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相关概念视频

Chemical Equilibria: Redefining Equilibrium Constant01:20

Chemical Equilibria: Redefining Equilibrium Constant

589
The effect of an inert salt on the solubility of a sparingly soluble salt is known as the salt effect. The degree of the salt effect varies with the ionic strength of the solution, which in turn depends on the activity of the species in the solution. The activity is expressed as the product of concentration and the activity coefficient of the species.
To calculate the equilibrium constants of solutions of moderately high ionic strength, one must account for the salt effect. This redefined...
589
Le Chatelier's Principle: Changing Temperature02:19

Le Chatelier's Principle: Changing Temperature

29.6K
Consistent with the law of mass action, an equilibrium stressed by a change in concentration will shift to re-establish equilibrium without any change in the value of the equilibrium constant, K. When an equilibrium shifts in response to a temperature change, however, it is re-established with a different relative composition that exhibits a different value for the equilibrium constant.
To understand this phenomenon, consider the elementary reaction:
29.6K
Le Chatelier's Principle: Changing Concentration02:27

Le Chatelier's Principle: Changing Concentration

58.4K
A system at equilibrium is in a state of dynamic balance, with forward and reverse reactions taking place at equal rates. If an equilibrium system is subjected to a change in conditions that affects these reaction rates differently (a stress), then the rates are no longer equal and the system is not at equilibrium. The system will subsequently experience a net reaction in the direction of a greater rate (a shift) that will re-establish the equilibrium. This phenomenon is summarized by Le...
58.4K
The Equilibrium Constant03:11

The Equilibrium Constant

47.7K
Consider the oxidation of sulfur dioxide:
47.7K
Solution Equilibrium and Saturation01:59

Solution Equilibrium and Saturation

18.6K
Imagine adding a small amount of sugar to a glass of water, stirring until all the sugar has dissolved, and then adding a bit more. You can repeat this process until the sugar concentration of the solution reaches its natural limit, a limit determined primarily by the relative strengths of the solute-solute, solute-solvent, and solvent-solvent attractive forces. You can be certain that you have reached this limit because, no matter how long you stir the solution, undissolved sugar remains. The...
18.6K
Chemical Equilibria: Systematic Approach to Equilibrium Calculations01:21

Chemical Equilibria: Systematic Approach to Equilibrium Calculations

699
Equilibrium calculations for systems involving multiple equilibria are often complex. For example, to calculate the solubility of a sparingly soluble salt in an aqueous solution in the presence of a common ion, one must consider all the equilibria in this solution. Calculations for these systems can be complicated and tedious, so a systematic approach with a series of steps is often helpful. The process is detailed below.
The first step is to identify all the chemical reactions involved, The...
699

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相关实验视频

Updated: Jun 30, 2025

Accurate Determination of the Equilibrium Surface Tension Values with Area Perturbation Tests
00:07

Accurate Determination of the Equilibrium Surface Tension Values with Area Perturbation Tests

Published on: August 30, 2019

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当一个活跃的浴室表现为一个平衡状态时,一个是平衡状态.

Shubhendu Shekhar Khali1, Fernando Peruani2, Debasish Chaudhuri1,3

  • 1Institute of Physics, Sachivalaya Marg, Bhubaneswar 751005, India.

Physical review. E
|March 16, 2024
PubMed
概括

活跃的布朗粒子系统中的惯性导致类似于平衡的行为,具有正常的速度分布和依赖质量的扩散性. 这与过度缩的系统形成鲜明对比,恢复了爱因斯坦关系.

科学领域:

  • 统计力学 统计力学
  • 软物质物理学 软物质物理学
  • 活动物质物理学 活动物质物理学

背景情况:

  • 活跃的布朗粒子在过度压缩系统中表现出非高斯速率分布.
  • 动力温度和扩散系数通常与活性速度 (v02) 的平方相对应.

研究的目的:

  • 研究惯性效应对活跃的布朗粒子系统的影响.
  • 分析质量如何影响扩散性,移动性和速度分布.
  • 确定在惯性活性系统中是否恢复平衡性质.

主要方法:

  • 惯性活性布朗粒子动力学的理论分析.
  • 导出速度分布和运输系数的导出.
  • 检查与活性速度和粒子质量的缩放行为.

主要成果:

  • 惯性效应导致正常的速度分布,不像过度缩的系统.
  • 运动温度和扩散系数尺度为∼v0^α (1<α<2).
  • 随着粒子质量的增加,晚期的扩散性和移动性会减少.
  • 平衡的爱因斯坦关系是与惯性异常恢复的.

结论:

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Unraveling Entropic Rate Acceleration Induced by Solvent Dynamics in Membrane Enzymes
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  • 惯性质量恢复了活性物质系统中类似平衡的行为.
  • 质量依赖的扩散性和移动性突出了惯性作用.
  • 这些发现挑战了活性粒子动态学的普遍非高斯性质.