中英
optical
/ ˈɒptɪk(ə)l /
/ ˈɑːptɪk(ə)l /
  • 简明
  • 柯林斯
  • adj.视力的,视觉的;有助于视力的,光学的;光读取的,光存贮的;(装置)光电的
  • n.<印度>(一副)眼镜(opticals)
  • CET6/考研/IELTS/GRE/GMAT/
  • 网络释义
  • 专业释义
  • 英英释义
  • 1

     光纤

    光纤(Optical)接口 Optical光纤接口是一种音频输出方式,是一种比较不常用的接口,连接光纤线进行音频传输,输出更为出色的音质效果。

  • 2

    [生理] 视觉的

    ... optical 视觉的 sighted 看得见的 partially sighted 弱视的 ...

  • 3

     光学

    ... 分子生物化学Molecular Biochemistry 光学Optical 自然科学Natural Sciences ...

  • 4

     数码光缆接口

    ... Operator 操纵器,合成器算子 Optical 数码光缆接口 Optical master 激光器 ...

短语
  • 1
    optical fiber

    通信 光导纤维 ; 通信 光纤 ; 通信 光学纤维 ; 光纤转换器

  • 2
    optical disc

    光盘 ; 光碟 ; 频闪观测盘 ; 光具盘

  • 3
    Optical mouse

    光电鼠标 ; 光学鼠标 ; 光学鼠标器 ; 光学内存

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  • 双语例句
  • 原声例句
  • 权威例句
  • 1
    A sensor channels the light signal along an optical fibre.
    传感器沿光导纤维输送光信号。
    《牛津词典》
  • 2
    These optical fibres may be used for new sorts of telephony.
    这些光纤可以应用在新型电话通讯系统。
    《柯林斯英汉双解大词典》
  • 3
    Optical scanners ensure that imperfections in the cloth are located and removed.
    光电扫描器能确保找出并去除布料上的瑕疵。
    《柯林斯英汉双解大词典》
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  • 词典短语
  • 同近义词
  • 同根词
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  • 百科
  • Optical

    Optics is the branch of physics which involves the behaviour and properties of light, including its interactions with matter and the construction of instruments that use or detect it. Optics usually describes the behaviour of visible, ultraviolet, and infrared light. Because light is an electromagnetic wave, other forms of electromagnetic radiation such as X-rays, microwaves, and radio waves exhibit similar properties.Most optical phenomena can be accounted for using the classical electromagnetic description of light. Complete electromagnetic descriptions of light are, however, often difficult to apply in practice. Practical optics is usually done using simplified models. The most common of these, geometric optics, treats light as a collection of rays that travel in straight lines and bend when they pass through or reflect from surfaces. Physical optics is a more comprehensive model of light, which includes wave effects such as diffraction and interference that cannot be accounted for in geometric optics. Historically, the ray-based model of light was developed first, followed by the wave model of light. Progress in electromagnetic theory in the 19th century led to the discovery that light waves were in fact electromagnetic radiation.Some phenomena depend on the fact that light has both wave-like and particle-like properties. Explanation of these effects requires quantum mechanics. When considering light's particle-like properties, the light is modelled as a collection of particles called "photons". Quantum optics deals with the application of quantum mechanics to optical systems.Optical science is relevant to and studied in many related disciplines including astronomy, various engineering fields, photography, and medicine (particularly ophthalmology and optometry). Practical applications of optics are found in a variety of technologies and everyday objects, including mirrors, lenses, telescopes, microscopes, lasers, and fibre optics.

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