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相关概念视频

Colloids and Suspensions01:17

Colloids and Suspensions

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Children at play often make suspensions such as mixtures of mud and water, flour and water, or a suspension of solid pigments in water known as tempera paint. These suspensions are heterogeneous mixtures composed of relatively large particles visible to the naked eye or seen with a magnifying glass. They are cloudy, and the suspended particles settle out after mixing. The suspended particles in a suspension settle out after some time of mixing. The separation of particles from a suspension is...
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Characteristics of Fluids01:20

Characteristics of Fluids

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When a force is applied parallel to the top surface of a solid, it resists the applied force due to the internal frictional forces between the layers of the solid known as shearing resistance. However, when the force is removed, the shearing forces restore the original shape of the solid. Other deformation forces also cause temporary changes in shape if the forces are not beyond a threshold magnitude. Solids tend to retain their shape, making the study of their rest and motion easier. Beyond...
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First Law: Particles in Two-dimensional Equilibrium01:18

First Law: Particles in Two-dimensional Equilibrium

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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.
Newton's first law tells us about...
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Equations of Motion: Rectangular Coordinates and Cylindrical Coordinates01:21

Equations of Motion: Rectangular Coordinates and Cylindrical Coordinates

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Understanding the motion of particles is a fundamental aspect of classical mechanics, and the choice of the coordinate system plays a pivotal role in unraveling the complexities of their dynamics.
When a particle moves relative to an inertial frame, the equations of motion can be expressed using rectangular components. If the motion is confined to the x-y plane, the equations having the x and y coordinates only can be used to simplify the mathematical representation.
However, when particles...
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The Colloidal State01:29

The Colloidal State

64
The formation of a colloidal system is exemplified by an aqueous solution containing Cl− ions is introduced to another containing Ag+ ions, resulting in the precipitation of solid AgCl as extremely tiny crystals. Instead of settling out as a filterable precipitate, these crystals remain suspended in the liquid, showcasing a colloidal system.A colloidal system involves colloidal particles within the approximate range of 1 to 1000 nm in at least one dimension, dispersed in a medium called...
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Newtonian Fluid: Problem Solving01:18

Newtonian Fluid: Problem Solving

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Newtonian fluids exhibit a constant viscosity, meaning their shear stress and shear strain rate are directly proportional. This property ensures a predictable and stable response to applied forces, maintaining a linear relationship between force and flow. Examples include water, air, and light oils, consistently demonstrating this proportional behavior regardless of external conditions.
A velocity gradient forms within the fluid when a Newtonian fluid is placed between two parallel plates, with...
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Confocal Imaging of Confined Quiescent and Flowing Colloid-polymer Mixtures
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Confocal Imaging of Confined Quiescent and Flowing Colloid-polymer Mixtures

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在硬矩形悬浮中对动态形状变化的反应.

Denis Dertli1, Thomas Speck1

  • 1Institute for Theoretical Physics IV, University of Stuttgart, Heisenbergstr. 3, 70569 Stuttgart, Germany. thomas.speck@itp4.uni-stuttgart.de.

Soft matter
|March 11, 2026
PubMed
概括

动态改变形状的纳米粒子,灵感来自DNA原创,可以在组装过程中卡住. 这项研究探讨了改变粒子形状如何影响它们的集体行为和模拟中的排序.

科学领域:

  • 软物质物理学 软物质物理学
  • 纳米粒子自组装自组装的方法
  • 计算材料科学 计算材料科学

背景情况:

  • 有广泛的研究存在于固定的形状的硬纳米粒子的自主组装.
  • 涉及动态可变粒子形状的系统在很大程度上仍未被探索.
  • DNA原始结构纳米结构提供了一种在需求时创建形状变化的纳米粒子的方法.

研究的目的:

  • 为了研究纳米粒子悬浮体的结构和动力学,经历形状变化.
  • 分析形状转换期间和之后的集体扩散和排序.
  • 了解形状变化的动态对自组装过程的影响.

主要方法:

  • 使用动态硬粒子蒙特卡洛模拟.
  • 模拟以恒定体积进行,使用两个不同的协议.
  • 这项研究的重点是硬正方形延长成矩形.

主要成果:

  • 研究人员发现,模仿DNA原形的级联协议容易受到动态停止的影响.
  • 有效包装分量的增加被确定为动态停止的原因.
  • 在形状变化和放松过程中分析了集体扩散和秩序动态.

结论:

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  • 动态改变纳米粒子形状在自组装中带来了独特的挑战.
  • 形状变化的方法显著影响系统达到平衡的能力.
  • 需要进一步的研究来优化控制改变形状的纳米粒子组装协议.