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英語 中学生

大問2の英作文(4点満点)と大問3の英作文(5点満点)を採点して点数をつけて欲しいです!お願いします! 大問2の英作文 I chose D.The way is easy very much for me, so it's better than others. 大問3の英... 続きを読む

次の資料1は, せんと博物館 (Sento Museum) の利用案内の一部である。 また, 資料2は,ま ほろば駅 (Mahoroba Station) から, せんと博物館への行き方を【A】~【D】の4通り示したもので ある。各問いに答えよ I droice wasatin adi of og worlife 資料1 menom od ni donut send oj soalq ou si mad Museum Hours O E net li mortete sdotodely to dix jest gilt sen bfrade no? The museum is open from 10:00 a.m. to 6:00 p.m. Last admission is 30 minutes before closing time. te adorodlalá moi amoen wil nety of 181 9800 oy II Holidays The museum is closed from December 28 to January 1. 資料2 Special Exhibition The "Kano Eitoku" Special Exhibition will be held from April 1 to October 31, 2023. TangP Others HA1~1 to 311075 [A] [B] The restaurant is on the second floor, and it is open from 11:00 a.m. to 2:00 Eating and drinking is allowed in the garden. 2 ICI [D] ( 一般選抜 ) in.q 00:2 in COST2 edotoel in ste Doy (注) (2023年) - 9 Take a train from Mahoroba Station to Sento Station. [about 7 minutes] Take bus number 1 in front of the East Exit of the station and get off at the "Sento Museum" bus stop. [about 9 minutes] Then, walk to the museum. [about 3 minutes] Ren p.m. Take a train from Mahoroba Station to Sento Station. [about 7 minutes] Use the East Exit of the station and walk to the museum. [about 27 minutes] admission A open (店などが) 開いている closed (店などが) 閉まっている exhibition Take bus number 2 in front of the East Exit of Mahoroba Station and get off at the "Sento Museum" bus stop. [about 42 minutes] Then, walk to the museum. [about 3 minutes] closing: 閉館の Take a taxi in front of the West Exit of Mahoroba Station to the museum. [about 25 minutes] allow: 許す exit

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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(A) Electron overflow model (considered out-of-date) Alt UQ pool Alternative oxidase inactive.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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