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相关概念视频

Atomic Nuclei: Nuclear Spin State Population Distribution01:14

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Near absolute zero temperatures, in the presence of a magnetic field, the majority of nuclei prefer the lower energy spin-up state to the higher energy spin-down state. As temperatures increase, the energy from thermal collisions distributes the spins more equally between the two states. The Boltzmann distribution equation gives the ratio of the number of spins predicted in the spin −½ (N−) and spin +½ (N+) states.
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A racemic mixture, or racemate, is an equimolar mixture of enantiomers of a molecule that can be separated using their unique interaction with chiral molecules or media. Racemic mixtures are denoted by the (±)- prefix. This ‘optical rotation descriptor’ applies to the whole solution of a racemic mixture rather than a specific stereoisomer. Enantiomers typically have the same physical and chemical properties. Hence, they are not easily separable. However, enantiomers can exhibit...
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In the absence of an external magnetic field, nuclear spin states are degenerate and randomly oriented. When a magnetic field is applied, the spins begin to precess and orient themselves along (lower energy) or against (higher energy) the direction of the field. At equilibrium, a slight excess population of spins exists in the lower energy state. Because the direction of the magnetic field is fixed as the z-axis,  the precessing magnetic moments are randomly oriented around the z-axis.
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Intermolecular forces are attractive forces that exist between molecules. They dictate several bulk properties, such as melting points, boiling points, and solubilities (miscibilities) of substances. Molar mass, molecular shape, and polarity affect the strength of different intermolecular forces, which influence the magnitude of physical properties across a family of molecules.
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Recall that a particle in equilibrium is one for which the external forces are balanced. Static equilibrium involves objects at rest, and dynamic equilibrium involves objects in motion without acceleration; but it is important to remember that these conditions are relative. For instance, an object may be at rest when viewed from one frame of reference, but that same object would appear to be in motion when viewed by someone moving at a constant velocity.
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Quantifying Mixing using Magnetic Resonance Imaging
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在最大限度地混合活体阴性物质.

Kevin A Mitchell1, Md Mainul Hasan Sabbir1, Kevin Geumhan1

  • 1Physics Department, University of California, Merced, California 95344, USA.

Physical review. E
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PubMed
概括
此摘要是机器生成的。

活体体在封闭系统中表现出稳定的周期运动,导致最大限度的混乱流体混合. 这一发现优化了拓,对实验观测至关重要.

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科学领域:

  • 软冷凝物质物理学的物理
  • 非平衡的系统是不平衡的.

背景情况:

  • 活跃的敌人是自动驱动的系统,棒状的粒子.
  • 它们的流体运动通常表现出混乱的倾向,其特点是指数式拉伸.

研究的目的:

  • 在有限的几何体内,研究活体体中稳定的周期运动.
  • 分析这种周期运动的混合特性和稳定性.

主要方法:

  • 活跃阴性系统的数值模拟.
  • 理论的应用,以量化混合效率.
  • 缺陷运动和稳定性的分析.

主要成果:

  • 在被限制在具有周期性边界条件的小正方形中,观察到的活体敌人体中观察到的稳定周期运动.
  • 这种周期运动实现了最大的混合,优化了拓.
  • 分析了周期状态的稳定性,并开发了用于更大的周期性的方法.

结论:

  • 与直觉相反的是,活体阴影中的周期性缺陷运动产生了比混乱缺陷运动更大的混乱混合.
  • 这些发现为实验实现提供了一条稳定活体阴性状态的途径.