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英語 高校生

1枚目右ページの2行目、a patexted technology involving bacteria cleans the water, はinvolving bacteriaがa patented technologyを現在分詞の形で修飾していて、cleansが文の... 続きを読む

They are part of an experiment that Sogo, chief operating officer at FRD Japan, hopes will one day allow cost-effective inland farming of salmon Tokyo, gray salmon in a tank make quick movements, fighting for food. sea, but businessman Tetsuro Sogo is looking inland to raise one of the country's most loved sushi fish: salmon.\ In a mountainous area near Japan may be an island nation surrounded by the richness of the A You are preparing for agroup presentation on fish farming for your elan thought we needed a new way to produce more salmon," he explained. The company's process has two stages. First, tap water is converted 58 第2回 実戦問題 59 第6問 (配点 24) a シフト You have found the article below. 文字サイズ マトリー ジャンプ salmon farming. and enable Japanese to buy the homegrown fish for their sushi. “"We'll able to easily get high quality salmon wherever we are,” Sogo said The majority of the salmon consumed worldwide is farmed, not wila technology exports)." and the aquaculture market is dominated by Norway, which produces 1.3 million tonsa year. Farming at sea, the most common way to raise the fish, is complicated. The sea must be the right temperature, colder than 20 degrees Celsius, and only areas without strong waves and currents are tons of sushi-ready salmon. suitable - normally inlets or bays. Inland farming of salmon is often an impractical, expensive venture requiring lots of water and electricity to keep tanks clean. That hasn't stopped demand from exploding since the 1980s, with the United States, Russia, Europe, and Japan all fussing about the fish's rich pink flesh, according to the World Wildlife Fund. “Supply is not catching up with the growing demand," said Sogo, speaking at his test focility in Saitama, 50 km (31 miles) from the sea. Dressed in a suit like 35 明1 According to the article, what is NOT true about samon farmine? 0 Itis not easy to make profit by inland farming. の More than halfof the salmon consumed in the world comes from farming. Norway is leading the world market. a typical “salaryman" corefully monitors the fish as though he is wWatching his own children ““We - except fora pair of white rubber bonts _ Sogo O Strong waves are necessary to keep the water clean. 「第2回

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英語 高校生

問1 英文に文化は農業にシフトしたってあったから、選択肢③の狩猟や採集に加えてっていうのがひっかかったんですが農業にシフトしたのはseveral cultureだからでしょうか?それとも農業にシフトしたっていっても完全にはシフトしてないからですか??

Modern humans evolved in Africa about 200,000 years ago and began You are studying about the world population. You are going to read the Then just 12,000 years ago, several cultures shifted from hunting and migrating to other parts of the globe about 100,000 years ago. Our earliest ancestors relied on hunting and gathering their food to survive. Only a finite number of people could be supported on the wildlife in an area for a to control its own food supply. Civilizations grew and so did the human 30 B*★★ following article to understand how the world population has grou limited amount of time. gathering to farming. Humans became the first and only species a population. About 2,000 years ago, the estimated world population wo. 170 million people. The largest civilizations at this point in history wew. the Roman Empire and the Han Dynasty in China. The next 1,700 years were marked by the growth and conquest of empires, global navigation and exploration. People had yet to understand the science behind life and death, or how to prevent and treat most diseases. As a result, many children died young. Our global population grew, but slowly, reaching / angh waibdlie, aumans in Alfs about 500 million around 1500 and 1 billion by 1804. By the late 1700s, the world was embarking on the Industrial Revolution, a period of history in Europe and North America, where there were significant advances in science and technology. The Industrial Ainge and Chia Revolution brought the invention of the steam engine and the use of mlontrl the l ie Romam humans start electricity. During this period, there were also many inventions that promoted longer life. These included improvements in farming, nutrition, medicine and sanitation. Now, people were able to fight once-deadly Banpe and germs, produce more and different kinds of food, and cure more illnesses. Before long, these new discoveries and inventions spread throughout the world, lowering death rates, especially among children, and improving people's quality of life. Now you might be wondering what happened to the birth rates while the death rates were coming down. In Europe and North America, on re attes sa/and lar mle Acoher thar deuath pgoulatron had doudled to ton er bitkien br1974(0m pits decran groo tas beer oing Dulton pes Hamans fiaing adut.

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物理 高校生

電位の位置エネルギーについてですが、「電気と電位による位置エネルギー」と「点電荷の周りの電気力による位置エネルギー」は具体的にどのように定義され、どのように違うのかわかりやすく教えてください。教科書を見てもピンと来ませんでした。よろしくお願いします。

ネルギー びは,重力 mg×動かした距離んなので U=mgh である。一方, 電気力による位置エネルキ ーびは、電界の強さEの一様な電界中では, 電気力 gE×動かした距離dなので, U=qEd と表される p.227)。 気力による位置エネルギーと いう。 15 B 電位 電位 +1Cあたりの電気力を電界とよんだように, +1Cあたりの電気力に よる位置エネルギーを 電位 という。電位は,+1Cの電荷が基準点ま。 動くときの,電気力がする仕事に相当する。電位の単位は J/C となるが この単位を ボルト(記号 V) とよぶ。いま, ある点に電気量q[C]の電様 があるとき,この電荷がもつ電気力による位置エネルギー U[J]と,その electric potential 20 volt 点における電位V[V]との関係は, 次式で表される。 電位と電気力による位置エネルギー 25 U V: すなわち, U=qV (5) U=0 (U=qV) q VIV] 電位(electric potential) UJ) 電気力による位置エネルギー q[C) 電気量(quantity of electricity) 電位は向きを もたないスカ ラーである。 基準点(0V) 電位V 30 224 第4部 電気と磁気

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英語 高校生

英語 下線部の文構造を教えて下さい。和訳では無いです。

次の英文の第2パラグラフ以降の内容を 50 字~ 60 字の日本語に要約 せよ。句読点も字数に含める。 のHideki Shirakawa won the 2000 Nobel Prize for chemistry Tuesday for discovering that plastic can conduct electricity. He is the second Japanese laureate in this field, following Ken-ichi Fukui. 2The fact that Japan has far fewer Nobel laureates in science 5 than other advanced countries like the United States, Britain, Germany and France is indicative of howlittle importance the nation places on basic science. O Although Japan has poured great resources into the development of practical technologies, it has not sufficiently supported basic research. ① The nation urgently needs to develop talented human resources. 10 It must implement policies that will allow young scientists to better concentrate on research, and establish a system that can objectively evaluate the results of their research. ⑤ Basic scientific research in fields such as chemistry and physics tends to garner little public recognition because it is not flashy. It is unfortunate that our citizens do not have a higher regard for the research that has established the foundation upon which our wealthy Saciety is built. 6The fact that Shirakawa won a Nobel Prize suggests that there may be other talented Japanese scientists who have yet to be recognized. We hope that the recognition of Shirakawa's scientific

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