Jove
Visualize
联系我们
JoVE
x logofacebook logolinkedin logoyoutube logo
关于 JoVE
概览领导团队博客JoVE 帮助中心
作者
出版流程编辑委员会范围与政策同行评审常见问题投稿
图书馆员
用户评价订阅访问资源图书馆顾问委员会常见问题
研究
JoVE JournalMethods CollectionsJoVE Encyclopedia of Experiments存档
教育
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab Manual教师资源中心教师网站
使用条款与条件
隐私政策
政策

相关概念视频

Chemical Formulas02:52

Chemical Formulas

60.9K
A chemical formula presents information about the proportions of atoms constituting a particular chemical compound or molecule, mainly using symbols of elements and numbers. At times other symbols, such as dashes, parentheses, brackets, commas, plus, and minus signs, are also used. A chemical formula can be one of three types – molecular, empirical, and structural.
60.9K
Ionic Compounds: Formulas and Nomenclature03:34

Ionic Compounds: Formulas and Nomenclature

86.2K
An element composed of atoms that readily lose electrons (a metal) can react with an element composed of atoms that readily gain electrons (a nonmetal) to produce ions through complete electron transfer. The compound formed by this transfer is stabilized by the electrostatic attractions (ionic bonds) between the oppositely charged ions.
86.2K
Molecular Compounds: Formulas and Nomenclature03:10

Molecular Compounds: Formulas and Nomenclature

55.3K
Molecular compounds or covalent compounds result when atoms share electrons to form covalent bonds. Since there is no electron transfer, molecular compounds do not contain ions; instead, they consist of discrete, neutral molecules. 
55.3K
Experimental Determination of Chemical Formula02:37

Experimental Determination of Chemical Formula

46.4K
The elemental makeup of a compound defines its chemical identity, and chemical formulas are the most concise way of representing this elemental makeup. When a compound’s formula is unknown, measuring the mass of its constituent elements is often the first step in determining the formula experimentally.
46.4K
Formula Mass and Mole Concepts of Compounds02:56

Formula Mass and Mole Concepts of Compounds

80.6K
Formula Mass of Covalent Compounds
80.6K
The Distance Formula01:20

The Distance Formula

596
In geometry, measuring the direct distance between two points on a plane is essential in various practical and theoretical applications. Whether in navigation, engineering, or computer graphics, determining the shortest path between two locations involves using the distance formula. This formula is derived from the Pythagorean Theorem, which relates the lengths of the sides of a right triangle. On a coordinate plane, the horizontal and vertical distances between two points serve as the legs of...
596

您也可能阅读

相关文章

通过共同作者、期刊和引用图与本文相关的文章。

排序
Same author

Effective dynamics of a particle diffusing in time-dependent confinement.

Physical review. E·2025
Same author

Ratchet effect in an asymmetric two-dimensional system of Janus particles.

Physical review. E·2023
Same author

Transverse dichotomic ratchet in a two-dimensional corrugated channel.

Physical review. E·2022
Same author

UV-Cured Green Polymers for Biosensorics: Correlation of Operational Parameters of Highly Sensitive Biosensors with Nano-Volumes and Adsorption Properties.

Materials (Basel, Switzerland)·2022
Same author

Dichotomic ratchet in a two-dimensional corrugated channel.

Physical review. E·2022
Same author

Reduced dynamics of a one-dimensional Janus particle.

Physical review. E·2021

相关实验视频

Updated: Jan 22, 2026

Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction
10:36

Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction

Published on: May 20, 2018

10.1K

摇摆子通过斯特拉托诺维奇公式重新审视.

Pavol Kalinay1

  • 1Institute of Physics, Slovak Academy of Sciences, Dúbravska cesta 9, 84511 Bratislava, Slovakia.

Physical review. E
|January 21, 2026
PubMed
概括

本研究提出了一种新的分析解决方案,用于在有时间依赖力的道中扩散. 它提供了摇电流的公式,这对于理解复杂系统中的粒子传输至关重要.

科学领域:

  • 物理 物理学 物理
  • 统计力学 统计力学
  • 物理化学 物理化学

背景情况:

  • 在有限的几何结构中扩散对许多物理和生物过程至关重要.
  • 时间依赖的力和灵活的边界使标准扩散模型复杂化.
  • 菲克-雅各布斯方程为模型扩散提供了缩小维度的方法.

研究的目的:

  • 开发一种分析解决方案,用于在频道中的周期性时间依赖力下扩散.
  • 为了研究粒子密度和正流的非对称行为.
  • 导出一个摇摆系统中杆电流的领先项的公式.

主要方法:

  • 用了一般化的Fick-Jacobs (Smoluchowski) 方程来进行1D缩小图像.
  • 采用序列扩展方法来找到非对称的解决方案.
  • 应用了斯特拉托诺维奇公式来计算亚亚巴特极限.
  • 在一个侧侧方向驱动的摇摆系统上测试了溶液.

主要成果:

  • 为了摇密度和正流,得出了一个一致的非对称解决方案.
  • 获取了杆电流 (J_{r,2}(ω) ~ F02的前项的分析公式.
  • 证明了该解决方案对任何通道波纹的适用性h(x).

更多相关视频

The Microscopic Transcanal Approach in Stapes Surgery Revisited
07:35

The Microscopic Transcanal Approach in Stapes Surgery Revisited

Published on: February 16, 2022

2.9K
Synchrotron X-ray Microdiffraction and Fluorescence Imaging of Mineral and Rock Samples
10:12

Synchrotron X-ray Microdiffraction and Fluorescence Imaging of Mineral and Rock Samples

Published on: June 19, 2018

9.5K

相关实验视频

Last Updated: Jan 22, 2026

Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction
10:36

Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction

Published on: May 20, 2018

10.1K
The Microscopic Transcanal Approach in Stapes Surgery Revisited
07:35

The Microscopic Transcanal Approach in Stapes Surgery Revisited

Published on: February 16, 2022

2.9K
Synchrotron X-ray Microdiffraction and Fluorescence Imaging of Mineral and Rock Samples
10:12

Synchrotron X-ray Microdiffraction and Fluorescence Imaging of Mineral and Rock Samples

Published on: June 19, 2018

9.5K

结论:

  • 开发的方法为时间依赖的扩散问题提供了准确的分析框架.
  • 这些发现对于设计和理解人工子和分子电机具有重要意义.
  • 该研究提供了一种强大的方法来分析周期驱动系统中的粒子运输.