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化学 大学生・専門学校生・社会人

はじめまして。 問2.3がわからなくてとても困っています。 もしよろしければ教えていただきたいです。 よろしくお願いします。

<問題> 1) 安息香酸、クロロフェノール、アントラニル酸メチルのpK』 をPubChem で調査せよ。 2) 二つの化学種が平衡状態にあるとき、 Gibbs 自由エネルギー差はAG =-RT In K で表 される。 ここでKは平衡定数 (ある化学種に占めるもう一方に化学種の割合) である。 メチルシクロヘキサンのメチル基がアキシアルを占める立体配座とエクアトリアルを 占める立体配座の標準状態における存在比を求めよ。 計算実験で得られた立体配座異 性体のエネルギーの差を Gibbs 自由エネルギー差の近似値として用いてよい。 なお、In (エルエヌ) は自然対数を指しInx = yならばey=x (左辺はexp (y) と書くこともある) である。 気体定数は R ≒ 8.31 JK-1 mol-1 を用いよ (Bruice 有機化学、 5.7 参照)。 3) メタン、エチレン、アセチレンの分子軌道を量子化学計算の一種であるハートリー・ フォック法により計算せよ。 Engine: Gamess, Calculation: Molecular Orbitals, Theory: RHF, Basis Set: Minimal:STO-3G を指定せよ。 各化合物はそれぞれいくつの 分子軌道をもつか。 上記のうち、 多重結合を有する化合物について、 全ての軌道を 図示し占有数(Occupancy) を示せ。 また、 それぞれの化合物の結合角(∠HCH やく HCC) はおよそ何度か。 これまでに学習した軌道の混成状態についての知識と比較せ よ。

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英語 高校生

fについてです 解説が載っていなかったため質問しています、。 なぜ、③を選ぶことができるのでしょうか?

Long-s doctrin holds that we are protected from fungi not just by layered immune defenses but ( e ) we are mammals*, with core temperatures higher than fungi prefer. The cooler outer surfaces of our bodies are at risk of minor assaults-think of athlete's foot*, yeast infections, ringworm*-but in people with healthy immune systems, invasive* infections have been ( f ). That may have left us overconfident. "We have an enormous (g) spot," says Arturo Casadevall, a physician and molecular microbiologist at the Johns Hopkins Bloomberg School of Public Health. "Walk into the street and ask people what are they afraid of, and they'll tell you they're afraid of bacteria, they're afraid of viruses, but they don't fear dying of fungi." Ironically, it is our successes that made us vulnerable*. Fungi exploit damaged immune systems, but before the mid-20th century people with impaired immunity didn't live very long. Since then, medicine has gotten very good at keeping such people (h), even though their immune systems are compromised by illness or cancer treatment or age. It has also developed an array of therapies that deliberately suppress immunity, to keep transplant recipients healthy and treat autoimmune* disorders such as lupus* and rheumatoid arthritis*. ( i ) vast numbers of people are living now who are especially vulnerable to fungi. Not all of our vulnerability is the fault of medicine preserving life so successfully. Other ( j ) actions have opened more doors between the fungal world and our own. We clear land for crops and settlement and perturb* what were stable balances between fungi and their hosts. We carry goods and animals across the world, and fungi hitchhike on them. We drench crops in fungicides* and enhance the resistance of organisms residing nearby. (s) ELSE

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英語 高校生

英文の方写真汚くて申し訳ないです汗  3パラグラフ目の印のしてあるaround が、和訳中のどの部分に当たるか分かりません。教えていただきたいです。

テーマ 専門性☆☆☆ 英文レベル★★★ 30 DNAはウイルスから? 文 11 What with the threat of bird flu, the reality of HIV, and the genera unseemliness of having one's cells pressed into labour on behalf of something alien and microscopic, it is small wonder that people don't much like viruses. But we may actually have something to thank the little 5 parasites for. They may have been the first creatures to find a use for DNA, a discovery that set life on the road to its current rich complexity 12 The origin of the double helix is a more complicated issue than it might at first seem. DNA's ubiquity -all cells use it to store their genomes - suggests it has been around since the earliest days of life 10 but when exactly did the double spiral of bases first appear? Some think it was after cells and proteins had been around for a while. Others say DNA showed up before cell membranes had even been invented/ The fact that different sorts of cell make and copy the molecule in very different ways has led others to suggest that the charms of the double 15 helix might have been discovered more than once. And all these ideas have drawbacks. "To my knowledge, up to now there has been no ⚫ convincing story of how DNA originated," says evolutionary biologist Patrick Forterre of the University of Paris-Sud, Orsay. 13 Forterre claims to have a solution. Viruses, he thinks, invented » DNA as a way the defences of the cells they infected. Little more than packets of genetic material, viruses are notoriously adept at* avoiding detection, as influenza's annual self-reinvention attests. Forterre argues that viruses were up to similar tricks when life was young, and that DNA was one of their innovations. To some researchers 25 the idea is an appealing way to fill in a chunk of the DNA puzzle. 270 •

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