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相关概念视频

Symmetry in Maxwell's Equations01:28

Symmetry in Maxwell's Equations

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Once the fields have been calculated using Maxwell's four equations, the Lorentz force equation gives the force that the fields exert on a charged particle moving with a certain velocity. The Lorentz force equation combines the force of the electric field and of the magnetic field on the moving charge. Maxwell's equations and the Lorentz force law together encompass all the laws of electricity and magnetism. The symmetry that Maxwell introduced into his mathematical framework may not be...
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Moment of a Force About an Axis: Scalar01:28

Moment of a Force About an Axis: Scalar

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The moment of a force about an axis is a crucial concept in mechanics that helps determine an object's rotational motion around a specific point or axis. The moment of force can be calculated using scalar analysis, which involves considering the perpendicular distance between the axis of rotation and the line of action of the force or simply the moment arm.
To better understand the concept of moment of force, consider the example of a cyclist riding a bicycle. When the cyclist applies force...
356
Moment of a Force: Scalar Formulation01:18

Moment of a Force: Scalar Formulation

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The moment of a force, also known as torque, measures the ability of the force to create rotational motion in a body about an axis. It is a vector quantity, meaning it has both magnitude and direction. This concept is used extensively in engineering, physics, and mechanics.
Consider a simple example of a flywheel being rotated about a point, O, by applying a force to it. In this case, the moment arm is the perpendicular distance between the point O and the line of action of the force. The...
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Orders of Magnitude01:15

Orders of Magnitude

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The order of magnitude of a number is the power of 10 that most closely approximates it. Thus, the order of magnitude estimates the scale (or size) of its value. To find the order of magnitude of a number, take the base-10 logarithm of the number and round it to the nearest integer. Then the order of magnitude of the number is simply the resulting power of 10.
The order of magnitude is simply a way of rounding numbers consistently to the nearest power of 10. This makes doing rough mental math...
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Force and Potential Energy in One Dimension01:13

Force and Potential Energy in One Dimension

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Force can be calculated from the expression for potential energy, which is a function of position. The component of a conservative force, in a particular direction, equals the negative of the derivative of the corresponding potential energy with respect to the displacement in that direction. For regions where potential energy changes rapidly with displacement, the work done and force is maximum. Also, when force is applied along the positive coordinate axis, the potential energy decreases with...
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Non-conservative Forces01:17

Non-conservative Forces

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Non-conservative forces are dissipative forces such as friction or air resistance. These forces take energy away from a system as it progresses. Unlike conservative forces, non-conservative forces do not have potential energy associated with them. This is because the energy is lost to the system and cannot be turned into useful work later.
Also unlike their conservative counterparts, they are path-dependent; where the object starts and stops does matter. For example, a grinding wheel applies a...
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相关实验视频

Updated: Jun 30, 2025

Setting Limits on Supersymmetry Using Simplified Models
07:46

Setting Limits on Supersymmetry Using Simplified Models

Published on: November 15, 2013

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来自QCD轴的第五力有不同的尺度.

Martin Bauer1, Guillaume Rostagni1

  • 1Department of Physics, Institute for Particle Physics Phenomenology, Durham University, Durham DH1 3LE, United Kingdom.

Physical review letters
|March 22, 2024
PubMed
概括

我们从两个轴向重新检查了第五力. 在QCD轴突中,高阶项打破了对称性,将电位变为V{r}∼1/r^{3},影响寻找新的远程力.

科学领域:

  • * 理论物理学的理论物理学
  • * * 粒子物理学 粒子物理学
  • *宇宙学是一门学科.

背景情况:

  • *粒子物理学的标准模型不包括轴子.
  • * 轴子是假设的基本粒子,是暗物质的候选者.
  • * 宏观的第五力可能会从轴子的交换中产生.

研究的目的:

  • * 重新检查两个轴子交换产生的宏观第五力的低能量潜力.
  • * 调查拉格朗日数中更高阶项如何影响潜力.
  • * 确定这些变化对寻找新的远程力量的影响.

主要方法:

  • * 对宏观第五力低能量潜力的分析.
  • * 在线轴相互作用中检查移位对称性.
  • * 在QCD动向的拉格朗基数中包含更高阶项.

主要成果:

  • * 线性动力相互作用导致潜在的缩放为V{\displaystyle V{\text{r}}~1/r{\text{5}} .
  • *QCD轴突转移对称性中的更高阶项,导致主导电位缩放为V{\displaystyle V{\text{r}}-1\r^{3}} .
  • * 这些新的贡献诱导了核子和子的不同力量.

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Measurements of Long-range Electronic Correlations During Femtosecond Diffraction Experiments Performed on Nanocrystals of Buckminsterfullerene
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Measurements of Long-range Electronic Correlations During Femtosecond Diffraction Experiments Performed on Nanocrystals of Buckminsterfullerene

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Stretching Short Sequences of DNA with Constant Force Axial Optical Tweezers
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Last Updated: Jun 30, 2025

Setting Limits on Supersymmetry Using Simplified Models
07:46

Setting Limits on Supersymmetry Using Simplified Models

Published on: November 15, 2013

8.6K
Measurements of Long-range Electronic Correlations During Femtosecond Diffraction Experiments Performed on Nanocrystals of Buckminsterfullerene
08:44

Measurements of Long-range Electronic Correlations During Femtosecond Diffraction Experiments Performed on Nanocrystals of Buckminsterfullerene

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Stretching Short Sequences of DNA with Constant Force Axial Optical Tweezers
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Stretching Short Sequences of DNA with Constant Force Axial Optical Tweezers

Published on: October 13, 2011

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结论:

  • *对第五力潜力的占主导地位的贡献为QCD动向的V{\displaystyle V{\displaystyle r}~1/r^{3} 等级.
  • *这些发现改变了寻找新的远程力量的敏感性.
  • * 这项工作为基于轴的第五力模型提供了更准确的理论框架.