碰撞中作用时间的计算和传输系数的分析

    Calculation of interaction times and analysis of transport coefficients in heavy-ions induced deep inelastic collisions

  22. 原子双原子的络合反应碰撞和振转非弹性碰撞对H+CC系统的应用

    Atom-diatom complex reaction collision and vibration - rotation inelastic COLLISION-APPLIED to H + CC system

  23. 我们将有两辆车。,现在是完全非弹性碰撞。

    And we will have two cars that * Now we 're going completely inelastic .

  24. 你应该熟悉弹性和非弹性碰撞下的动量和动能变化。

    You should also be familiar with momentum and kinetic energy for elastic and inelastic collisions .

  25. 一般物理教材中,对碰撞这一突变的力学现象,只限于讨论完全弹性碰撞和完全非弹性碰撞问题,没有普遍意义。

    Only both perfectly elastic and inelastic collision are dealt with in most of physic textbooks .

  26. 反质子与原子核的非弹性碰撞

    Antiproton - nucleus inelastic collision

  27. 光电子之间的非弹性碰撞使它们原来获得的能量在整个电离气体中迅速分配。

    Inelastic collisions among photoelectrons rapidly distribute their initially gained energy throughout the region of ionized gas .

  28. 有一个完全非弹性碰撞,所质量重心的所有能量,统统损耗了。

    If I have a completely inelastic collision , then all energy in the center-of-mass frame is lost .

  29. 考虑电子、正离子与中性粒子的弹性碰撞和非弹性碰撞。

    In the collisions between charged particles and neutral particles , the elastic and inelastic collisions are introduced .

  30. 我们现在回到26。,我们将要实现一个,完全非弹性碰撞。

    So now we are back in26.100 , and we 're going to make a completely inelastic collision .