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相关概念视频

Stokes' Law01:20

Stokes' Law

1.3K
Viscous forces, like friction, are intermolecular forces that resist the relative motion of molecules over each other. When a solid body moves through a liquid, viscous forces drag it in the opposite direction. The force's magnitude depends on the solid's shape and size, as well as its speed and the liquid's coefficient of viscosity, density and temperature.
The expression for the force on a solid spherical object in a fluid is called Stokes' law. Stokes' law is valid only...
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Divergence and Stokes' Theorems01:06

Divergence and Stokes' Theorems

1.6K
The divergence and Stokes' theorems are a variation of Green's theorem in a higher dimension. They are also a generalization of the fundamental theorem of calculus. The divergence theorem and Stokes' theorem are in a way similar to each other; The divergence theorem relates to the dot product of a vector, while Stokes' theorem relates to the curl of a vector. Many applications in physics and engineering make use of the divergence and Stokes' theorems, enabling us to write...
1.6K
Magnetic Vector Potential01:15

Magnetic Vector Potential

620
In electrostatics, the electric field can be written as the negative gradient of the potential. In magnetostatics, the zero divergence of the magnetic field ensures that the magnetic field can be expressed as the curl of a vector potential. This potential is known as the magnetic vector potential.
Consider an ideal solenoid with n turns per unit length and radius R. If I is the current through the solenoid, the magnetic field inside the solenoid is expressed as the product of vacuum...
620
Vector Algebra: Method of Components01:08

Vector Algebra: Method of Components

13.9K
It is cumbersome to find the magnitudes of vectors using the parallelogram rule or using the graphical method to perform mathematical operations like addition, subtraction, and multiplication. There are two ways to circumvent this algebraic complexity. One way is to draw the vectors to scale, as in navigation, and read approximate vector lengths and angles (directions) from the graphs. The other way is to use the method of components.
In many applications, the magnitudes and directions of...
13.9K
Reynolds Transport Theorem01:24

Reynolds Transport Theorem

1.2K
The Reynolds transport theorem provides a framework to relate the time rate of change of an extensive property within a system to that in a control volume, which is crucial for analyzing fluid dynamics. Extensive properties, such as mass, velocity, acceleration, temperature, and momentum, can be expressed in terms of the mass of a fluid portion. These properties are called extensive because they depend on the system's size, while intensive properties are their corresponding values per unit...
1.2K
Couples: Scalar and Vector Formulation01:21

Couples: Scalar and Vector Formulation

246
One might wonder how the captain of a large ship can navigate through the ocean with just a turn of the steering wheel. The answer lies in the concept of two parallel forces that are equal in magnitude and opposite sense, creating a couple moment.
A couple moment is a rotational force that tends to rotate the steering wheel. The wheel's rotation can either be in a clockwise or anticlockwise direction. The right-hand rule is a helpful method for determining the direction of a couple moment....
246

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相关实验视频

Updated: Jun 29, 2025

High-speed Particle Image Velocimetry Near Surfaces
11:59

High-speed Particle Image Velocimetry Near Surfaces

Published on: June 24, 2013

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通过强烈测量弱值来表征斯托克斯向量.

C Montenegro, M Jara, J P Marrou

    Journal of the Optical Society of America. A, Optics, image science, and vision
    |April 3, 2024
    PubMed
    概括
    此摘要是机器生成的。

    我们开发了一种新的斯托克斯极度测量方法,适用于弱合和强合. 这种技术表明,量子概念可以描述经典现象.

    更多相关视频

    Simultaneous Measurement of Turbulence and Particle Kinematics Using Flow Imaging Techniques
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    Simultaneous Measurement of Turbulence and Particle Kinematics Using Flow Imaging Techniques

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    Experimental Investigation of Secondary Flow Structures Downstream of a Model Type IV Stent Failure in a 180° Curved Artery Test Section
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    Experimental Investigation of Secondary Flow Structures Downstream of a Model Type IV Stent Failure in a 180° Curved Artery Test Section

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    相关实验视频

    Last Updated: Jun 29, 2025

    High-speed Particle Image Velocimetry Near Surfaces
    11:59

    High-speed Particle Image Velocimetry Near Surfaces

    Published on: June 24, 2013

    33.1K
    Simultaneous Measurement of Turbulence and Particle Kinematics Using Flow Imaging Techniques
    10:53

    Simultaneous Measurement of Turbulence and Particle Kinematics Using Flow Imaging Techniques

    Published on: March 12, 2019

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    Experimental Investigation of Secondary Flow Structures Downstream of a Model Type IV Stent Failure in a 180° Curved Artery Test Section
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    Experimental Investigation of Secondary Flow Structures Downstream of a Model Type IV Stent Failure in a 180° Curved Artery Test Section

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    科学领域:

    • 光学和光子学 在光学和光子学.
    • 量子力学就是量子力学.
    • 经典物理学 经典物理学

    背景情况:

    • 斯托克斯极度测量对于描述光的极化是至关重要的.
    • 传统方法通常依赖于弱合制度,限制了适用性.
    • 弱值测量为极度测量提供了一个新的理论框架.

    研究的目的:

    • 实施基于弱值测量的非标准斯托克斯极度测量程序.
    • 扩展极度测量超越弱合模式,包括强合.
    • 研究量子现象和经典现象之间共同的特性.

    主要方法:

    • 开发了一种可替代的光学设置,配有可调节的移动镜子来控制合强度.
    • 使用激光束进行了概念验证实验.
    • 使用电荷合装置 (CCD) 记录和处理实验数据.

    主要成果:

    • 成功实施了斯托克斯极度测量程序,用于弱合和强合系统.
    • 通过调整实验设置,通过调整实验设置,证明了在弱合和强合之间过渡的能力.
    • 实验结果验证了理论框架.

    结论:

    • 实施的程序是多功能,适用于各种合强度.
    • 最初在量子上下文中提出的概念被证明与经典现象相关.
    • 这项工作通过统一的极度测量方法将量子和古典物理联系起来.