structural coloration wikipedia - EAS

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  1. Structural coloration is a coloring that results from the special structure of the surface. Sometimes structural coloration is combined with pigments: for example, peacock tail feathers are pigmented brown, but their structure makes them appear blue, turquoise, and green, and often they appear iridescent.
    simple.wikipedia.org/wiki/Structural_color
    simple.wikipedia.org/wiki/Structural_color
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    What is structural coloration in biology?
    Structural coloration. The brilliant iridescent colours of the peacock's tail feathers are created by structural coloration, as first noted by Isaac Newton and Robert Hooke. Structural coloration is the production of colour by microscopically structured surfaces fine enough to interfere with visible light, sometimes in combination with pigments.
    en.wikipedia.org/wiki/Structural_coloration
    What is structural color in art?
    Structural color. Structural coloration is a coloring that results from the special structure of the surface. Sometimes structural coloration is combined with pigments: for example, peacock tail feathers are pigmented brown, but their structure makes them appear blue, turquoise, and green, and often they appear iridescent.
    simple.wikipedia.org/wiki/Structural_color
    What causes structural coloration in paint?
    Structural coloration is caused by interference effects rather than by pigments. Colours are produced when a material is scored with fine parallel lines, or formed of one or more parallel thin layers, or otherwise composed of microstructures on the scale of the colour's wavelength.
    en.wikipedia.org/wiki/Structural_coloration
    What is the most changeable structural color?
    The most ordered or the most changeable structural colors are iridescent. Structural color is responsible for the blues and greens of the feathers of many birds (the blue jay, for example), as well as certain butterfly wings and beetle shells.
    en.wikipedia.org/wiki/color
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    https://en.wikipedia.org/wiki/Structural_coloration

    In living creatures, structural coloration is the production of colour by microscopically structured surfaces fine enough to interfere with visible light, sometimes in combination with pigments. For example, peacock tail feathers are pigmented brown, but their microscopic structure

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    In his 1665 book Micrographia, Robert Hooke described the "fantastical" colours of the peacock's feathers:
    The parts of the Feathers of this glorious Bird appear, through the Microscope, no less gaudy then do the

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    Structure not pigment
    Structural coloration is caused by interference effects rather than by pigments.

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    Fixed structures
    A number of fixed structures can create structural colours, by mechanisms including diffraction

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    Gabriel Lippmann won the Nobel Prize in Physics in 1908 for his work on a structural coloration method of colour photography, the Lippmann plate. This used a photosensitive

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  5. https://en.wikipedia.org/wiki/Talk:Structural_coloration

    It follows a little-known rule, that roots in -our when given Latinate suffixes should use the -or spelling accordingly, as if borrowed directly from Latin instead of through French: colouring & colourist but coloration, colorimetry, & colorize; honourable but honorarium; humourless but humorous; and so on. So this apparent aberration is actually a kind of etymological spelling, …

  6. https://simple.wikipedia.org/wiki/Structural_color

    Structural coloration is a coloring that results from the special structure of the surface. Sometimes structural coloration is combined with pigments : for example, peacock tail feathers are pigmented brown, but their structure makes them appear blue, turquoise, and green, and often they appear iridescent .

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    • https://ja.wikipedia.org/wiki/構造色
      • 薄膜による干渉
        光の波長程度の薄い膜(薄膜)では、膜の上面で反射する光と下面で反射する光が干渉するため、膜の厚さに対応した波長光が色づいて見える。シャボン玉や油膜に色が付いて見えるのは、このような薄膜干渉(はくまくかんしょう)に起因している。シャボンや油膜の厚さに応じて …
      • 多層膜による干渉
        薄い膜を何層も重ねたような構造による光の干渉である。膜厚の組み合わせ、各層の枚数の組み合わせによって干渉の仕方が変化し、様々な色彩が現れる。 アワビ等の貝殻の内側は、真珠母と呼ばれる炭酸カルシウムの薄膜が層構造を形成しており、1つ1つの層から反射される光が干 …
      See more on ja.wikipedia.org
      • Estimated Reading Time: 4 mins
      • تلوين إنشائي - Structural coloration - Wikipedia

        https://emirate2.wiki/wiki/Structural_color

        كل خلية لها سمكها الخاص من الألياف المكدسة ، مما يجعلها تعكس لونًا مختلفًا عن جيرانها ، وتنتج تأثير منقطة أو نقطي بألوان زرقاء مختلفة مرقطة باللون الأخضر اللامع والأرجواني والأحمر النقاط. الألياف في أي خلية إما أعسر أو يمين ، …

      • Strukturna obojenost - Structural coloration - Wikipedia

        https://hr2hr.wiki/wiki/Structural_coloration

        This page is based on the copyrighted Wikipedia article "Structural_coloration" ; it is used under the Creative Commons Attribution-ShareAlike 3.0 Unported License. You may redistribute it, verbatim or modified, providing that you comply with the terms of the CC-BY-SA.

      • צבעוניות מבנית - Structural coloration - Wikipedia

        https://he2he.wiki/wiki/Structural_coloration

        צבעוניות מבנית - Structural coloration צבע ביצורים חיים הנגרמים כתוצאה מהשפעות הפרעה הצבעים הססגוניים המבריקים של נוצות זנב הטווס נוצרים על ידי צבע מבני, כ צוין לראשונה על ידי אייזק ניוטון ו רוברט הוק . ביצורים חיים, צבע מבני הוא ייצור צבע על ידי משטחים מובנים מיקרוסקופיים עדינים מספיק כדי להפריע ל גלוי בהיר , לפעמים בשילוב עם פיגמנטים .

      • https://en.wikipedia.org/wiki/Color

        Color or colour is the visual perceptual property deriving from the spectrum of light interacting with the photoreceptor cells of the eyes. Color categories and physical specifications of color are associated with objects or materials based on their physical properties such as light absorption, reflection, or emission spectra. By defining a color space colors can be identified numerically …

      • https://wikimili.com/en/Structural_coloration

        Mar 11, 2022 · In living creatures, structural coloration is the production of colour by microscopically structured surfaces fine enough to interfere with visible light, sometimes in combination with pigments. For example, peacock tail feathers are pigmented brown, but their microscopic structure makes them also reflect blue, turquoise, and green light, and they are …

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