{"id":66821,"date":"2026-08-24T04:38:02","date_gmt":"2026-08-23T19:38:02","guid":{"rendered":"https:\/\/phys-edu.net\/wp\/?p=66821"},"modified":"2026-08-24T04:38:02","modified_gmt":"2026-08-23T19:38:02","slug":"rainy-days-welcome-make-a-rainbow-in-your-classroom-how-a-plastic-bottle-becomes-a-magic-tool-for-light-dispersion","status":"publish","type":"post","link":"https:\/\/phys-edu.net\/wp\/?p=66821&lang=en","title":{"rendered":"Rainy Days Welcome! Make a Rainbow in Your Classroom \u2014 How a Plastic Bottle Becomes a Magic Tool for &#8220;Light Dispersion&#8221;!"},"content":{"rendered":"<p style=\"text-align: center;\"><strong style=\"color: #339966;\">I&#8217;m Ken Kuwako, your Science Trainer. Every day is an experiment.<\/strong><\/p>\n<p>When teaching the properties of light, especially the concept of light dispersion, how do you spark your students\u2019 curiosity? You can explain, \u201cLight can split into lots of different colors,\u201d but wouldn\u2019t it be much more exciting to actually show them the phenomenon?<\/p>\n<p>As you probably know, on a sunny day, you can create a beautiful rainbow simply by spraying water into the air with a garden hose. Stand with your back to the Sun, let the sunlight interact with the sparkling droplets, and suddenly a vivid seven-colored arc appears. It really is a magical sight! I once tried making a rainbow with my students in the schoolyard, and I got so caught up in how beautiful it was that it was surprisingly difficult to get everyone back to the lesson afterward. (Haha!) And, of course, there\u2019s one big drawback: you\u2019re at the mercy of the weather, so you can\u2019t exactly do it whenever you want.<\/p>\n<p>That\u2019s why I\u2019d like to introduce an experiment that lets you recreate a <b>surprisingly vivid rainbow, easily and indoors, no matter what the weather is doing outside!<\/b> The setup is simple, and every student can experience the beauty of light dispersion with their own eyes. So, let\u2019s take a look at this magical little \u201cscience recipe\u201d!<\/p>\n<p><a href=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/dff5ece9d16c882b53ad38c9b9f6214c.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-medium wp-image-22782 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/9fc36349d2060f8c9e4ce325f467f253-266x300.jpg\" alt=\"Screenshot 2015-09-28 7.49.03\" width=\"266\" height=\"300\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/9fc36349d2060f8c9e4ce325f467f253-266x300.jpg 266w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/9fc36349d2060f8c9e4ce325f467f253.jpg 627w\" sizes=\"auto, (max-width: 266px) 100vw, 266px\" \/><\/a><\/p>\n<h3>Science Recipe: Turn an Ordinary Plastic Bottle into a \u201cRainbow Machine\u201d!<\/h3>\n<p>The star of this experiment is, believe it or not, a <b>1.5-liter round plastic bottle<\/b>! Yes, the kind of cylindrical bottle often used for drinks such as Mitsuya Cider can become a surprisingly effective tool for showing off the beauty of light dispersion.<\/p>\n<p><b>\u3010What You\u2019ll Need\u3011<\/b><\/p>\n<ul>\n<li><b>A 1.5-liter round plastic bottle (a smooth-sided bottle, such as one used for Mitsuya Cider, works especially well)<\/b><\/li>\n<li><b>Water<\/b><\/li>\n<li><b>A white light (an LED light is especially recommended. As we\u2019ll see later, brightness really matters!)<\/b><\/li>\n<\/ul>\n<p><b>\u3010How to Do the Experiment\u3011<\/b><\/p>\n<p><b>1. Fill the plastic bottle with water:<\/b><\/p>\n<p>First, fill the round plastic bottle completely with water. Pour slowly so that you don\u2019t introduce too many air bubbles.<\/p>\n<p><b>2. Darken the room and shine the light:<\/b><\/p>\n<p>Make the room as dark as possible. Close the curtains and turn off the lights.<\/p>\n<p>Next, shine the white light at the plastic bottle. The key is to <b>stand with your back to the wall and shine the light toward the bottle<\/b>. The light reflected inside the bottle should then be projected onto the wall behind you.<br \/>\n<img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-medium wp-image-22781 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/dff5ece9d16c882b53ad38c9b9f6214c-227x300.jpg\" alt=\"Screenshot 2015-09-28 7.49.49\" width=\"227\" height=\"300\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/dff5ece9d16c882b53ad38c9b9f6214c-227x300.jpg 227w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/dff5ece9d16c882b53ad38c9b9f6214c.jpg 416w\" sizes=\"auto, (max-width: 227px) 100vw, 227px\" \/><\/p>\n<p><b>3. Adjust the angle of the light and observe:<\/b><\/p>\n<p>Slowly change the angle of the light while carefully watching the light projected onto the wall. And then\u2026 there it is! A brilliant seven-colored <b>rainbow<\/b> should appear right before your eyes!<\/p>\n<p><a href=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/dff5ece9d16c882b53ad38c9b9f6214c.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-medium wp-image-22782 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/9fc36349d2060f8c9e4ce325f467f253-266x300.jpg\" alt=\"Screenshot 2015-09-28 7.49.03\" width=\"266\" height=\"300\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/9fc36349d2060f8c9e4ce325f467f253-266x300.jpg 266w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/9fc36349d2060f8c9e4ce325f467f253.jpg 627w\" sizes=\"auto, (max-width: 266px) 100vw, 266px\" \/><\/a><\/p>\n<p>With this method, all you need is one plastic bottle and one light for each group, and every student can easily enjoy the rainbow for themselves. When you actually try it, you\u2019ll find that it looks far more beautiful than it does in photographs. It\u2019s the kind of sight that makes you instinctively go, \u201cWow!\u201d And perhaps best of all for teachers, the entire experiment can be done right in the classroom, so once the rainbow disappears, you can get straight back to the lesson!<\/p>\n<h3>A 100-Yen-Shop Light Can Make a Huge Difference!<\/h3>\n<p><span style=\"font-size: 14px;\">By the way, the light I use for this experiment actually came from a 100-yen shop. I had been using a different light before, but the new one I used this time was much brighter and produced a clearer, more vivid rainbow.<\/span><\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-medium wp-image-22783 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/28b8f67d08ce733d29be2e8d6744dc16-300x231.jpg\" alt=\"Screenshot 2015-09-28 7.50.23\" width=\"300\" height=\"231\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/28b8f67d08ce733d29be2e8d6744dc16-300x231.jpg 300w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2015\/09\/28b8f67d08ce733d29be2e8d6744dc16.jpg 495w\" sizes=\"auto, (max-width: 300px) 100vw, 300px\" \/><\/p>\n<p>Honestly, I found myself thinking, \u201cWhy didn\u2019t I use this one from the start?\u201d (Haha!) It was a great reminder of just how much the brightness of the light can change what you see.<\/p>\n<h3>The Science Behind the Rainbow: Understanding Light Dispersion<\/h3>\n<p><span style=\"font-size: 14px;\">The beautiful rainbow produced in this experiment can be explained by a scientific phenomenon called \u201cdispersion of light.\u201d<\/span><\/p>\n<p>Sunlight and white light from a lamp are actually made up of many different colors of light mixed together, including red, orange, yellow, green, blue, indigo, and violet. When these different colors enter a water droplet\u2014or, in this experiment, the water inside the plastic bottle\u2014each color travels through the water at a slightly different speed. As a result, each color is refracted by a slightly different amount.<\/p>\n<p>As shown in the diagram above:<\/p>\n<ul>\n<li><b>Red light<\/b> bends <b>less than the other colors (it has a lower refractive index)<\/b> as it travels through water. Because it follows a relatively straighter path, it appears on the outer edge of the rainbow.<\/li>\n<li>On the other hand, <b>violet light<\/b> bends <b>more (it has a higher refractive index)<\/b> in water, so it is refracted more strongly and appears on the inner edge of the rainbow.<\/li>\n<\/ul>\n<p>In this way, when light is refracted and reflected at slightly different angles according to its color, the individual colors separate from one another and eventually reach our eyes as a beautiful seven-colored rainbow.<\/p>\n<p>This experiment is simple enough for elementary school students to enjoy, yet it hides some wonderfully deep physics involving refraction and dispersion. That combination of simplicity and scientific depth is what makes it such a great experiment.<\/p>\n<p>What other experiments do you use to demonstrate light waves in your science classes? I\u2019d love to hear how you put them to use!<\/p>\n<p>And next time, let\u2019s use this same plastic bottle to recreate a \u201csunset\u201d! Stay tuned!<\/p>\n<blockquote class=\"wp-embedded-content\" data-secret=\"t8s2G9YUpO\"><p><a href=\"https:\/\/phys-edu.net\/wp\/?p=865\">\u30da\u30c3\u30c8\u30dc\u30c8\u30eb\u3067\u300c\u5915\u713c\u3051\u300d\u3092\u518d\u73fe\uff01\u725b\u4e73\u3067\u308f\u304b\u308b\u5149\u306e\u30de\u30b8\u30c3\u30af\u300c\u6563\u4e71\u300d\u306e\u79d8\u5bc6<\/a><\/p><\/blockquote>\n<p><iframe loading=\"lazy\" class=\"wp-embedded-content\" sandbox=\"allow-scripts\" security=\"restricted\" style=\"position: absolute; visibility: hidden;\" title=\"\u201c\u30da\u30c3\u30c8\u30dc\u30c8\u30eb\u3067\u300c\u5915\u713c\u3051\u300d\u3092\u518d\u73fe\uff01\u725b\u4e73\u3067\u308f\u304b\u308b\u5149\u306e\u30de\u30b8\u30c3\u30af\u300c\u6563\u4e71\u300d\u306e\u79d8\u5bc6\u201d \u2014 \u79d1\u5b66\u306e\u30cd\u30bf\u5e33\" src=\"https:\/\/phys-edu.net\/wp\/?p=865&amp;embed=true#?secret=FywbsSyxpz#?secret=t8s2G9YUpO\" data-secret=\"t8s2G9YUpO\" width=\"600\" height=\"338\" frameborder=\"0\" marginwidth=\"0\" marginheight=\"0\" scrolling=\"no\"><\/iframe><\/p>\n<h3>Contact &amp; Requests<\/h3>\n<p>Want to bring the wonder and fun of science a little closer to everyday life? I share easy and enjoyable science experiments you can try at home, along with simple explanations and useful tips. Have a look around and search for whatever catches your interest!<br \/>\n\u30fbLearn more about the site creator, Ken Kuwako, <a href=\"https:\/\/phys-edu.net\/wp\/?page_id=37\">here<\/a>.<br \/>\n\u30fbFor inquiries and requests, including writing, lectures, science workshops, TV science supervision, and appearances, <a href=\"https:\/\/phys-edu.net\/wp\/?page_id=188\">click here<\/a>.<br \/>\n<span class=\"s2\">\u30fbFollow <a href=\"https:\/\/x.com\/kuwako\">X for updates<\/a>!<\/span><\/p>\n<p style=\"text-align: center;\"><a href=\"https:\/\/www.youtube.com\/user\/kkuwako\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-35048\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2020\/03\/3d9640dad7bc5538e76f92da1966ee19.jpg\" alt=\"\" width=\"30\" height=\"21\" \/><\/a><a href=\"https:\/\/www.youtube.com\/user\/kkuwako?sub_confirmation=1\">Science Tricks Channel<\/a> features videos of science experiments!<\/p>\n<h3><span style=\"color: #ff0000;\">NEW\u3000\u5206\u89e3\u554f\u984c\u96c6\u3000\u7406\u79d1<\/span><\/h3>\r\n<ul>\r\n \t<li>\uff17\u6708\uff12\uff11\u65e5\u767a\u58f2\uff01\u300e<a href=\"https:\/\/phys-edu.net\/wp\/?p=64462\">\u9ad8\u6821\u5165\u8a66 \u5206\u89e3\u554f\u984c\u96c6 \u7406\u79d1<\/a>\u300f\uff08\u5b66\u7814\uff09\u2026\u96e3\u3057\u3044\u554f\u984c\u3082\u5c0f\u3055\u306a\u554f\u984c\u306b\u5206\u89e3\u3059\u308b\u3053\u3068\u3067\u3001\u554f\u984c\u3092\u89e3\u304f\u3053\u3068\u304c\u3067\u304d\u307e\u3059\u3002\u305d\u3093\u306a\u5206\u89e3\u306e\u6280\u8853\u304c\u8eab\u306b\u3064\u304f\u3088\u3046\u306b\u6df1\u304f\u95a2\u308f\u308a\u3092\u6301\u3063\u3066\u4f5c\u308a\u307e\u3057\u305f\u3002\r\n<a href=\"https:\/\/phys-edu.net\/wp\/?p=64462\"><img class=\"alignnone  wp-image-65097 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-04-8.40.17.jpeg\" alt=\"\" width=\"172\" height=\"244\" \/><\/a><\/li>\r\n<\/ul>\r\n<h3>\uff17\u30fb\uff18\u6708\u306e\u30a4\u30c1\u30aa\u30b7\u5b9f\u9a13\uff01<\/h3>\r\n<p style=\"text-align: center;\">\u590f\u3067\u30d7\u30b7\u30e5\u30c3\u3068\u723d\u3084\u304b\u5b9f\u9a13\uff01<\/p>\r\n<img class=\"alignnone  wp-image-64964 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/06\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-06-30-4.31.58.jpeg\" alt=\"\" width=\"250\" height=\"310\" \/>\r\n<p style=\"text-align: center;\"><a href=\"https:\/\/phys-edu.net\/wp\/?p=206\">\u5c0f\u578b\u3067\u6301\u3061\u5e30\u308c\u308b\u3088\uff01\u30da\u30c3\u30c8\u30dc\u30c8\u30eb\u30ed\u30b1\u30c3\u30c8\u3092\u4f5c\u308d\u3046\uff01<\/a><\/p>\r\n\r\n<h3 style=\"text-align: left;\"><span style=\"font-size: medium;\"><b><strong>\u30c6\u30ec\u30d3\u756a\u7d44\u76e3\u4fee\u30fb\u30a4\u30d9\u30f3\u30c8\u7b49\u306e\u304a\u77e5\u3089\u305b<\/strong><\/b><\/span><\/h3>\r\n<ul>\r\n \t<li>\uff17\u6708\uff13\uff10\u65e5\uff08\u6c34\uff09\u79d1\u5b66\u76e3\u4fee\u300c<a href=\"https:\/\/www.fujitv.co.jp\/onesongfes\/\">TIF presents ONE SONG FES<\/a>\u300d\uff08\u30d5\u30b8\u30c6\u30ec\u30d3\uff09\u00a026:15~27:15<\/li>\r\n \t<li>12\u670826\u65e5\uff08\u571f\uff09\u3000<a href=\"https:\/\/phys-edu.net\/wp\/?p=64825\">\u30ca\u30ea\u30ab\u30b5\u30a4\u30a8\u30f3\u30b9\u30a2\u30ab\u30c7\u30df\u30fc\uff08\u6559\u54e1\u5411\u3051\u5b9f\u9a13\u8b1b\u7fd2\u4f1a\uff09\u958b\u50ac<\/a><\/li>\r\n<\/ul>\r\n<h3><b>\u66f8\u7c4d<strong>\u306e\u304a\u77e5\u3089\u305b<\/strong><\/b><\/h3>\r\n<ul>\r\n \t<li>\u300e\u5927\u4eba\u306e\u305f\u3081\u306e\u9ad8\u6821\u7269\u7406\u5fa9\u7fd2\u5e33\u300f\uff08\u8b1b\u8ac7\u793e\uff09\u2026\u4e00\u822c\u5411\u3051\u306b\u65e5\u5e38\u306e\u7269\u7406\u306b\u3064\u3044\u3066\u516c\u5f0f\u3092\u5143\u306b\u7d10\u89e3\u304d\u307e\u3057\u305f\u3002<a href=\"https:\/\/phys-edu.net\/wp\/?p=1827\">\u7279\u8a2d\u30b5\u30a4\u30c8<\/a>\u3067\u306f\u5b9f\u9a13\u3092\u591a\u6570\u7d39\u4ecb\u3057\u3066\u3044\u307e\u3059\u3002<strong>\u203b\u5897\u5237\u304c\u304b\u304b\u308a\uff16\u5237\u3068\u306a\u308a\u307e\u3057\u305f\uff082026\/02\/01\uff09\r\n<img class=\"alignnone wp-image-10940 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2013\/12\/0811159a99f69eeff1a357e3daed84e0-300x262.jpg\" sizes=\"(max-width: 220px) 100vw, 220px\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2013\/12\/0811159a99f69eeff1a357e3daed84e0-300x262.jpg 300w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2013\/12\/0811159a99f69eeff1a357e3daed84e0.jpg 311w\" alt=\"\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8 2014-07-05 0.43.51\" width=\"220\" height=\"192\" \/><\/strong><\/li>\r\n \t<li>\u300e\u304d\u3081\u308b!\u5171\u901a\u30c6\u30b9\u30c8 \u7269\u7406\u57fa\u790e \u6539\u8a02\u7248\u300f\uff08\u5b66\u7814\uff09\u2026\u3000\u9ad8\u6821\u7269\u7406\u306e\u53c2\u8003\u66f8\u3067\u3059\u3002\u30a4\u30e9\u30b9\u30c8\u3092\u591a\u304f\u3057\u3066\u30a4\u30e1\u30fc\u30b8\u304c\u6301\u3066\u308b\u3088\u3046\u306b\u63cf\u304d\u307e\u3057\u305f\u3002\u6388\u696d\u306b\u3064\u3044\u3066\u3044\u3051\u306a\u3044\u3001\u7269\u7406\u304c\u82e6\u624b\u3001\u305d\u3093\u306a\u751f\u5f92\u306b\u304a\u3059\u3059\u3081\u3067\u3059\u3002<a href=\"https:\/\/phys-edu.net\/wp\/?p=45322\">\u7279\u8a2d\u30b5\u30a4\u30c8<\/a>\u306f\u3053\u3061\u3089\u3002\r\n<img class=\"alignnone wp-image-45718 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2024\/04\/dc1da64a8c8d1422062b4867c0607a1c.jpg\" sizes=\"(max-width: 184px) 100vw, 184px\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2024\/04\/dc1da64a8c8d1422062b4867c0607a1c.jpg 756w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2024\/04\/dc1da64a8c8d1422062b4867c0607a1c-300x269.jpg 300w\" alt=\"\" width=\"184\" height=\"165\" \/><\/li>\r\n<\/ul>\r\n<h3><span style=\"text-align: center;\">\u5404\u7a2eSNS\uff08\u66f4\u65b0\u60c5\u5831\u3092\u304a\u5c4a\u3051\uff01\uff09<\/span><\/h3>\r\n<p style=\"text-align: center;\">\u3010\u65e5\u672c\u8a9e\u3011<a style=\"text-align: center;\" href=\"https:\/\/twitter.com\/kuwako\">X(Twitter)<\/a><span style=\"text-align: center;\">\uff0f<\/span><a style=\"text-align: center;\" href=\"https:\/\/www.instagram.com\/science_seeds\/\">instagram<\/a><span style=\"text-align: center;\">\uff0f<\/span><a style=\"text-align: center;\" href=\"https:\/\/www.facebook.com\/kuwakolab\/\">Facebook<\/a>\u3000\u3010\u82f1\u8a9e\u3011<a style=\"text-align: center;\" href=\"https:\/\/bsky.app\/profile\/kagakunoneta.bsky.social\">BlueSky<\/a><span style=\"text-align: center;\">\uff0f<\/span><a style=\"text-align: center;\" href=\"https:\/\/www.threads.net\/@science_seeds?hl=ja\">Threads<\/a><\/p>\r\n\r\n<h3 style=\"text-align: center;\"><strong>Explore<\/strong><\/h3>\r\n<ul>\r\n \t<li><a href=\"https:\/\/phys-edu.net\/wp\/?page_id=30764\">\u697d\u3057\u3044\u5b9f\u9a13<\/a>\u2026\u304a\u5b50\u3055\u3093\u3068\u4e00\u7dd2\u306b\u5922\u4e2d\u306b\u306a\u308c\u308b\u30a4\u30c1\u30aa\u30b7\u306e\u79d1\u5b66\u5b9f\u9a13\u3092\u591a\u6570\u7d39\u4ecb\u3057\u3066\u3044\u307e\u3059\u3002\u307e\u305f\u3001\u9ad8\u6821\u7269\u7406\u306e\u7406\u89e3\u3092\u6df1\u3081\u308b\u305f\u3081\u306e\u52d5\u753b\u6559\u6750\u3082\u7528\u610f\u3057\u307e\u3057\u305f\u3002<\/li>\r\n \t<li><a href=\"https:\/\/phys-edu.net\/wp\/?page_id=798\">\u7406\u79d1\u306e\u6559\u6750<\/a>\u2026 \u7406\u79d1\u6559\u5e2b\u3092\u30d0\u30c3\u30af\u30a2\u30c3\u30d7\uff01\u6388\u696d\u306e\u8cea\u3092\u9ad8\u3081\u3001\u6e96\u5099\u3092\u52b9\u7387\u5316\u3059\u308b\u305f\u3081\u306e\u9078\u308a\u3059\u3050\u308a\u306e\u6559\u6750\u3092\u7d39\u4ecb\u3057\u3066\u3044\u307e\u3059\u3002<\/li>\r\n \t<li><a 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href=\"http:\/\/phys-edu.net\/wp\/?page_id=37\">About<\/a>\u00a0\u2026\u300c\u79d1\u5b66\u306e\u30cd\u30bf\u5e33\u300d\u306e\u30b3\u30f3\u30bb\u30d7\u30c8\u3084\u3001\u904b\u55b6\u8005\u3067\u3042\u308b\u6851\u5b50\u7814\u306e\u30d7\u30ed\u30d5\u30a3\u30fc\u30eb\u30fb\u60f3\u3044\u3092\u307e\u3068\u3081\u3066\u3044\u307e\u3059\u3002<\/li>\r\n \t<li><a href=\"https:\/\/phys-edu.net\/wp\/?page_id=188\">\u304a\u554f\u3044\u5408\u308f\u305b<\/a>\u00a0\u2026\u5b9f\u9a13\u6559\u5ba4\u306e\u3054\u4f9d\u983c\u3001\u57f7\u7b46\u30fb\u8b1b\u6f14\u306e\u76f8\u8ac7\u3001\u79d1\u5b66\u76e3\u4fee\u7b49\u306f\u3053\u3061\u3089\u306e\u30d5\u30a9\u30fc\u30e0\u304b\u3089\u304a\u5bc4\u305b\u304f\u3060\u3055\u3044\u3002<\/li>\r\n<\/ul>","protected":false},"excerpt":{"rendered":"<p>I&#8217;m Ken Kuwako, your Science Trainer. Every day is an experiment. When teaching the properties of light, [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":22782,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_sitemap_exclude":false,"_sitemap_priority":"","_sitemap_frequency":"","sns_share_botton_hide":"","vkExUnit_sns_title":"","vkexunit_cta_each_option":"","_lightning_design_setting":{"layout":"default"},"footnotes":"","jetpack_post_was_ever_published":false},"categories":[781],"tags":[],"class_list":["post-66821","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-science-en"],"jetpack-related-posts":[{"id":53633,"url":"https:\/\/phys-edu.net\/wp\/?p=53633&lang=en","url_meta":{"origin":66821,"position":0},"title":"Unlock the Rainbow: How to Make a Magical &#8220;Spectroscopy Mask&#8221; and See the Universe&#8217;s Hidden Code","author":"\u6851\u5b50 \u7814","date":"2025\u5e7410\u67082\u65e5","format":false,"excerpt":"I am Kuwako Ken, your Science Trainer. Every day i\u2026","rel":"","context":"Science","block_context":{"text":"Science","link":"https:\/\/phys-edu.net\/wp\/?cat=781&lang=en"},"img":{"alt_text":"","src":"https:\/\/i0.wp.com\/phys-edu.net\/wp\/wp-content\/uploads\/2025\/10\/%E3%82%B9%E3%82%AF%E3%83%AA%E3%83%BC%E3%83%B3%E3%82%B7%E3%83%A7%E3%83%83%E3%83%88-2025-10-02-5.09.20.jpg?resize=350%2C200&ssl=1","width":350,"height":200,"srcset":"https:\/\/i0.wp.com\/phys-edu.net\/wp\/wp-content\/uploads\/2025\/10\/%E3%82%B9%E3%82%AF%E3%83%AA%E3%83%BC%E3%83%B3%E3%82%B7%E3%83%A7%E3%83%83%E3%83%88-2025-10-02-5.09.20.jpg?resize=350%2C200&ssl=1 1x, https:\/\/i0.wp.com\/phys-edu.net\/wp\/wp-content\/uploads\/2025\/10\/%E3%82%B9%E3%82%AF%E3%83%AA%E3%83%BC%E3%83%B3%E3%82%B7%E3%83%A7%E3%83%83%E3%83%88-2025-10-02-5.09.20.jpg?resize=525%2C300&ssl=1 1.5x, https:\/\/i0.wp.com\/phys-edu.net\/wp\/wp-content\/uploads\/2025\/10\/%E3%82%B9%E3%82%AF%E3%83%AA%E3%83%BC%E3%83%B3%E3%82%B7%E3%83%A7%E3%83%83%E3%83%88-2025-10-02-5.09.20.jpg?resize=700%2C400&ssl=1 2x, https:\/\/i0.wp.com\/phys-edu.net\/wp\/wp-content\/uploads\/2025\/10\/%E3%82%B9%E3%82%AF%E3%83%AA%E3%83%BC%E3%83%B3%E3%82%B7%E3%83%A7%E3%83%83%E3%83%88-2025-10-02-5.09.20.jpg?resize=1050%2C600&ssl=1 3x, https:\/\/i0.wp.com\/phys-edu.net\/wp\/wp-content\/uploads\/2025\/10\/%E3%82%B9%E3%82%AF%E3%83%AA%E3%83%BC%E3%83%B3%E3%82%B7%E3%83%A7%E3%83%83%E3%83%88-2025-10-02-5.09.20.jpg?resize=1400%2C800&ssl=1 4x"},"classes":[]},{"id":58003,"url":"https:\/\/phys-edu.net\/wp\/?p=58003&lang=en","url_meta":{"origin":66821,"position":1},"title":"What Happens When Light Passes Through a Prism? White Light Becomes a Seven-Color Puzzle \u2014 The World of Light Loved by Newton","author":"\u6851\u5b50 \u7814","date":"2025\u5e7412\u670830\u65e5","format":false,"excerpt":"Hi, I\u2019m Ken Kuwako, your Science Trainer. 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