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相关概念视频

Capillarity in Fluid01:19

Capillarity in Fluid

762
Capillarity describes the movement of liquid in small spaces without external forces acting on it. The capillarity is driven by surface tension and adhesive interactions between the liquid and surrounding solid surfaces. This effect is often seen in narrow tubes, porous materials, and fine particles.
Surface tension is crucial to capillarity. It results from cohesive forces between liquid molecules at the liquid-air boundary, forming a skin that resists external forces. When the capillary tube...
762
Surface Tension, Capillary Action, and Viscosity02:57

Surface Tension, Capillary Action, and Viscosity

32.4K
Surface Tension
The various IMFs between identical molecules of a substance are examples of cohesive forces. The molecules within a liquid are surrounded by other molecules and are attracted equally in all directions by the cohesive forces within the liquid. However, the molecules on the surface of a liquid are attracted only by about one-half as many molecules. Because of the unbalanced molecular attractions on the surface molecules, liquids contract to form a shape that minimizes the number...
32.4K
Drying Shrinkage01:21

Drying Shrinkage

328
When hardened concrete is exposed to air with a relative humidity of less than 100 percent, it begins to lose the free water within its capillaries. As this water evaporates, the water initially adsorbed onto the calcium silicate hydrates migrates towards these now empty spaces and eventually evaporates as well. Over time, as more water leaves, the volume of the concrete decreases, a phenomenon known as drying shrinkage.
A portion of this drying shrinkage can be reversed; if the concrete is...
328
Phase Transitions: Vaporization and Condensation02:39

Phase Transitions: Vaporization and Condensation

20.4K
The physical form of a substance changes on changing its temperature. For example, raising the temperature of a liquid causes the liquid to vaporize (convert into vapor). The process is called vaporization—a surface phenomenon. Vaporization occurs when the thermal motion of the molecules overcome the intermolecular forces, and the molecules (at the surface) escape into the gaseous state. When a liquid vaporizes in a closed container, gas molecules cannot escape. As these gas phase molecules...
20.4K
Washing, Drying, and Ignition of Precipitates00:52

Washing, Drying, and Ignition of Precipitates

5.0K
After filtration, the precipitate is washed to remove coprecipitated impurities and any remaining mother liquor. Colloidal precipitates, such as silver chloride, are washed with an electrolyte (such as dilute nitric acid) to prevent the peptization of the precipitate. In the case of slightly soluble precipitates, the wash solution contains a common ion to reduce solubility. Lead sulfate, which is slightly soluble in water, is washed with dilute sulfuric acid. Similarly, wash solutions may be...
5.0K
Theories of Dissolution: Diffusion Layer Model01:15

Theories of Dissolution: Diffusion Layer Model

1.5K
Dissolution, the process by which drug particles dissolve in a solvent, is explained by the diffusion layer model, a theoretical framework that simulates the absorption of oral drugs and allows us to analyze experimental data.
This process starts with a thin layer, saturated with the drug, forming at the interface between the solid and liquid. The solute then diffuses from this layer into the main solution. The Noyes-Whitney equation suggests that the rate of dissolution relies on the diffusion...
1.5K

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相关实验视频

Updated: Jan 6, 2026

Fabric Moisture Uniform Control to Study the Influence of Air Impingement Parameters on Fabric Drying Characteristics
06:28

Fabric Moisture Uniform Control to Study the Influence of Air Impingement Parameters on Fabric Drying Characteristics

Published on: August 19, 2019

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在薄材料中入的液滴显示出普遍的干燥动力学.

Garam Lee1, Samira Shiri1,2, James C Bird1

  • 1Boston University, Department of Mechanical Engineering, Boston, Massachusetts 02215, USA.

Physical review letters
|October 25, 2025
PubMed
概括

液滴在多孔表面上扩散,然后由于蒸发而缩小. 这种对冷却织品和法医分析至关重要的动行为,只用一个参数可以预测,显示出普遍的膨胀-然后-收缩动态.

科学领域:

  • 流体动力学 流体动力学
  • 材料科学是一种材料科学.
  • 表面科学是一门科学.

背景情况:

  • 吸附,液体在多孔表面的辐射传播,用于诸如制冷织品等应用.
  • 了解动力学对于法医污点分析至关重要,因为液体传播使解释复杂化.
  • 在多孔介质中液体扩散和蒸发之间的相互作用尚未完全理解.

研究的目的:

  • 为了研究和建模液滴在薄的多孔表面上的动力学,专注于蒸发的影响.
  • 为了确定蒸发如何影响液体前线的扩散和退缩行为.
  • 为了确定可预测的参数,规范工艺.

主要方法:

  • 在多孔基板上测试液滴扩散和蒸发的实验测量.
  • 开发一个数学模型来描述合的和蒸发现象.
  • 对基板和液体特性对动力学影响的分析.

主要成果:

  • 蒸发会导致液体前面的方向逆转,导致在初始扩散后收缩的湿斑.
  • 一个单一的无维参数,取决于基板和液体特性,预测最大湿透直径和总蒸发时间.
  • 观察到一种普遍的动态:滴在它们的生命周期中大约25%的时间扩大,在剩余的75%的时间缩小.

更多相关视频

Scalable Stamp Printing and Fabrication of Hemiwicking Surfaces
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Scalable Stamp Printing and Fabrication of Hemiwicking Surfaces

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Deposition of Porous Sorbents on Fabric Supports
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Deposition of Porous Sorbents on Fabric Supports

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相关实验视频

Last Updated: Jan 6, 2026

Fabric Moisture Uniform Control to Study the Influence of Air Impingement Parameters on Fabric Drying Characteristics
06:28

Fabric Moisture Uniform Control to Study the Influence of Air Impingement Parameters on Fabric Drying Characteristics

Published on: August 19, 2019

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Scalable Stamp Printing and Fabrication of Hemiwicking Surfaces
06:16

Scalable Stamp Printing and Fabrication of Hemiwicking Surfaces

Published on: December 18, 2018

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Deposition of Porous Sorbents on Fabric Supports
05:58

Deposition of Porous Sorbents on Fabric Supports

Published on: June 12, 2018

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结论:

  • 在多孔表面上的滴滴的吸收动力学是由扩散和蒸发之间的可预测的相互作用决定的.
  • 污点的最大尺寸和蒸发时间并不线性依赖于初始滴滴体积,这与简单的假设相反.
  • 这些发现为优化应用提供了见解,例如制冷织品和改进法医分析技术.