微操

  • 网络micro;Micromanagement;micro control
微操微操
  1. 在星际争霸当中,职业竞技选手如Bisu,Nada以及Savior都有很强的微操能力和良好时间意识。

    In Starcraft , pro-players like Bisu , Nada , and Savior had strong Micro and a good sense of time management .

  2. 微操作力提升系统控制策略实验研究

    Optimizing control of a micro operational force intelligent assist hoisting system

  3. 介绍了配置在扫描电镜(SEM)中的微操纵仪(MMS)的操作原理、性能及应用。

    The operating principle , the performance and the application of a micromanipulator system ( MMS ) setup in a scanning electron microscope ( SEM ) is introduced in this paper .

  4. Bowder和我讨论了游戏中早期使用追猎者的预想。而且一旦升级了闪现技能,追猎者在中期游戏中是一种非常适合微操的单位。

    Bowder and I discussed how he envisioned it used in the early game and then once its ability , Blink , had been upgraded that it would serve as a very micro-able unit into the mid-game .

  5. 压电陶瓷管驱动三自由度微操作手的研究与应用

    Research and Application of Three Degree-of-freedom Micromanipulator Driven by Piezoelectric Tube

  6. 再远一步说,这将需要更多的微操来控制幽灵兵。

    Furthermore , it would take slightly more micromanagement as well .

  7. 对奥卡战机进行微操是很重要的。

    Being able to micro your Orcas is also very important .

  8. 并联3-2-1结构新型微操作手及其承载能力分析

    A Novel Micromanipulator with Parallel 3-2-1 Architecture and Analysis for Its Payload

  9. 机器人微操作手设计采用压电伸缩陶瓷微位移器。

    Piezoceramics telescopic micro-actuator was used in design of micro-gripper of robot .

  10. 集成式压电驱动微操作手的位置控制研究

    Research on Position Control for Integrated Micromanipulator Driven Piezoelectric Ceramics

  11. 助力机械手提升系统及微操作力控制研究

    Research on Micro Operation Force Control and Hoisting System of Power Assist Manipulator

  12. 星际争霸当中的宏操与微操都非常重要。

    Macro and Micro in Starcraft was an important factor of the game .

  13. 让操作界面更人性化,与增加了微操难度取得平衡。

    Modernizes the UI and will be balanced out with increased difficulty in Micromanagement .

  14. 微操纵系统自动调焦方法的研究

    Research of Autofocus Techniques in Micromanipulator

  15. 目前的共识是结构光束将成为光学微操控中一个极为重要的方面。

    It is a common view that structured light beams will be an important part in optical micromanipulation .

  16. 该研究对微操作力提升系统的性能分析和改进具有实际的参考价值。

    This research possesses actual reference values for improving the micro operation force hoisting system and analyzing its performances .

  17. 光纤光镊技术是利用光纤出射的光束对粒子进行捕获和操控的一种微操控技术。

    Fiber optical tweezers is one kind of micro-manipulation technology . It uses fiber output beam to trap and manipulate micro-particles .

  18. 如果你经常是火力的焦点建议装备,但优秀的微操几乎可以提供相当的效果。

    Nice if you get focused on a lot , but good micro can generally get you the same effect for free .

  19. 本文研究了一种五自由度微操作器,该操作器主要包括两个部分:基于电热效应的冰冻镊子(冰镊)和一个高精度的五自由度微操作臂。

    There are two parts in this manipulator , an ice gripper based on thermoelectric effects and a high accurate 5-DOF micro-manipulation arm .

  20. 基于此,通过驱动压电陶瓷管弯曲或摆动,依靠红宝石球与微操作球间惯性摩擦形成的相对位移实现微操作球3自由度的运动。

    Rotations with 3-DOFs of the micro-ball are achieved with the relative displacements brought by the frictions between the ruby balls and the micro-ball .

  21. 光学微操控已成为实验科学的一个迅速发展的分支,但是对其的理论研究却很落后。

    Optical micromanipulation has been developed into a rapidly expanding branch of experimental science . However , the theoretical development is lagging significantly behind .

  22. 激光微束技术是一种新型的光学生物显微操控技术,它包括激光光镊和激光光刀两种性质不同的生物微操控手段。

    Laser microbeam is a novel bio-photonic microscopic manipulating technology , which includes optical tweezers and laser scissors two different kinds of biological micro-manipulating tools .

  23. 第五章,对全文的工作进行总结,并对超声辐射场及其合成技术在微操纵中的应用前景进行展望。

    Chapter 5 , this chapter summarizes the main conclusions of this dissertation and prospects for the ultrasonic radiation force synthesized and its micro-manipulation technology .

  24. 我可以发现掠夺者在微操下可以发挥得更好,但是我没有技术去达到这点。

    I can see the Marauder being powerful if micro 'd effectively , but I do not have the skill to be able to do this .

  25. 光学微操控基于激光光场诱发的光力和光力矩,其实现得益于激光技术的发展。

    Optical micromanipulation is based on the optical force and torque induced by laser , and its realization greatly profits from the development of laser technology .

  26. 新的操作界面使得玩家可以在操纵这些部队的时候避免不必要的微操,同时如果玩家坚持,也可以控制单独的单位。

    New user interface paradigm will allow player to control these forces avoiding unnecessary micro-management , while allowing controlling individual units , if player would so desire .

  27. 在此基础上确定了自动组装系统的组成结构,并详细介绍了研制的具有力感知功能的微操作手、三工位键合炉以及显微视觉等关键技术模块。

    The automatic assembly system consists of a micro force sensor integrated micromanipulator , a bonding centre with three working cells , and a microscopic vision module .

  28. 光学微操控已广泛应用于从胶体科学、物理学、生物学到医学等多个学科中,对微粒乃至活细胞进行操控。

    Optical micromanipulation is widely used in colloid science , physics , biology , medicine and many other fields to manipulate particles and ev ^ n living cells .

  29. 通过这个工作,可以实现微粒的正反方向转动,从而为光学微操控提供更多的灵活性和自由度。

    From this work , we can realize both the positive and negative rotation of a structure , which provide more flexibility and free degree to optical micromanipulation .

  30. 在进入大规模战斗前,试着去削弱你的敌人,这样你不仅需要微操,还需要火力控制。

    Before engaging in a large battle , try to thin out your opponents army so that you have not only micro control , but now have firepower control .