Use Figure 12.2 to answer the following question. How does the energy of X-rays compare with that
Question:
How does the energy of X-rays compare with that of blue light (greater or smaller)?
Figure 12.2
1023 02cosmic rays 1oto 10g 108 107 106 10* 104 10 1020 1019 一一 1018 1017 106adiation 1015 10-14 10-13 ー10-12 - 10-1l gamma rays 10-10atoms 10-9 0proteins 10 10-6 10-5 0hman hair 10 X-rays 0l Holecules ultraviolet 400 nm 475 nm 510 nm 570 nm 590 nm 650 nm 一10-8 IuSES visible light 14 10 1013 1012 1011 1010 109 l01 infrared radiation acterio thickness of a 104 10-1 10-2 10-3 104 10-5 l0-6 an an microwaves radar 一10-2 -10- a honeyhee a cat human height a whale 0 radio frequency short-wave radio 10 10l 10
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Hence for the final analysis we can say t...View the full answer
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Using a few basic physics principles, you can impress your friends with a trick that makes a bottle disappear. For this experiment, you will need a mini plastic bottle, glycerin, a glass, and a funnel. First, open the bottle and pour some glycerin into it, then close the bottle tightly. Next, pour some water into the glass using a funnel. Place the mini bottle into the glass of water and it will look normal. This is because light travels through air faster than it travels through the glass and water, allowing our eyes to see the bottle inside the glass. However, when you fill the mini bottle with more glycerin, and pour glycerin into the glass, then put the glycerin filled bottle into the glass with glycerin in it. Half of the bottle that is submerged in the glycerin will become invisible as the light travels through glass and glycerin at the same speed, thus it does not bend and no refraction takes place, making the bottle invisible. This happens because both glass and glycerin have almost the same refractive index, which causes the speed of light to be the same in both mediums, causing no bending of light and making the bottle disappear.
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