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Teaching Optics Concepts through an Approach that Emphasizes the 'Colors of Nature'

机译:通过一种强调“自然颜色”的方法教学概念

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A wide variety of optics concepts can be taught using the overall perspective of "colors of nature" as a guiding and unifying theme. This approach is attractive and interesting with a wide appeal to children, nature enthusiasts, photographers, and artists. This approach also encourages a deep understanding of the natural world and the role of coloration in biology, remote sensing, the aurora, mineralogy, meteorology, in human-made objects, and astronomy, to name a few. Third, using this theme promotes a close look at optical phenomena at all size scales-from the microscopic (e.g. silica spheres in opals) to the mid-scale (the aurora), to the largest scale (astronomical phenomena such as gaseous emission nebula). Fourth, the natural and human-constructed world provides accessible and beautiful examples of complex phenomena such as interference, diffraction, atomic and molecular emissions, Rayleigh and Mie scattering, illumination engineering, and fluorescence. These areas can be explored successfully in the context of "colors of nature". Finally, using the "colors of nature" also promotes an understanding of technology, from flashlights to streetlights, from telescopes and binoculars, to spectrometers and digital cameras. For examples something as simple as how to set the white balance on a digital camera to get a realistic looking photograph can lead to a lengthy exploration of spectrally selective surfaces and their reflectance, the nature of different illumination sources, the meaning of color temperature, and role of calibration in a digital image. We have used this approach of teaching using the colors of nature as an organizing theme in our NSF-funded project "Project STEAM: Integrating Art with Science to Build Science Identities Among Girls" (colorsofhature.org).
机译:可以使用“自然颜色”作为指导和统一主题的整体视角来教授各种各样的光学概念。这种方法具有吸引力,有趣,对儿童,自然爱好者,摄影师和艺术家广泛吸引力。这种方法还鼓励对自然界的深刻理解和着色在生物学,遥感,极光,矿物学,气象,在人造物体和天文学中的作用,以命名几个。第三,使用这种主题促进了所有大小鳞片的光学现象 - 从微观(例如,Opals中的二氧化硅球体)到中型(Aurora),以最大规模(天文现象,如气体发射星云) 。第四,自然和人类构建的世界提供复杂现象的可访问和美丽的例子,例如干扰,衍射,原子和分子排放,瑞利和MIE散射,照明工程和荧光。这些领域可以在“自然色彩”的背景下成功探索。最后,使用“自然颜色”还促进了对技术的理解,从手电筒到路灯,从望远镜和双筒望远镜到光谱仪和数码相机。对于实例一些简单的如何设置数码相机的白平衡得到逼真的照片可导致光谱选择性表面的一个漫长的探索和其反射率,不同的照明光源的性质,色温的意义,校准在数字图像中的作用。我们使用这种教学方法,使用本质上的颜色作为我们的NSF资助项目的组织主题“Project Steam:艺术与科学艺术构建女孩的科学身份”(Colorsofhure.org)。

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