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相关概念视频

Accelerating Fluids01:17

Accelerating Fluids

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When a fluid is in constant acceleration, the pressure and buoyant force equations are modified. Suppose a beaker is placed in an elevator accelerating upward with a constant acceleration, a. In the beaker, assume there is a thin cylinder of height h with an infinitesimal cross-sectional area, ΔS.
The motion of the liquid within this infinitesimal cylinder is considered to obtain the pressure difference. Three vertical forces act on this liquid:
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Vapor Pressure of Fluid01:28

Vapor Pressure of Fluid

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The vapor pressure of a fluid is a crucial concept in fluid mechanics, influencing phenomena such as boiling and cavitation. Vapor pressure refers to the pressure exerted by a vapor at a state of thermodynamic equilibrium with its corresponding liquid phase at a specific temperature. It represents the tendency of molecules to escape from the fluid surface into the vapor phase.
When a liquid is placed in a closed container with a small air space, and the space is evacuated, vapor molecules will...
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Excess Pressure Inside a Drop and a Bubble01:13

Excess Pressure Inside a Drop and a Bubble

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The shape of a small drop of liquid can be considered spherical, neglecting the effect of gravity. This drop can further be considered as two equal hemispherical drops put together due to surface tension. The forces acting on the spherical drop are due to the pressure of the liquid inside the drop, the pressure due to air outside the drop, and the force due to the surface tension acting on the two hemispherical drops.
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Noble Gases02:54

Noble Gases

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The elements in group 18 are noble gases (helium, neon, argon, krypton, xenon, and radon). They earned the name “noble” because they were assumed to be nonreactive since they have filled valence shells. In 1962, Dr. Neil Bartlett at the University of British Columbia proved this assumption to be false.
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Surface Tension of Fluid01:22

Surface Tension of Fluid

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Surface tension is a fundamental property of fluids, occurring at the boundary between a liquid and a gas or between two immiscible liquids. This phenomenon arises from the cohesive forces between molecules at the fluid's surface, creating an effect similar to a stretched elastic membrane. Inside each fluid, molecules are equally attracted in all directions by neighboring molecules, but surface molecules experience a net inward force, resulting in surface tension.
Surface tension varies...
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High-Performance Liquid Chromatography: Elution Process01:05

High-Performance Liquid Chromatography: Elution Process

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In High-Performance Liquid Chromatography (HPLC), the elution process is critical to the separation of analytes and the quality of chromatographic results. Elution describes how compounds move through the column and separate based on their interactions with the mobile and stationary phases. This process determines the resolution, peak shape, and retention times in the chromatogram, which are essential for identifying and quantifying components in complex mixtures. Understanding the elution...
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Cryogenic Liquid Jets for High Repetition Rate Discovery Science
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超流动的滴在高真空中升起.

C D Brown1,2, Y Wang3, M Namazi1,2

  • 1Department of Physics, Yale University, New Haven, Connecticut 06520, USA.

Physical review letters
|June 9, 2023
PubMed
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毫米尺度的超流体滴被无限期地困在真空中,冷却到330mK. 这些孤立的水滴表现出内部的机械缓和主机光学低语画廊模式.

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科学领域:

  • 物理 物理学 物理
  • 量子流体 量子流体
  • 视觉机械学 视觉机械学

背景情况:

  • 超流体是一种具有独特性质的量子流体.
  • 捕获和分离少量的超流体在实验上具有挑战性.

研究的目的:

  • 为了证明毫米级超流体滴在高真空中的捕获.
  • 为了研究这些孤立的超流体滴的特性.

主要方法:

  • 使用一种新的技术来捕获毫米级的超流体滴.
  • 在长时间的捕获期间保持高真空条件.
  • 通过蒸发和机械阻尼来测量冷却.

主要成果:

  • 成功捕获的超流体液无限期下降.
  • 通过蒸发式冷却实现了330mK的超低温度.
  • 观察到由内部超流体过程所限制的机械缩.
  • 演示了对光学耳语画廊模式的托管.

结论:

  • 开发的捕获技术提供了孤立的,超冷的超流体.
  • 这个系统在冷化学,超流体物理学和光力学方面提供了新的实验可能性.