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相关概念视频

Beams with Symmetric Loadings01:15

Beams with Symmetric Loadings

377
The moment-area method is an analytical tool used in structural engineering to determine the slope and deflection of beams under various loads. Consider a cantilever with a concentrated load and moment at the free end. The first step is constructing a free-body diagram to calculate the reactions at the fixed end. Next, the bending moment diagram is plotted to visualize how the bending moment varies along the beam's length, focusing on points where the bending moment equals zero.
The M/EI...
377
Beams with Unsymmetric Loadings01:17

Beams with Unsymmetric Loadings

390
Analyzing a supported beam under unsymmetrical loadings is essential in structural engineering to understand how beams respond to varied force distributions. This analysis involves calculating the deflection and identifying points where the slope of the beam is zero, which are crucial for ensuring structural stability and functionality.
The first moment-area theorem determines the slope at any point on the beam. This theorem indicates that the change in slope between two points on a beam...
390
Gauss's Law: Planar Symmetry01:27

Gauss's Law: Planar Symmetry

9.3K
A planar symmetry of charge density is obtained when charges are uniformly spread over a large flat surface. In planar symmetry, all points in a plane parallel to the plane of charge are identical with respect to the charges. Suppose the plane of the charge distribution is the xy-plane, and the electric field at a space point P with coordinates (x, y, z) is to be determined. Since the charge density is the same at all (x, y) - coordinates in the z = 0 plane, by symmetry, the electric field at P...
9.3K
Gauss's Law: Spherical Symmetry01:26

Gauss's Law: Spherical Symmetry

9.0K
A charge distribution has spherical symmetry if the density of charge depends only on the distance from a point in space and not on the direction. In other words, if the system is rotated, it doesn't look different. For instance, if a sphere of radius R is uniformly charged with charge density ρ0, then the distribution has spherical symmetry. On the other hand, if a sphere of radius R is charged so that the top half of the sphere has a uniform charge density ρ1 and the bottom half has a...
9.0K
Gauss's Law: Cylindrical Symmetry01:20

Gauss's Law: Cylindrical Symmetry

9.2K
A charge distribution has cylindrical symmetry if the charge density depends only upon the distance from the axis of the cylinder and does not vary along the axis or with the direction about the axis. In other words, if a system varies if it is rotated around the axis or shifted along the axis, it does not have cylindrical symmetry. In real systems, we do not have infinite cylinders; however, if the cylindrical object is considerably longer than the radius from it that we are interested in,...
9.2K
Gauss's Law01:07

Gauss's Law

9.3K
If a closed surface does not have any charge inside where an electric field line can terminate, then the electric field line entering the surface at one point must necessarily exit at some other point of the surface. Therefore, if a closed surface does not have any charges inside the enclosed volume, then the electric flux through the surface is zero. What happens to the electric flux if there are some charges inside the enclosed volume? Gauss's law gives a quantitative answer to this question.
9.3K

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相关实验视频

Updated: Jan 11, 2026

The Generation of Higher-order Laguerre-Gauss Optical Beams for High-precision Interferometry
12:14

The Generation of Higher-order Laguerre-Gauss Optical Beams for High-precision Interferometry

Published on: August 12, 2013

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双拉格尔·高斯伪谢尔模型梁的双拉格尔·高斯模型梁.

Zhangrong Mei, Jingnan Yang, Bingsong Cao

    Optics express
    |November 11, 2025
    PubMed
    概括

    我们介绍了新的伪谢尔模型 (PSM) 源,具有双拉格尔高斯 (DLG) 连贯性. 这些源使可调节的部分连贯性和可控制的光束和束的自我聚焦成为可能.

    科学领域:

    • 光学和光子学 在光学和光子学.
    • 一致性理论是一致性理论.
    • 梁传播 梁传播

    背景情况:

    • 伪谢尔模型 (PSM) 源在光学研究中被广泛使用.
    • 控制光的相干性质对于各种应用至关重要.
    • 拉格尔-高斯 (Laguerre-Gaussian,LG) 束以其独特的相位结构而闻名.

    研究的目的:

    • 引入一个新的类型的伪舍尔模型 (PSM) 源.
    • 为了研究这些来源产生的光场的自我聚焦特性.
    • 为了证明具有可调整连贯性的束的生成和特征.

    主要方法:

    • 开发一种新的PSM源类,具有双拉格勒高斯 (DLG) 光谱连贯度.
    • 分析DLG-PSM源辐射的光场的传播动态.
    • 产生和描述具有任意拓电荷的DLG-PSM波束.

    主要成果:

    • DLG-PSM源对共同辐射点表现出完美的连贯性,对非辐射点表现出可调节的部分连贯性.
    • 来自DLG-PSM源的光场显示可控制的自我聚焦效果,可调节的焦距和峰值强度.
    • DLG-PSM波束保持稳定的环形形状,中心强度为零,在传播过程中具有可控制的自我聚焦.

    更多相关视频

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    Transmission of Multiple Signals through an Optical Fiber Using Wavefront Shaping
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    The Generation of Higher-order Laguerre-Gauss Optical Beams for High-precision Interferometry
    12:14

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    Published on: August 12, 2013

    22.4K
    Shaping the Amplitude and Phase of Laser Beams by Using a Phase-only Spatial Light Modulator
    08:39

    Shaping the Amplitude and Phase of Laser Beams by Using a Phase-only Spatial Light Modulator

    Published on: January 28, 2019

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    Transmission of Multiple Signals through an Optical Fiber Using Wavefront Shaping
    09:43

    Transmission of Multiple Signals through an Optical Fiber Using Wavefront Shaping

    Published on: March 20, 2017

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    结论:

    • 新的DLG-PSM源提供了对连贯性质和光束传播的独特控制.
    • 调整自我聚焦行为的能力和产生稳定的旋转束的能力为光学应用开辟了新的途径.
    • 这项研究为先进的光束塑造和操纵提供了一个多功能平台.