流体动力学相互作用 hydrodynamic interaction
药物动力学相互作用 pharmacokinetic interaction
流体动力学的相互作用 hydrodynamical interaction
这个微扰理论的特点是能将运动学相互作用与动力学相互作用分离。
This theory has the distinguishing feature of separating the kinetic interactions from the dynamic interactions.
给出引力的作用规律和关于物质分布的假设后,下一步是得出宇宙的动力学规律——空间和质量如何与时间相互作用。
Given a law of gravity and an assumption about how the matter is distributed, the next step is to work out the dynamics of the universe - how space and the matter in it evolves with time.
可以通过纳米结构电路(如接近绝对零度的超导铝)得到更强大的相互作用(电路量子电动力学,Circuit QED)。
A much stronger interaction can be obtained with nano-structured circuits in which metals like aluminum become superconducting at temperatures just above absolute zero (circuit QED).
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