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英語 中学生

(1)なぜ、ウではなくエになるのかの理由を教えてほしいです 見づらくてすみません🙇‍♀️

これを読んで、あとの問いに答えなさい。 Hi, I'm Kaito. Today, I will talk about Al "devices. We use many kinds of Al devices lik use it to do work given by humans, I think Al devices can make our lives better. There "robots, "drones, and "smartphones, AI devices collect a lot of information, rememberi still a lot of work AI devices cannot do but they can do some work to make our lives easi Through my speech, I want you to learn more about Al devices and to live with them in the future. imagine how It was held by Kamome City At the event, I learned about many kinds of AI devices I didn't know anything about AI devices before I joined an event about them th that can help humans. we ca this summe 9 with her body, it asked her some questions, and gave her suggestions to make her fee better. A man from Kamome City Office said to me, Though this robot can work like doctor, (D). It cannot replace a doctor. But there will be more robots working in hospitals in the future." At the event, I started thinking about the ways to make Al device nt, I started to learn more about AI devices. I've learned that A this graph. It shows the "changes in the number of farmers in 2010, 2015, and 2020 in devices are used in many different ways. For example, AI devices help farmers. Japan and how old they were in each year. The number of farmers became smaller, and the "percentage of the farmers who were 60 years old and older than 60 years old became larger And now, AI devices are expected to be a great help to farmers. After I went to the event, 605799 Look saw graph : グラフ camera:カメラ changes in color(s): 下線部が表すグラフとして Changes in the number of farme ウ 250 (万人) 200 179.8 175.7 150 152.4 100 138.2 50 27A 2010 ° 37.5 2015 C60 years old and older than younger than 60 years old. Changes in the numbe (万人) 250 200 161.6 175 150 108.9 100 13 50 50 62.7 0 2010 60 years old and younger than t )~( (2) 1 を,あとのア~ there are B humans C robots c ア ウ 1-A 1- B 1 I went to another event to learn how AI devices actually help farmers. One robot I there helped farmers pick tomatoes. The robot has a "camera on it to collect a lot of information about the tomatoes. It remembers the shapes and "colors of "ripe tomatoes and decides when to pick the tomatoes. When it decides to pick the tomatoes, it picks them with its arms. Farmers send the tomatoes that the robot has picked to the stores. At this event, talked with a farmer who used the "tomato-picking robot. I asked him, "What do you think about working with the robot?" He said, "I don't think robots and humans can do all of the same work. But)(2). Today, robots have become very important. The number of young people who want to be farmers has become smaller, because a farmer's work is hard and needs much experience. If robots can do the hard work for farmers, they will improve farmers' lives. I hope more young people will want to become farmers." AI devices are used in our lives in many ways. I've learned that it is difficult for us to live without AI devices in today's world. However, we need to remember AI devices are not perfect. AI devices can remember all the information they collect, but 3). So, we always have to think about effective ways of using them. I hope that more AI devices will be used to help people. AI devices, like the doctor robot and the tomato-picking robot, can improve our lives. So, I want to make AI devices that can work well with humans to make our lives better in the future. That's my dream. Thank you for listening. (E) device(s): robot(s): ロボット drone(s): ドローン smartphone(s): スマートフォン be held 開催される suggestion(s): * City Office T replace: ~に取って代わる BC (3)次のa~ ano あとのア a Kait Kai Ka d Th Ro K eイアオ

解決済み 回答数: 1
生物 高校生

5、6の解説をお願いします。🙇🏻‍♀️

39万 035 タンパク ⅣV. 次の文を読み、またコドン表を参考にしながら、 下記の設問1~6に答えよ。 解答は解 答用紙の所定欄にしるせ。 図1は, 345アミノ酸残基からなる大腸菌のタンパク質を指定するmRNA (長さ1110 ヌクレオチド)を示す。 なお, 下線部は、このmRNAの内部の連続した50 ヌクレ オチドの配列である UGADASUAO 1 5′A--//--AUGア --//-- 100 1110 1035 75 ATG 3 そ ATG 5' 35 5' 3 _G 5' TAC E 5' 5' 3' CUACUUGCAAGGGCGGAAGO 30コ 21Q 5' UUUCAUCGUGUCAUAGCCAGUCCU/AACAUG--/ 50(1時 ACÁUG--//--AA--//--U3 1110 3 図1 45 Fab 1.開始コドン AUGのAはmRNAの5'端から数えて31番目のヌクレオチドである。 終 止コドン UAA の UはmRNAの5'端から数えて何番目のヌクレオチドか。 その数をし あるせ。なお、開始コドンが指定するアミノ酸は生じたポリペプチドから切り離されない とする。 作者の1066 香 2. 鋳型となるDNAからこのmRNAが作られている様子を表す図として適切なものは どれか。 次のa〜hから1つ選び、その記号をしるせ。 なお、図には DNA 上の開始コ ドンの位置を示してあり, mRNAは点線で表されている。 AAAAAG $850* UC124 買 (d) 10 Q Q a гo à a Q Q 9 TS(E CGU,CGC, CGACGG ATG 5° ATG 5' 00 ADO Daol NERAN MA A30 ATGUDA 4 ATG 3 5' 5' 5 ASA 35 DDA JAD 200 ADD 055 A DADI 3 g ATG 5' 3' ATG 5' 3' CUBI NID SYCHONP+ a 3. 翻訳はmRNAに結合したリボソームで行われる。 リボソームを構成する物質として 正しいものを、次の a 〜e からすべて選び、その記号をし Aa DNA ONA リン脂質 d. 多糖タンパク質 4.NAはmRNA上のコドンと相補的な塩基配列を持つアンチコドンを含んでいる。 コドンとアンチコドンが結合するときは、2つのRNAの方向は互いに逆向きである。 tRNAの3'端にはアミノ酸が結合しており、 コドン表に従ったアミノ酸がリボソーム に運ばれる。 図1に示す mRNAを翻訳中のリボソームにおいて,アの位置に図2 に示すアンチコドンを持つtRNAが結合した。 この tRNAが運んだアミノ酸の名をし E るせ。 イソロイシン 無料 を、 Cb生16- 5.酵素X は,ポリペプチドに含まれるアルギニンまたはシンとその次のアミノ酸の間 の鋳型になっている のペプチド結合を切断する。 図1のmRNA が指定するポリペプチドを酵素Xで処理す ると複数本のポリペプチドの断片が生じた。 図1中の下線部」 DNAに変異が生じて, mRNA 上で1つのウラシルがアデニンに変化した結果, 酵素X - Cb生17- さされ

解決済み 回答数: 1
英語 高校生

黄色線のhis business が 干渉しないよう という意味になるんですか😵‍💫

3,000 animated characters. 2 Blanc was born on May 30, 1908, in San Francisco, California. However, when he was a child, his family moved to Portland, Oregon, where he attended 問1の正解の根拠 ~へ引っ越した 〜に通った school. When he was young, a game he used to play by himself was to look at, よくしたものだ 一人で for example, a bird, and try to imagine what it would sound like if it could talk. Then, he would try to make the voice that he had imagined. 問1の正解の根拠 ~を集めた 問1の正解の根拠 3 In 1927, Blanc began working for a daily radio program. There, because the sponsors could not afford to hire more actors, Blanc used his own voice for many of the show's characters. After that, he moved to Los Angeles, California, where he joined Leon Schlesinger Productions, an animation studio that had assembled some of the greatest voice actors of the time. This company did the work for Warner Brothers, which developed the cartoons that made Blanc rotair lo subiq soloqu na diw envoys abiyong liw 4 Without a doubt, Blanc's most famous voice is that of Bugs Bunny, the star of the Warner Brothers animated line-up since 1940. Blanc not only provided Bugs Bunny a voice, but also a personality and his famous catch-phrase, "What's up, doc?" The team involved in creating Bugs was very careful about famous. 〜に関わった 問3の正解の根拠 giving him a personality that would be popular for everyone. They decided that Bugs would not be an unkind character; he would just always be peacefully minding his business until someone started trying to hurt him or make him do something he did not want to do. Then, he would fight back. Blanc was very JAKE 問3の正解の根拠 proud of Bugs and thought that the character could be a role model. He said, "Bugs does what most people would like to do but don't have the guts to do." 問2の正解の根拠 5 By the 1940s, Blanc was providing the voices for more than 90 percent of the Warner Brothers cartoon characters. To put that in perspective, from 1940 to 1959, Warner Brothers released almost provided about 540 voices during that time. それを総体的に見ると 600 cartoons. That means Blanc Through this time Blanc appeared on many radio and television programs. He provided the voices for the most 問1の正解の根拠 lovable side characters on extremely popular programs of those days. Then, in the 1960s, he voiced some of the characters in "The Flintstones," the first -126- 生 H

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生物 高校生

ATPをADPとリン酸に分けるのは何のためですか?🙇🏻‍♀️ お願いいたします🙏

C ストロマで起こる反応 (NADPH, ATPの利用) ストロマでは、チラコイドの反応で合成され たNADPHとATPを用いて、 二酸化炭素が固 定され, 有機物が合成される。この反応経路は, 多くの酵素が関与する化学反応からなり,カ Guide ガイド 光 NADPH チラコイドで 起こる反応 ストロマで 起こる反応 ATP 葉緑体 [有機物] ルビン回路と呼ばれる。カルビン回路の反応過程は、二酸化炭素の有機物への固定, PGAの還元, RuBP の再生の3つの段階に分けることができる。 ●二酸化炭素の固定 カルビン回路では、細胞内に取り込まれた二酸化炭素は,まず Cs化合物であるリブロースビスリン酸 (RuBP) と反応し, C3 化合物であるホスホグ ibulose 1.5-bisphosphate- phosphoglycerate リセリン酸(PGA)2分子となる。この反応は, RuBP カルボキシラーゼ/オキシゲナー ゼ (RubisCO, ルビスコ)と呼ばれる酵素によって促進される(図9-1)。 ribulose 1,5-bisphosphate carboxylase/oxygenase ●PGAの還元 PGA は, ATP によってリン酸化されたのち, NADPHによって還 元され, C3化合物であるグリセルアルデヒドリン酸 (GAP) となる(図9-②)。 glyceraldehyde phosphate ●RuBP の再生 GAPの多くは、いくつかの反応を経たのち, RuBPに戻る (図9-③)。 カルビン回路では, 6分子の二酸化炭素につき, 18分子のATPと12分子のNADPH が消費されて2分子のGAPが同化産物として得られ,光に由来するエネルギーがこれ に貯えられる。このGAPが糖などの有機物に変えられ, 生命活動に利用される。 ①二酸化炭素の固定 PGA ②PGAの還元 ルビスコ ×12 C3 12 ATP 6 CO2 (36) Start RuBP +12 ADP +12 (P) C5 ×630 C3 ×12 6 ADP +6(P カルビン回路 6 ATP 12 NADPH +12 (H+ →12 NADP+ 10 30 C3 ×10 6 H2O C3 ×12 GAP -----C3×2 回路全体で, RuBP 6分子に つき H2O 6分子が生じる。 GAP ③RuBP の再生 有機物 図9 カルビン回路 MOVIE

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