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相关概念视频

Fiber Reinforced Concrete01:22

Fiber Reinforced Concrete

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Fiber-reinforced concrete significantly enhances the structural and nonstructural properties of traditional concrete by incorporating fibers like steel, glass, and polymers. These fibers, varying from natural ones such as sisal and cellulose to manufactured ones like polypropylene and Kevlar, are mixed into hydraulic cement with aggregates. Steel fibers, often preferred for their robustness, contribute to improved ductility, toughness, and post-cracking performance. The concrete is classified...
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IR Frequency Region: Fingerprint Region01:03

IR Frequency Region: Fingerprint Region

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IR spectra are divided into two main regions: the diagnostic region and the fingerprint region. The diagnostic region of the spectrum lies above 1500 cm−1. The absorptions resulting from single-bond vibrations of the N–H, C–H, and O–H stretch at higher wavenumbers and appear on the left side of the spectrum. The stretching absorptions of the C≡C and C≡N occur between 2100–2300 cm−1. In contrast, those arising from stretching absorptions of the...
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Energy Stored In A Coaxial Cable01:31

Energy Stored In A Coaxial Cable

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A coaxial cable consists of a central copper conductor used for transmitting signals, followed by an insulator shield, a metallic braided mesh that prevents signal interference, and a plastic layer that encases the entire assembly.
In the simplest form, a coaxial cable can be represented by two long hollow concentric cylinders in which the current flows in opposite directions. The magnetic field inside and outside the coaxial cable is determined by using Ampère's law. The magnetic...
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Types of Skeletal Muscle Fibers01:32

Types of Skeletal Muscle Fibers

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Skeletal muscles comprise various fibers, each with distinct characteristics and roles in movement and stability. They are mainly categorized into three types — fast-twitch, slow-twitch, and intermediate.
Fast-twitch fibers
Fast-twitch fibers, or Type II fibers, are designed for quick, powerful bursts of speed and strength. They reach peak tension within approximately 0.01 seconds following stimulation. Characterized by a large diameter and densely packed myofibrils, these fibers contain...
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Sensory Modalities01:15

Sensory Modalities

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Sensation typically is the process by which the sensory receptors and sense organs detect stimuli from the internal and external environment and transmit this information to the central nervous system for processing.
General senses refer to the broad category of sensory information detected by receptors in the body and can be further grouped into somatic and visceral senses. Somatic sensations include touch, pressure, temperature, and pain and are essential for navigating our environment and...
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Major Somatic Sensory Pathways01:28

Major Somatic Sensory Pathways

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Sensory impulses related to touch, pressure, vibration, and proprioception from various body parts, such as the limbs, trunk, neck, and posterior head, travel to the cerebral cortex through the posterior column-medial lemniscus pathway. The pathway’s name derives from the two white-matter tracts that convey the impulses: the spinal cord's posterior column and the brainstem's medial lemniscus. First-order sensory neurons extend their axons into the spinal cord, forming the...
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A Silicon-tipped Fiber-optic Sensing Platform with High Resolution and Fast Response
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七核心光纤手掌光学纤维

Kai Zhang, Youxing Li, Tingting Yuan

    Optics express
    |August 13, 2025
    PubMed
    概括

    研究人员使用七核光纤开发了一只光学手,用于精确的粒子操纵. 这项技术使得可控粒子运动和振动成为可能,进步了光学捕获应用.

    科学领域:

    • 光学和光子学 在光学和光子学.
    • 微流体学 微流体学
    • 生物物理学的生物物理.

    背景情况:

    • 光学操纵技术对于控制微粒子至关重要.
    • 现有的方法往往缺乏多维控制和精确的振动能力.
    • 光纤为集成光子设备提供了一个多功能平台.

    研究的目的:

    • 提出并构建基于七核光纤的新型光学手.
    • 为了展示可调整的三维光学捕捉和粒子操纵.
    • 为了实现微粒子可控的多维振动.

    主要方法:

    • 使用七核光纤,其中六个环绕,一个中心核心用于陷形成.
    • 采用信号发生器来调节激光输出功率用于光动力学操纵.
    • 实施相差调制方案,用于控制粒子振动和固定.

    主要成果:

    • 实现了可调整的三维光学陷.
    • 证明微粒子运动高达数百微米,速度高达404.43微米/秒.
    • 通过相调节展示了可控制的多维光感应振动和粒子固定.

    结论:

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    • 光学手为先进的光学操纵提供了一个多功能平台.
    • 潜在的应用包括多方向微粒子分类和受控微细胞振动.
    • 这项技术增强了基于光纤的光学操纵系统的功能.