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相关概念视频

Crystal Growth: Principles of Crystallization01:25

Crystal Growth: Principles of Crystallization

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Crystallization is a phase transformation process in which crystals are precipitated from a supersaturated solution or formed from other sources. During crystallization, atoms or molecules arrange themselves into a well-defined, rigid crystal lattice to minimize energy.
Initiating crystallization involves manipulating the concentration of the solute and the temperature of the solution. Since crystal growth occurs when the ratio of concentration and solubility of the solute in the solvent...
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Precipitation Processes01:12

Precipitation Processes

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The experimental conditions in a gravimetric analysis should be optimized to maximize the particle size and purity of the obtained precipitate. Ideally, the concentration of the precipitating reagent should be low with effective stirring to maintain low relative supersaturation for the growth of large crystals. In homogeneous precipitation, the precipitant is slowly generated by a chemical reaction in the solution to avoid local reagent excesses. For example, urea decomposes gradually to...
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Mechanism of Lamellipodia Formation01:31

Mechanism of Lamellipodia Formation

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Cells migrating in response to external stimuli form lamellipodia, which are thin membrane protrusions supported by a mesh of linked, branched, or unbranched actin filaments. These actin filaments interact with myosin motor proteins, creating the dynamic actomyosin complex within the cytoskeleton. Contractility, or the ability to generate contractile stress, is inherent to the actomyosin complex. It helps cells detect the stiffness of the surrounding ECM and exert contractile force for...
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Recrystallization: Solid–Solution Equilibria01:10

Recrystallization: Solid–Solution Equilibria

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Recrystallization is a purification technique used to separate impurities from solid compounds. In this technique, no chemical reactions occur. Instead, it exploits physical properties only, specifically, the solubility differences between the desired compound and impurities, either at a single temperature or at different temperatures, and under other selected conditions. The solid-solution equilibrium (solubility equilibrium) of each component in the solution represents a binary phase...
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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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Step-Growth Polymerization: Overview01:03

Step-Growth Polymerization: Overview

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Step-growth or condensation polymerization is a stepwise reaction of bi or multifunctional monomers to form long-chain polymers. As all the monomers are reactive, most of the monomers are consumed at the early stages of the reaction to form small chains of reactive oligomers, which then combine to form long polymer chains in the late stages. Hence, the reaction has to proceed for a long time to achieve high molecular weight polymers.
Many natural and synthetic polymers are produced by...
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堆叠的雷利-泰勒不稳定性 增长的滴滴变成软的石状结构.

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  • 1Department of Chemical and Biological Engineering, <a href="https://ror.org/00hx57361">Princeton University</a>, Princeton, New Jersey 08540, USA.

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概括

研究人员通过反复涂层,流动和凝固液体弹性质,创造了"柔性质",独特的波纹结构. 这个过程揭示了流体动力学和固化之间的迷人相互作用,导致弹性固体中有序但混乱的模式.

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科学领域:

  • 地质物理流体动力学
  • 材料科学 是一种材料科学.
  • 软物质物理学 软物质物理学

背景情况:

  • 薄膜水力动力学和固化产生复杂的自然结构,如 stalactites 和冰块.
  • 表面上的牛顿流体膜中的雷利-泰勒不稳定性产生掉落格子.
  • 薄膜的固化及其对界面不稳定性的影响不太清楚.

研究的目的:

  • 为了研究凝固薄弹性体薄膜中的图案形成.
  • 探索创建新型结构的代外套流疗法过程.
  • 分析由此产生的波纹结构的结构,形状,排列和可变性,称为"柔性结构".

主要方法:

  • 用液体弹性体涂覆平面的底面.
  • 允许液体薄膜在重力下不稳定并流动,同时固化成弹性固体.
  • 循序渐进地重复外层流愈合过程,以构建波纹结构.

主要成果:

  • 代过程从最初的薄膜不稳定性产生了数组固体滴.
  • 随后的代导致波纹纤细结构的形成,作者将其命名为"flexicles".
  • 该研究分析了灵活体的形成和性质中秩序和混乱的相互作用.

结论:

  • 涂层流固化工艺提供了一种方法,可以通过凝固薄膜来创建复杂的,可变形的结构.
  • 柔性体在它们的形态和排列中表现出秩序和混乱的独特组合.
  • 了解这些结构,可以深入了解地质物理模式的形成和软物质物理学.