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相关概念视频

Diffusion01:12

Diffusion

Diffusion is the passive movement of substances down their concentration gradients—requiring no expenditure of cellular energy. Substances, such as molecules or ions, diffuse from an area of high concentration to an area of low concentration in the cytosol or across membranes. Eventually, the concentration will even out, with the substance moving randomly but causing no net change in concentration. Such a state is called dynamic equilibrium, which is essential for maintaining overall...
Gas Exchange and Transport01:20

Gas Exchange and Transport

Gas exchange, the intake of molecular oxygen (O2) from the environment and the outflow of carbon dioxide (CO2) into the environment, is necessary for cellular function. Gas exchange during respiration occurs largely via the movement of gas molecules along pressure gradients. Gas travels from areas of higher partial pressure to areas of lower partial pressure. In mammals, gas exchange occurs in the alveoli of the lungs, which are adjacent to capillaries and share a membrane with them.
Behavior of Gas Molecules: Molecular Diffusion, Mean Free Path, and Effusion03:48

Behavior of Gas Molecules: Molecular Diffusion, Mean Free Path, and Effusion

Although gaseous molecules travel at tremendous speeds (hundreds of meters per second), they collide with other gaseous molecules and travel in many different directions before reaching the desired target. At room temperature, a gaseous molecule will experience billions of collisions per second. The mean free path is the average distance a molecule travels between collisions. The mean free path increases with decreasing pressure; in general, the mean free path for a gaseous molecule will be...
Diffusion01:21

Diffusion

Diffusion is a type of passive transport. In passive transport, a substance tends to move from an area of high concentration to an area of low concentration until the concentration is equal across the space. For example, take the diffusion of substances through the air. When someone opens a perfume bottle in a room filled with people, the perfume is at its highest concentration in the bottle and is at its lowest at the edges of the room. The perfume vapor will diffuse, or spread away, from the...
Diffusion on Chromatography Columns01:07

Diffusion on Chromatography Columns

In column chromatography, when an analyte is introduced as a narrow band at the top of the column, the solutes begin to separate and broaden, developing a Gaussian profile. This broadening occurs due to various factors, such as longitudinal diffusion.
Longitudinal diffusion occurs when the solute molecules in the mobile phase diffuse from the more concentrated center of the chromatographic band to the more dilute regions on either side, both towards and against the flow direction. This...
External and Internal Respiration01:24

External and Internal Respiration

External respiration occurs in the lungs, and it is the first step in the journey of oxygen inside the body. When we inhale, oxygen enters our lungs and diffuses across the thin alveolar membrane. The alveoli are tiny, air-filled sacs that provide a vast surface area for gas exchange. Oxygen in the alveoli has a higher partial pressure (105 mmHg) than in the adjacent pulmonary capillaries (40 mmHg), establishing a pressure gradient. As a result, oxygen molecules move from the alveoli into the...

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相关实验视频

Updated: Jul 7, 2026

Whole-Body Nanoparticle Aerosol Inhalation Exposures
10:11

Whole-Body Nanoparticle Aerosol Inhalation Exposures

Published on: May 7, 2013

下层大气层的扩散分离.

Yosuke Adachi1, Kenji Kawamura, Laurence Armi

  • 1Scripps Institution of Oceanography, 9500 Gilman Drive, La Jolla, CA 92093-0244, USA.

Science (New York, N.Y.)
|March 11, 2006
PubMed
概括

大气中的气体通过重力分离,这是由于流而在较低的大气层以前无法检测到的现象. 研究人员在近地表面的空气中检测到这种引力分离,主要是由热影响驱动的.

科学领域:

  • 大气科学 大气科学
  • 地质物理学 地质物理学
  • 物理化学 物理化学

背景情况:

  • 大气气体的重力分离已经被理论化了近200年.
  • 从历史上看,低层大气中的乱混合使得这种现象无法经验检测.
  • 强烈的夜间逆转会创造稳定的大气条件,有利于观察微妙的影响.

研究的目的:

  • 通过实验检测和量化大气成分的引力分离.
  • 研究热量和重力测量因素对近地层气体分离的影响.
  • 为了确定热与重力度对观察到的分离贡献的相对重要性.

主要方法:

  • 在强烈的夜间逆转期间从近地层收集空气样本.
  • 在采集的空气样本中使用精确测量/ (Ar/N2) 比率.
  • 分析数据以识别和量化大气成分比率因分离而导致的变化.

主要成果:

  • 成功检测到近地表空气中的大气成分的引力分离.
  • 观察到的分离与热力和重力力联合作用相一致.
  • 发现对分离效应的热贡献比重力度贡献更为重要.

结论:

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Exploring the Effects of Atmospheric Forcings on Evaporation: Experimental Integration of the Atmospheric Boundary Layer and Shallow Subsurface
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Composition and Distribution Analysis of Bioaerosols Under Different Environmental Conditions

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相关实验视频

Last Updated: Jul 7, 2026

Whole-Body Nanoparticle Aerosol Inhalation Exposures
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Whole-Body Nanoparticle Aerosol Inhalation Exposures

Published on: May 7, 2013

Exploring the Effects of Atmospheric Forcings on Evaporation: Experimental Integration of the Atmospheric Boundary Layer and Shallow Subsurface
13:27

Exploring the Effects of Atmospheric Forcings on Evaporation: Experimental Integration of the Atmospheric Boundary Layer and Shallow Subsurface

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Composition and Distribution Analysis of Bioaerosols Under Different Environmental Conditions
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  • 大气气体的重力分离在特定条件下是可检测的,例如强烈的夜间反转.
  • 热梯度在驱动近地表大气中的气体分离方面发挥着主导作用.
  • 这一发现证实了长期存在的理论,并为大气组成研究开辟了新的途径.