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英語 高校生

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4 20 科学 420 words Chapter 1 The recipe for making any creature is written in its DNA. So last year, when 1-1 geneticists* published the near-complete DNA sequence of the long-extinct woolly mammoth, there was much speculation about whether we could bring this giant creature back to life. 5 東京理科大学 Creating a living, breathing creature from a genome* sequence that exists only in a computer's memory is not possible right now. But someone someday is sure to try it, predicts Stephan Schuster, a molecular biologist at Pennsylvania State University and a driving force behind the mammoth genome project. So besides the mammoth, what other extinct beasts might we bring back to life? Well, 12 10 it is only going to be possible with creatures for which we can recover a complete genome Without one, there is no chance. And usually when a creature dies, the (1) - DNA in any flesh left untouched is soon destroyed as it is attacked by sunshine and bacteria. sequence. There are, however, some circumstances in which DNA can be preserved. If your 15 specimen froze to death in an icy wasteland such as Siberia, or died in a dark cave or a really dry region, for instance, then the probability of finding some intact stretches of DNA is much higher. Even in ideal conditions, though, no genetic information is likely to survive more than a million years. - so dinosaurs are out and only much younger remains are likely to yield good-quality DNA. "It's really only worth studying specimens that are less than 100,000 years old," says Schuster. The genomes of several extinct species besides the mammoth are already being sequenced, but turning these into living creatures will not be easy. "It's hard to say that something will never ever be possible," says Svante Pääbo of the Max Planck Institute 25 for Evolutionary Anthropology in Germany, "but it would require technologies so far removed from what we currently have that I cannot imagine how it would be done." But then (3) 50 years ago, who would have believed we would now be able to read the instructions for making humans, fix inherited diseases, clone mammals and be close to creating artificial life? Assuming that we will develop the necessary technology, we have 30 selected ten extinct creatures that might one day be resurrected. Our choice is based not just on practicality, but also on each animal's "charisma" - just how exciting the prospect of resurrecting these animals is. 1-3

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理科 中学生

理科のイオン化傾向の問題です。考察のところがわからないのでわかりやすく説明してほしいです。

の比較 ~ ◆考察◆ 0硫酸銅水溶液の結果より、 銅·マグネシウム·亜鉛の中で、 卵目 一番イオンになりにくい金属は? 全属イオンを含むe宿液に金場片を入れ イオンへのないやろさを比較みる。 ○そのように判断した理由 とマグネシウムを入れたときどちらも表表面に何かついた 実験方法◆ の次の金属イオンを含む水溶液を、マイクロセルプレートの各列のセルに3mlずつに入 れる。(斜線部分は使わない!) 2硫酸マグネシウム水溶液の結果より、 銅·マグネシウム·亜鉛の中で、 *硫酸鋼水溶液(CUSO4)F *硫酸マグネシウム水溶液(MgSO4) *硫酸亜鉛水溶液(ZnSO4) osnd fosng) 一番イオンになりやすい金属は? ○そのように判断した理由 マグネシウム os fosby fosuz) fosud ②硫酸銅水溶液には、亜鉛片とマグネシウム片を入れ、変化を観察。 の硫酸マグネシウム水溶液には、亜鉛片と銅片を入れ、変化を観察。 の硫酸亜鉛水溶液には、マグネシウム片と銅片を入れ、変化を観察。 の硫酸亜鉛水溶液より、銅·マグネシウム·亜鉛の中で、 二番目にイオンになりやすい金属は金属は ◆実験結果◆ 表の0~6に、起きた変化を書き入れよう! マグネシウム (Mg) (UZ)博画 ○そのように判断した理由 鋼(Cu) 0 硫酸鋼水溶液 2 付着した (口) D(vosno) 硫酸マグネシウム 水溶液 夜化なし 化なし *実験をふり返って(感想、反省、次回に向けてなど) OosaW) ロ 硫酸亜鉛 水溶液 -1 夜化なし (vOSUZ) ロ ロ

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