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相关概念视频

Virtual Work for a System of Connected Rigid Bodies01:06

Virtual Work for a System of Connected Rigid Bodies

388
Virtual work is a powerful method used to solve problems involving several connected rigid bodies. When the system is in equilibrium, virtual work is zero. This allows the calculation of the resulting forces when a system undergoes a virtual displacement. When attempting to analyze such a system, first, use a free-body diagram, where an independent coordinate represents the configuration of the links, and mark its deflected position resulting from the positive virtual displacement.
Next,...
388
Relative Velocity in Two Dimensions01:11

Relative Velocity in Two Dimensions

7.2K
Relative velocity is the velocity of an object as observed from a particular reference frame, or the velocity of one reference frame with respect to another reference frame. The concept of relative velocity can be used to describe motion in two dimensions. Consider a particle P and two reference frames S and S′. The position of the origin of S′ as measured in S is , the position of P as measured in S′ is , and the position of P as measured in S is , which can be evaluated by...
7.2K
Virtual Work01:20

Virtual Work

848
The principle of virtual work states that if a body is in static and dynamic equilibrium, then the sum of all the virtual work done by all external forces and couple moments for any given virtual displacement must be zero.
In static equilibrium, a body can experience an imaginary or virtual movement, such as displacement or rotation. The virtual work done by a force is equal to the dot product of force and virtual displacement in the direction of the force. When it comes to virtually rotating a...
848
Relative Velocity in One Dimension01:10

Relative Velocity in One Dimension

7.7K
The understanding of the concept of reference frames is essential to discuss relative motion in one or more dimensions. When we say that an object has a certain velocity, we must state the velocity with respect to a given reference frame. In most examples, this reference frame has been Earth. For instance, if a statement reads that a person is sitting in a train moving at 10 m/s east, then it implies that the person on the train is moving relative to the surface of Earth at this velocity,...
7.7K
Relative Motion Analysis - Velocity01:24

Relative Motion Analysis - Velocity

368
A stroke engine has a slider-crank mechanism that converts rotational motion from the crank into linear motion of the slider or vice versa. This mechanism consists of three main parts: the crank, the connecting rod, and the slider.
When an external force is exerted, it sets the crank into a rotational movement. This, in turn, instigates the motion of the connecting rod, leading to what is referred to as a general plane motion. This process involves two key points - point A on the connecting rod...
368
Absolute Motion Analysis- General Plane Motion01:24

Absolute Motion Analysis- General Plane Motion

224
Visualize a drone, with its propellers spinning rapidly, hovering mid-air. The fascinating movements and operations of this drone can be comprehended by applying the principle of general plane motion.
As the drone's propellers rotate, an upward force is generated that counteracts the force of gravity, enabling the drone to lift off from the ground. This initial movement of the drone is along a straight path, representing a form of translational motion. In this phase, every point on the...
224

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相关实验视频

Updated: Jul 9, 2025

Creating Virtual-hand and Virtual-face Illusions to Investigate Self-representation
06:53

Creating Virtual-hand and Virtual-face Illusions to Investigate Self-representation

Published on: March 1, 2017

13.3K

在虚拟运动中的时间和距离的可分离表示.

Keri Anne Gladhill1, Eva Marie Robinson2, Candice Stanfield-Wiswell1

  • 1George Mason University, Fairfax, VA.

Journal of cognitive neuroscience
|December 7, 2023
PubMed
概括

大脑使用不同的神经系统来跟踪空间距离和时间间隔. 这些单独的系统与用于导航的一般大小估计相集成.

科学领域:

  • 神经科学是一个神经科学.
  • 认知科学 认知科学
  • 人类导航人类导航

背景情况:

  • 人类同时跟踪空间距离和时间间隔,以便在环境中导航.
  • 同时的空间和时间度量跟踪背后的神经机制仍然不清楚.
  • 目前的理论表明,对于空间和时间指标,基于参考点的估计.

研究的目的:

  • 研究大脑如何同时表示空间距离和时间间隔.
  • 识别涉及空间与时间估计的独特或共享的神经网络.
  • 探索大脑解码空间和时间大小的能力.

主要方法:

  • 人类参与者 (n=24) 在虚拟环境中执行了距离估计任务.
  • 参与者被指导专注于空间或时间间隔.
  • 多带功能磁共振成像 (fMRI) 用于测量大脑活动.
  • 使用多变量模式分析 (MVPA) 和交叉分类来解码神经表征.

主要成果:

  • 空间和时间估计都涉及类似的前面对面网络.
  • 观察到一张脸状尾分离,有不同的时间 (SMA) 和空间 (回皮层) 处理区域.
  • MVPA成功地根据神经数据预测了时间或空间间隔.

更多相关视频

Measuring the Kinematics of Daily Living Movements with Motion Capture Systems in Virtual Reality
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Measuring the Kinematics of Daily Living Movements with Motion Capture Systems in Virtual Reality

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Virtual Hand with Ambiguous Movement between the Self and Other Origin: Sense of Ownership and 'Other-Produced' Agency
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Virtual Hand with Ambiguous Movement between the Self and Other Origin: Sense of Ownership and 'Other-Produced' Agency

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相关实验视频

Last Updated: Jul 9, 2025

Creating Virtual-hand and Virtual-face Illusions to Investigate Self-representation
06:53

Creating Virtual-hand and Virtual-face Illusions to Investigate Self-representation

Published on: March 1, 2017

13.3K
Measuring the Kinematics of Daily Living Movements with Motion Capture Systems in Virtual Reality
08:45

Measuring the Kinematics of Daily Living Movements with Motion Capture Systems in Virtual Reality

Published on: April 5, 2018

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Virtual Hand with Ambiguous Movement between the Self and Other Origin: Sense of Ownership and 'Other-Produced' Agency
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Virtual Hand with Ambiguous Movement between the Self and Other Origin: Sense of Ownership and 'Other-Produced' Agency

Published on: October 28, 2020

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  • 右上边缘环和尾位置区域解码了一般的行驶距离大小.
  • 结论:

    • 大脑使用单独的神经系统来跟踪空间和时间距离.
    • 这些不同的系统与非特定维度的估计进行了整合,以实现全面的导航.
    • 这些发现阐明了同时空间和时间度量表示的神经基础.