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英語 高校生

BとCの空いているところを教えてください。かいているところの確認もお願いします!

-mən/ (id)/ 1 Have you ever broken your favorite cup and thrown it 修復できません。 In away? Broken pottery cannot usually be repaired. Japan, however, there is a traditional technique that allows broken pottery to continue to be used. It is called kintsugi. 金継ぎ 2 Kintsugi is said to have been developed by Hon'ami Koetsu, a craftsman and artist of the Edo period. When a tea bowl cracked during firing, Koetsu fixed the pieces together with lacquer and applied gold to the join. Repaired by this kintsugi technique, the tea bowl held 10 water without leaking. 3 Kintsugi does not try to hide repair work. The gold joins stand out, adding new beauty to the repaired pottery. One of the tea bowls that Koetsu repaired by 雪峰せっぽう kintsugi is called Seppo, "Snow Ridge." Koetsu compared 15 the white glaze on the bowl to a snowy mountain and the gold joins to streams of melted snow. 4 Kintsugi combines two features of the Japanese spirit. One is mottainai, the valuing of things we use; and the other is the appreciation of beauty in everyday things. As 20 an expression of the Japanese spirit, kintsugi is attracting wider attention not only at home but also overseas. way 13. *stand out 9. join の意味は? (1) T/F (2) T/F (3) T/F 5 ほんこうえつ Koetsu 本阿弥光悦 (1558-1637) ぼう 雪峰 しょうせい 8. firing far(a)ng/ 焼成 陶器を焼くこと うるし

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英語 高校生

下線部Dと答え.ウはなぜ同じ用法なんでしょうか 教えてください🙏

closer to reality. Researchers have investigated the use of electricity to stimulate vision for nearly half a century. In the 1960's, a *physiologist implanted 80 electrodes on the surface of a blind person's *visual cortex, a region at the back of the brain. Wireless stimulation of the electrodes made the patient see spots of light known as *phosphenes. This is the first stop for visual signals coming from the eye. (D) By the 1980's, a crop of *ophthalmologists began considering a narrower and seemingly easier-to-solve problem: making *prostheses for the eye. They suggested that degrade *photoreceptor cells called *rods and cones, still leave large portions of the retina intact even after a patient has become totally blind. The way to stimulate the remaining functional cells was proved *feasible in the mid-1990's. A device consisting of a tiny video camera perched on the bridge of a pair of glasses, a belt-worn video processing unit, and an electronic box, was developed recently. The electronic box issues signals to an implant behind the patient's ear that has wires running to a grid of 16 electrodes affixed to the output layer of the retina. The video processor wirelessly transmits a simplified picture of what the camera images to the box, and then the retinal implant stimulates cells in a pattern roughly reflecting that information.

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