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相关概念视频

Thermal Expansion01:22

Thermal Expansion

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The expansion of alcohol in a thermometer is one of many commonly encountered examples of thermal expansion, which is the change in size or volume of a given system as its temperature changes. The most visible example is the expansion of hot air. When air is heated, it expands and becomes less dense than the surrounding air, which then exerts an upward force on the hot air to, for example, make steam and smoke rise, and hot air balloons float. The same behavior happens in all liquids and gases,...
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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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Role of Water in Human Biology01:27

Role of Water in Human Biology

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Water is the one of the most significant components of the human body; it plays a crucial role in several physiological activities because of its unique physicochemical properties. Importantly, it helps to regulate body temperature and is the chief component of several body fluids.
Water's Solvent Properties
Since water is a polar molecule with slightly positive and slightly negative charges, ions and polar molecules can readily dissolve in it. Therefore, it is referred to as a solvent, a...
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Density, Specific Weight, Specific Gravity and Compressibility of Fluid01:27

Density, Specific Weight, Specific Gravity and Compressibility of Fluid

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Density, specific weight, specific gravity, and compressibility are fundamental properties of fluids. Density is the mass per unit volume, characterizing the mass of a fluid system. It influences buoyancy, pressure, flow dynamics, viscosity, thermal conductivity, and sound propagation. For instance, in pipeline design, accurate density measurements ensure that the pipeline can handle the fluid's mass.
Specific weight represents the weight per unit volume and is calculated by multiplying...
297
Sound as Pressure Waves01:17

Sound as Pressure Waves

2.4K
Sound waves, which are longitudinal waves, can be modeled as the displacement amplitude varying as a function of the spatial and temporal coordinates. As a column of the medium is displaced, its successive columns are also displaced. As the successive displacements differ relatively, a pressure difference with the surrounding pressure is created. The gauge pressure varies across the medium.
The pressure fluctuation depends on the difference in displacements between the successive points in the...
2.4K
Solubility Equilibria: Ionic Product of Water01:16

Solubility Equilibria: Ionic Product of Water

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Pure water is a weak electrolyte; only a small amount ionizes into hydrogen and hydroxide ions. At any given temperature, the concentration of undissociated water is almost constant, so the ionic product of water is the product of the hydrogen and hydroxide ion concentrations, denoted as Kw. The square root of Kw gives the individual ion concentrations.
The ionic product of water varies with temperature, and its value is 1.0 x 10−14 at standard experimental conditions. Per Le...
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相关实验视频

Updated: Jun 23, 2025

Studying Large Amplitude Oscillatory Shear Response of Soft Materials
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Studying Large Amplitude Oscillatory Shear Response of Soft Materials

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当地的和全球的水域扩张性.

Jan Philipp Gabriel1, Robin Horstmann2, Martin Tress3

  • 1Institute of Materials Physics in Space, German Aerospace Center, 51170 Köln, Germany.

The Journal of chemical physics
|June 17, 2024
PubMed
概括

我们揭示了水是如何工作的.

科学领域:

  • 物理化学 物理化学
  • 材料科学 材料科学 材料科学
  • 频谱学是一种光谱学.

背景情况:

  • 液体的超分子结构决定了动力学和宏观性质,如粘度.
  • 了解温度的结构变化对于液体到玻璃动态至关重要.

研究的目的:

  • 在广泛的温度范围内定量确定水中分子间键的长度.
  • 研究键膨胀率与平均氧气-氧气距离之间的关系.
  • 确定与热异常相关的水的超分子排列中的特征点.

主要方法:

  • 红外 (IR) 光谱法用于测量键拉伸振动.
  • 分子动力学模拟.分子动力学模拟.
  • 实验和模拟数据的定量分析.

主要成果:

  • 提取的键膨胀性与氧气-氧气距离膨胀性显著不同.
  • 一个随机松散包装模型通过协调号码连接这些属性.
  • 最紧的分子排列发生在316-331K左右,接近压力异常温度.

结论:

  • 分子间H键膨胀性是水的热演变的一个关键因素.

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  • 这项研究证实了一种用红外光谱学推断分子间H键长度的定量方法.
  • 这种方法为分子波动和超分子安排提供了新的见解.