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相关概念视频

Torque01:10

Torque

13.6K
Torque is an important quantity for describing the dynamics of a rotating rigid body. We see the application of torque in many ways in the world, such as when pressing the accelerator in a car, which causes the engine to apply additional torque on the drivetrain. Here, we define torque and provide a framework to create an equation to calculate torque for a rigid body with fixed-axis rotation.
Torque can be considered as the rotational counterpart to force. Since forces change the translational...
13.6K
Toroids01:27

Toroids

2.8K
A toroid is a closely wound donut-shaped coil constructed using a single  conducting wire. In general, it is assumed that a toriod consists of  multiple circular loops perpendicular to its axis.
When connected to a supply, the magnetic field generated in the toroid has field lines circular and concentric to its axis. Conventionally, the direction of this magnetic field is expressed using the right-hand rule. If the fingers of the right hand curl in the current direction, the thumb...
2.8K
Torque On A Current Loop In A Magnetic Field01:13

Torque On A Current Loop In A Magnetic Field

3.7K
The most common application of magnetic force on current-carrying wires is in electric motors. These consist of loops of wire, which are placed between the magnets with a magnetic field. When current flows through the loops, the magnetic field applies torque, which causes the shaft to rotate, thus converting electrical energy to mechanical energy.
Consider a rectangular current-carrying loop containing N turns of wire, placed in a uniform magnetic field. The net force on a current-carrying loop...
3.7K
Torque Free Motion01:15

Torque Free Motion

413
The torque-free motion refers to the movement of a rigid body in space when no external torques are acting upon it. This type of motion can be observed in environments where there are no external forces or frictions, like in outer space. For example, a rotation of Mars in space is a torque-free motion. Mars is an axisymmetric object, meaning it has an axis of symmetry along which it rotates, designated as the z-axis. The rotating frame of reference is defined such that the center of mass of...
413
Parallel-Axis Theorem for an Area01:12

Parallel-Axis Theorem for an Area

1.2K
The moment of inertia is a fundamental concept in mechanical engineering that plays a significant role in designing rotationally symmetric objects such as flywheels, gears, and other mechanical systems. In this context, we will discuss the moment of inertia of a flywheel rotating about its centroidal axis and how it relates to the moment of inertia about an axis parallel to it.
For a flywheel approximated as a solid disc, consider an infinitesimal differential element with an arbitrary distance...
1.2K
Rotational Motion about a Fixed Axis01:26

Rotational Motion about a Fixed Axis

327
A rigid body's rotation around a fixed axis makes every point within it trace a circular path around a specific line or point. The term given to this type of spinning is defined by the angular position, symbolized by the angle θ. This angle is gauged from a static reference line to the revolving object. From this angular position, any variation is referred to as angular displacement, denoted by dθ. The extent of this displacement can be calculated in degrees, radians, or...
327

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Uncoupling Coriolis Force and Rotating Buoyancy Effects on Full-Field Heat Transfer Properties of a Rotating Channel
10:03

Uncoupling Coriolis Force and Rotating Buoyancy Effects on Full-Field Heat Transfer Properties of a Rotating Channel

Published on: October 5, 2018

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在Cs2FeCl5·D2O中的铁性.

J Alberto Rodríguez Velamazán1, Óscar Fabelo2, Navid Qureshi2

  • 1Institut Laue-Langevin, 71, av des Martyrs CS 20156, Grenoble, 38042, France. velamazan@ill.eu.

Scientific reports
|December 29, 2024
PubMed
概括

研究人员在Cs2[FeCl5(D2O) ]中发现了铁性,这是一个新的磁性秩序. 这一发现为操纵反铁磁状态提供了一种新方法,这对于推进自旋电子技术至关重要.

科学领域:

  • 凝聚物质物理学 凝聚物质物理学
  • 材料科学 材料科学 材料科学
  • 磁力学 磁力学 是一种

背景情况:

  • 反铁磁螺旋电子需要对磁态进行电气操纵.
  • 创新的材料平台对于这一进步至关重要.
  • 红石化合物表现出磁电合.

研究的目的:

  • 探索新型红酸盐类化合物中的新型铁序列.
  • 为了研究Cs2[FeCl5(D2O) ]中的铁化性.
  • 为了展示一种操纵磁态的新途径.

主要方法:

  • 单晶球形中子极度测量. 单晶球形中子极度测量.
  • 电场 (E) 和磁场 (H) 的应用.
  • 分析磁体结构和铁形时刻.

主要成果:

  • Cs2[FeCl5(D2O) ]表现出铁状性,具有在平面内的铁状矩.
  • 状域被一个结合的ExH场选择性地控制.
  • 球状中子极度测试成功检测并量化了 toroidal 域选择.

结论:

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  • 在Cs2[FeCl5(D2O) ]中的铁性提供了对抗铁磁状态的电学操纵的替代方案.
  • 这一发现为旋转电子应用开辟了新的途径.
  • 这项研究突出了球状中子极度测量的实用性,用于表征复杂的磁顺序.