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相关概念视频

Hydraulic Jump: Problem Solving01:16

Hydraulic Jump: Problem Solving

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To analyze a hydraulic jump in a rectangular channel with a flow speed of 6 meters per second, follow these steps:Calculate Effective Upstream Velocity:When the downstream gate closes, a hydraulic jump forms, traveling upstream at 2 meters per second. This wave speed combines with the initial channel flow velocity, creating an effective upstream velocity.Identify Flow Velocities Before and After the Hydraulic Jump:Upstream of the hydraulic jump, the effective flow velocity includes both the...
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Three-Dimensional Force System:Problem Solving01:30

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A three-dimensional force system refers to a scenario in which three forces act simultaneously in three different directions. This type of problem is commonly encountered in physics and engineering, where it is necessary to calculate the resultant force on the system, which can then be used to predict or analyze the behavior of the object or structure under consideration.
To solve a three-dimensional force system, first resolve each force into its respective scalar components. Do this using...
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Rolling Resistance: Problem Solving01:17

Rolling Resistance: Problem Solving

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Rolling resistance, also known as rolling friction, is the force that resists the motion of a rolling object, such as a wheel, tire, or ball, when it moves over a surface. It is caused by the deformation of the object and the surface in contact with each other, as well as other factors like internal friction, hysteresis, and energy losses within the materials. Rolling resistance opposes the object's motion, requiring additional energy to overcome it and maintain movement. In practical...
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Two-Dimensional Force System: Problem Solving01:29

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Solving problems related to two-dimensional force systems is an essential aspect of mechanics and engineering. By applying the principles of vector analysis and force equilibrium, one can determine the effect of multiple forces acting on an object in a two-dimensional space.
The first step to solving a two-dimensional force system problem is to draw a free-body diagram of the object under consideration. This diagram helps identify all the external forces acting on the object, including their...
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疯狂的迷宫:基于障碍物的振动触觉指导

Fanlin Meng, Claudia Igney, Thomas Mutzke

    Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference
    |December 3, 2025
    PubMed
    概括

    这项研究为视力受损者提供了新的基于障碍的振动触觉指导,使用虚拟墙壁和触觉反来导航路径. 现实世界的实验证实了它的可用性和有效性,指导用户并防止偏差.

    科学领域:

    • 人与计算机的交互
    • 辅助技术 辅助技术 辅助技术
    • 触觉反系统是一种触觉反系统.

    背景情况:

    • 对于视力受损者而言,传统的导航辅助工具通常依赖于听觉或直接的振动触觉线索.
    • 现有的方法可能无法有效传达空间信息或环境界限.
    • 对于视力受损的人来说,需要直观和沉浸式的指导系统.

    研究的目的:

    • 为视力受损者引入和评估一种新的基于障碍的振动触觉指导系统.
    • 模拟虚拟墙壁,并在接触时提供触觉反,以实现路径坚持.
    • 在现实场景中评估系统的工作量,可用性,舒适性和动机.

    主要方法:

    • 开发一个振动导向系统,在指定的路径周围创建虚拟墙壁.
    • 在模拟接触时,在虚拟墙壁的侧面实施触觉反.
    • 在现实世界中对系统性能和用户体验进行实验性评估.

    主要成果:

    • 该系统成功地引导视力受损用户沿着使用基于障碍物的振动触觉反的路径.
    • 用户反显示了工作量,可用性,舒适性和动机方面的积极结果.
    • 该方法证明了在出现偏差时引导用户回到道路上的潜力.

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    结论:

    • 基于障碍物的振动指导为视力受损者提供了有希望的导航辅助替代方案.
    • 该系统模拟环境边界的能力增强了直观的路径遵循.
    • 潜在的临床应用包括指导医疗保健专业人员远离医疗环境中看不见的危险.