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English Senior High

(5)についてeat the foodsではダメですか?

erdeen me we w break ma 東京医科歯科大 One reason may be breakfast's nutritional value-partly because cereal is Tarified with vitamins. In one study on the breakfast babits of 1.600 young people Julete, vitamin C, iron and calcium, was better in those who had breakfast in the U, researchers found that the fire and micronutrient intale, including of regularly. There have been sämiäer finelings in Australia, Brazil, Canada and the Breakfast is also associated with improved brain function, including concentration and language. A review of 54 studies found that eating breakfast can improve memory, though the effects on other brain functions were inconclusive. However, one of the review's researchers, Mary Beth Spitznagel says there is "reasonable" evidence breakfast does improve concentration-there just needs to be more research. "Looking at studies that tested concentration, the number of studies showing a benefit was exactly the same as the number that found no benefit," she says. "And no studies found that eating breakfast was bad for concentration." What's most important, some argue, is what we eat for breakfast. High-protein breakfasts have been found particularly effective in reducing food fravings and consumption later in the day, according to research by the Australian Commonwealth Scientific and Industrial Research Organisation. While cereal remains a firm favourite among breakfast consumers in the UK and US, a recent Which? investigation into the sugar content of 'adult' breakfast cereals found that some cereals contain more than three quarters of the recommended daily amount of free sugars in each portion, and sugar was the second or third highest ingredient in seven out of 10 flaked cereals. 5)PV But some research suggests if we're going to eat sugary foods, it's best to do it early. One study found that changing levels of the appetite hormone leptin in the body throughout the day coincide with having our lowest threshold for sweet food in the morning, while scientists from Tel Aviv University have found that hunger is best regulated in the morning. They recruited 200 obese adults to take part in a 16-week-long diet, where half added dessert to their breakfast, and half didn't. Those who added dessert lost an average of 40 lbs (18 kg) more-however, the study was unable to show the long-term effects.

Unresolved Answers: 1
Science Junior High

この(2)の答えがオになるのが理解できません。 解説を見てF'P1':P1'Q1'=8:5というのは理解できるのですが、それがどう答えに繋がるのかが分かりません。 どなたか教えて下さい。🙇

難関入試対策 思考力問題 Qo Solution ●次の文章を読み、あとの問いに答えなさい。 とつ 右の図は、凸レンズの左側に物 体を置いたとき, 凸レンズの右側 に実像ができたようすを表してい 物体 る。このとき, 凸レンズの中心と 物体でつくる △OPQ と, 凸レ ンズの中心と像でつくる △OP1 Q1 そうじ との間には相似の関係があること がわかる。 きょり いま,大きさが10cmの物体 PoQo を凸レンズとの距離が80cmのところに置 くと、実像 P Q は凸レンズから20cmのところにできた。このとき, 実像 P,Q1 の大きさは(①)cmであった。この状態から凸レンズを(②)cmだけ左へ 動かすと,実像 P,Q, と同じ位置に実像 Pi'Q1' ができた。このとき実像 P,'Q'' の 大きさは(③)cmであった。 Po 焦点F イ ②30, ③10 オ②60,③40 第1章 ウ ②40,③15 カ ②70,③90 O AD.O. が相似であることから, OP:OPP R1 くうらん (1) 空欄 ① に入る数値を答えなさい。 (2) 空欄②③に入る数値の組み合わせとして正しいものを、 次の中から選び記号で 答えなさい。 ア ②20, ③6.7 エ②50,③23.3 KOP Level 3 R2 【大阪桐蔭高 - 改】 Key Point △ABCと△DEF において対応する2組の角がそれぞれ等しいとき, △ABCと△ DEFは相似 (同じ形) であるという。 対応する辺の長さの比は等しくなり, AB:DE= BC: EF=AC: DF がなりたつ。 焦点F'P1 光軸 実像

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Mathematics Senior High

東工大数学 採点していただきたいです。 途中まで(ノートの左下)で間違えています 50点中何点もらえますか?

24 する。 辺ABを xl-x (0≦x<l) の比に内分する点Pと,辺ACをy: l-y (0≦y<1> の比に内 分する点Qをとり、線分BQ と線分 CP の交点をRとする。 このとき, RがAM に含まれるような (x,y) 全体をxy平面に図示し, その面積を求めよ。 (ただし、道 AB. 辺ACを0:1の比に内分する点とは,ともに点Aのこととする。) 2003年度 (3) △ABCにおいて, 辺ABの中点をM. 辺ACの中点をとする。 ポイント 前半は、平面ベクトルの典型問題である。 平面上のどのようなベクトルも その平面上の2つのベクトルa, a≠0. b=0, ax b) を用いて, Bb (a. B は実数) の形に表されること, そしてその表し方は1通りであることは重要な事実であ る。また、△ABCの間および内部にある点Pは, AP=αAB+ BAC (a+β≦1,420 B20) で表されることもマスターしておくべき基本事項である。 520) 不等式の表す領域の図示と面積を求めるための定積分計算である。 解法 △ABQにおいて, AQ=yAC (0≦y<1) であるか ら,実数s を用いて AR = (1-s) AB+syAC (0≦s≦1) ...... ① と表せる。 また, ACP において, AP=xAB (0≦x<1) であるから実数を用いて AR=AB+(1-1) AC (0≦t≦) ....... ② と表せる。 ABとACは1次独立 (AB AC. MEAN AB≠0. AC ±0) なので ①②より したがって. ①より AR=(1-1-4) AB+1-5 1-xy ここで -xyAC= x (1-y) 1-xy B 1-s=tx, sy=1-1 が成り立つ。 0≦x<1,0≦y<1に注意して, この2式からtを消去すると 1-1 E'S (1-x) -AB + Level B M O P _y(1-x) -AC 1-xy x(1-y) 1-xy とおくと AM= y (1-x) 9= 1-xy AM-AR AN-ACCA& AR=pAB+qAC=2pAM+2qAN となり、点Rが△AMN に含まれるためには xy- 2p+2q≦1④ が成り立つことが必要十分である。 ③を用いると, ④ ⑤ はそれぞれ y(1-x)206 1-xy x+y-2xy=-xy = 1-xy 0≦x<1,0≦y<1より. ⑤'は成り立つ。 また, 0≦x<1,0≦y<1に注意して, ④'を変形す ると よって, 0≦x<1,0≦y<1のもとで, ④’を満たす 点(x,y)をxy平面に図示すると、右図の斜線部 分(境界はすべて含む)になる。 すなわちy=1/1 23 2p20. 2q205062 [注]不等式 (x-2)(x-2/31) 2010/19 リー = x (1-y), -≥0. 1-xy 5- £² (1.-7. 3) 4 S= 9 2 ---- (10)+ §3 平面図形 129 UN + 1/23 を描く。 次に、この境界線で区切られた3つの部分の1つを選 y= の表す領域を図示するには、まず境界線 (x-2)(x-2)=1/ *3 び、その中の1つの点の座標を不等式に代入してみて、成り立てばその点を含む部分に 斜線を施し(同時に境界線をまたいだ隣の隣にも斜線を施す)。 成り立たなければ隣の 部分に斜線を施す。 正領域∫ (x,y) > 0.負領域f (x,y) <0は境界線をまたいで交互に 現れることを利用するのである。 さて 求める面積をSとすると

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Biology Undergraduate

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... Read More

(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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English Senior High

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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