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生物 大学生・専門学校生・社会人

至急お願いいたします🚨 生物の質問です。 ミトコンドリアの経路についての説明だと思うのですが、電子オーバーフローモデルと電子分布モデルの違いを教えていただきたいです。 また、どういう仕組みなのか、何故このように電子が流れるのかも教えていただきたいです。 UQ poolはユ... 続きを読む

(A) Electron overflow model (considered out-of-date) Alt UQ pool Alternative oxidase inactive. Alt No alternative pathway activity Cytochrome pathway unsaturated Cyt (B) Electron distribution model (reflects current thinking) UQ pool Cyt Alternative pathway active Cytochrome pathway saturated Alt Alternative oxidase active Alt UQ pool Cyt Cyt Figure 14.33 Two models for regulation of electron flow through the alternative oxidase. (A) In the electron overflow model, no appreciable electron transfer through the alternative pathway takes place until electron flow through the cytochrome pathway is at or near satu- ration. This could result from the effects of respirato- ry control, if the rate of mitochondrial ATP produc- tion exceeds its rate of utilization in the cytosol, or from some externally imposed stress, such as low temperature. Under such circumstances, the UQ pool becomes sufficiently reduced to allow electrons to flow through the alternative oxidase, the latter re- quiring that the UQ pool be 40% to 60% reduced to attain significant activity. (B) In the electron distribu- tion model, the alternative and cytochrome path- ways both show significant activity at low levels of UQ pool reduction, and electrons are distributed be- tween the two pathways on the basis of the relative activities of each pathway. The activity of the alter- native oxidase under these circumstances is thought to be regulated by the action of a-keto acids and by reduction/oxidation of the intermolecular disulfide bond, as well as by additional regulatory mecha- nisms not yet characterized.

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英語 高校生

下から5行目のit would~の文構造がわからないです。back upはどのような働きをしているのでしょうか。 教えて頂けるとありがたいです。

A Makeover for Hoover Dam Hydropower has attracted increasing attention in recent years as a renewable type of clean energy. As long as a suitable water source is available, hydropower facilities are usually good investments, producing energy in a manner that generates far less air pollution and CO2 emissions than fossil fuels do. The most common way to generate hydropower is to trap water at a high elevation behind a dam so it can be released and used to spin turbines below, which, in turn, power electricity-producing generators. However, hydropower has its drawbacks. Droughts and increased water consumption have reduced the flow of many rivers. As rivers become shallower, the necessary volume of water for electricity difficult to maintain, and power supply and generation is dependability are negatively impacted. more Variability in water levels has particularly affected Hoover Dam, a mega-scale hydropower facility in the US state of Nevada. Built in the 1930s at enormous expense to control the frequently flooding Colorado River and maintain a water supply for farmland irrigation, the dam's hydropower capabilities were seen as a way to recover some of the costs of its construction over the long term. The dam's electricity-generating capacity, however, was challenged from the start by seasonal variability in water flow, and in recent years has been greatly reduced by droughts. Combining hydropower with other alternative energy sources, though, may offer a solution. Solar and wind plants can produce enormous amounts of electricity, but one serious downside is that the energy they produce is not available when there is little sun or wind. While conventional batteries can help with this issue, storing such tremendous volumes of electricity has long been a challenge. A recently proposed system for Hoover Dam could provide an answer, though. The plan suggests building a new pumping station that would be powered by both wind and solar. It would push water from the river back up to Hoover Dam, refilling the lake behind it. The water could be released anytime to power the dam's generators in order to reliably meet demand for electricity. Kelly Sanders, an engineering professor at the University of Southern California, is enthusiastic about the storage plan, saying, "We by the p replace fo solat als are st ons to the What is 1 Inst inves 2 WE dams 3 A neg sys 1 en

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英語 高校生

添削をお願いしたいです!(画像が送りきれないので回答者の方が返信したら追加で送ります) 自分の解答↓ 短い時間、レンジで加熱すると心臓病のリスクを下げるフラボノイドを増加させることができるが、長い時間加熱したり多すぎる水の中で加熱するとむしろフラボノイドは低下してしまう。た... 続きを読む

一般に,電子レンジでの調理は,他の調理法に比べると栄養素 16 の保持には好ましいとされるが,調理時間が長かったり、多量の 水を使って調理したりするとブロッコリーでは心疾患のリスクを減らす フラボノイド類が減少するという報告がある。 ただ、食材によって栄養保 持の結果はさまざまであり,統一見解はない。電子レンジ調理にプラスチ ック容器を使うと, 可塑剤のフタラートなどの化学物質が溶け出すが, こうした物質は微量であってもホルモンや代謝系を乱すほか、 生殖問題や ぜんそく, ADHD との関連性など,さまざまな悪影響を及ぼすことが指 摘されている。また, 高温になる電子レンジでの加熱で分子の結合が変わ り,新たな高エネルギーの分子が作り出される。 これがDNA と反応し て突然変異を引き起こすとされており, ジャガイモを電子レンジ加熱した ことで,発がん物質として働くアクリルアミドが生成した例が報告されて いる。(400字以内)発 当 解答編

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英語 高校生

3. 問4 この回答だと10点満点だとしたら何点くらいでしょうか? 問5どう考えたら解説のようにnew methodsを2つのかたまりが修飾しているとわかるのですか?

30 methods. Only the larger landowners can afford to make the necessary investments for maximum production of the new grains. With their profits, the large landowners then buy land from the smaller farmers. This way, the large landowners become ever richer and the number of landless poor people increases. Social tensions naturally increase in this situation. 35 Clearly, it is time to question the methods of the Green Revolution. Governments and farmers_need to look at the overall picture and long-term effects. (s They need to find new methods that will better meet the needs of the world's hungry people and that will also be less harmful. Vi (注) fertilizer : 肥料 insecticide : 殺虫剤 (神戸学院大) 問1 空所( 1 ) に入れるのに最も適当なものを、次のア~エから1つ選びなさ Po =取り除く 遅れず遭いて行く 7. get rid of イ. run out of keep up with J. come up with 問2 空所(2a)~( 2d)に入れるのに最も適当なものを、次のア~エからそれ ぞれ1つずつ選びなさい。 ただし,文頭にくるべき語も小文字で始められてい る。 ア. social and political conflict イ. the nature of the chemicals that farmers have used 195 ウ. the_expense of the new farming methods 費用 エ. soil_erosion 下線部(3)の語(句) を文意が通るように並べ換えなさい。 下線部(4) の内容を50字以内の日本語で述べなさい。 下線部(5) を日本語に訳しなさい。 英文のタイトルとして最も適当なものを、次のア~エから1つ選びなさい。 Environmental effects of the “Green Revolution” Increase in food production through the “Green Revolution" Some negative aspects of the “Green Revolution" エ. Success of the “Green Revolution" 1. (a)7. () I (e)t leadp (24) ア 問3 問4 問5 問6 3. the grain people used to grow 間、新しい作物に移して得た不必大きなさの 所有者がさな農場の土地を買うこと。 8 ・間5.西府と農家は世界中の空腹な人々の需要を満たす より良い、新しい方法を見つけ、害を少なくしていく必要がある

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