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English Senior High

写真の黄色い線の部分の文構造を教えていただきたいです🙇 また、 ①ifは「ーかどうか」で訳していいのか ②thisは何を指しているか ③itは何を指しているか も教えていただきたいです。 よろしくお願いします💦

Phil Hello. This is 6 Minute English from BBC Learning English. I'm Phil. Beth And I'm Beth. Phil So, Beth, we're talking about the best education systems in the world today. You went to school here in Britain. What do you think of the British education system? Do you think it could be the best? Beth I think that it's quite good, there's probably a couple of things that I personally would change about it, but I would say it's quite good, but maybe not the best in the world. Phil Well, in this programme, we're going to be talking about the Pisa rankings. Beth The rankings are based on tests carried out by the OECD, that's an international organisation, every three years. The tests attempt to show which countries are the most effective at teaching maths, science and reading. But is that really possible to measure? Well, here is former BBC education correspondent Sean Coughlan talking to BBC World Service programme 'The Global Story'. Sean Coughlan When they were introduced first of all, that was a very contentious idea, because people said 'how can you possibly compare big countries... how can you compare America to Luxembourg or to, you know, or to parts of China, or whatever?' Phil Sean said that the tests were contentious. If something is contentious, then it is something that people might argue about it's controversial. So, at first, Pisa tests were contentious because not everyone believed it was fair to compare very different countries. Beth Phil, I've got a question for you about them. So, in 2022, Singapore was top of the reading rankings. But which of these countries came second? Was it: a) The USA? b) Ireland? or, c) The UK? Phil I think it might be b) Ireland. Beth OK. Well, we will find out if that's correct at the end of the programme. A common pattern in the Pisa rankings is that the most successful countries tend to be smaller. Talking to BBC World Service programme 'The Global Story', Sean Coughlan tells us that many large countries from Western Europe don't score that highly in the rankings. Sean Coughlan They're being outpaced and outperformed by these fast, upcoming countries - you know, Singapore, or Estonia, or Taiwan, or those sort of places which we don't historically think of as being economic rivals, but I suppose the argument for Pisa tests is, if you want to have a knowledge economy, an economy based on skills, this is how you measure it. Phil We heard that many large European countries are being outpaced by smaller nations. If someone outpaces you, they are going faster than you - at a higher pace.

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English Senior High

線を引いたところの訳し方を丁寧に教えて頂きたいです🙇‍♀️

L American poet Ralph Waldo Emerson once said, "Every artist was first an amateur." He likely never thought those words would apply to machines. Yet artificial intelligence (AI) has demonstrated a growing talent for creativity, whether writing a heavy-metal rock album or producing an original portrait that is strikingly similar to a Rembrandt. Applying AI to the art world might seem unoriginal; there are, of course, plenty of humans delivering awe-inspiring work. Supporters say, however, the real beauty of training AI to be creative does not lie in the end product-but rather in the technology's potential to expand on its own machine-learning education, and to solve problems by thinking in different ways far faster and better than humans can. For example, creative problem-solving AI could someday make snap decisions that save the lives of the passengers in a self-driving car if its sensors fail. AI with a creative component will be essential in developing highly automated systems that can respond appropriately to human life, says Mark Riedl, an associate professor at Georgia Institute of Technology's School of Interactive Computing. "The fact is, we do lots of little bits of creativity every single day; lots of problem-solving goes on," Riedl says. "If my son gets a toy stuck under the couch, I have to devise a tool from a hanger to get it out." Riedl points out human creativity is also important in human social interactions, even telling a well-timed joke or recognizing a pun. Computers struggle with such subtleties. An incomplete understanding of how humans construct metaphors, for example, was all it took for an experiment in Al-generated literature to compose a new Harry Potter chapter filled with nonsensical sentences such as, "The floor of the castle seemed like a large pile

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Biology Senior High

左の画像の赤線部では光リン酸化はH+やATP合成酵素によってされるものと思いましたが、右の画像の赤線部ではATPによってリン酸化されるとあるのは何故ですか?🙇🏻‍♀️

V ●水の分解を放出して酸化された反応中心クロロフィルは,他の物質からe を受 け取りやすい状態になっている。この状態にある光化学系IIの反応中心クロロフィル は、水からe を得て還元され,活性化する前の状態に戻る。 eを失った水は分解され、 酸素とHが生じる (図8-①)。 ●電子伝達 光化学反応で活性化された光化学系Ⅱ から放出されたは,eの受け渡 しをするタンパク質で構成された電子伝達系と呼ばれる反応系内を移動する。このと electron transport system き同時に,Hがストロマからチラコイド内腔に輸送され,チラコイド膜をはさんで Hの濃度勾配が形成される (図3-2)。 電子伝達系を経たe は, 活性化された光化学 酸化 系Ⅰの反応中心クロロフィルを還元する。 ●NADPHの合成 活性化された光化学系Ⅰから放出された2個のと、2個のH+に よってNNADPが還元され, NADPHとHが生じる(図3-③)。 ●ATPの合成 光化学系ⅡI での水の分解や, 電子伝達系におけるH+の輸送によって、 チラコイド内腔のHの濃度はストロマ側よりも1000倍程度高くなる。こうして, チ ラコイド膜をはさんでH+の濃度勾配が形成される。 この濃度勾配に従ってH+ は ATP ごうせいこう。 ATP synthase 合成酵素を通ってストロマへ拡散し、これに伴ってATPが合成される (図8-④)。 こ さんか の過程は光リン酸化と呼ばれる nhotophosphorylation このような過程によって, 光エネルギーに由来するエネルギーがNADPHとATP に貯えられる。 これらは, ストロマで起こる反応に利用される。 電子伝達系 NADP +2H+ NADPH + H+) 光 光化学系 Ⅱ 光 光化学系 1 チラコイド膜 (H+ 光合成色素 e x2 反応中心 クロロフィル 1) (H+ 反応中心 (H+ (H+ (H+ H2O 2 H+ + O2 クロロフィル H+ | チラコイド内腔: H+濃度 (H+ (H+ ストロマ: H+濃度低 図 8 チラコイドで起こる反応 MOVIE (円) ATP 合成酵素 (H+ リン酸 (P+ADP (H+) ATP

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English Senior High

(4)について This is why にしてしまいました。  This is becauseというようなThis is whyの表現ではだめな理由を教えてください

(60分) Ⅰ 次の英文を読んで、下の設問 (1)~ (11) の語には注が付いています。 に答えなさい。 なお、 Food is fuel. When your body needs energy, you eat. When it doesn't you don't. It should be so simple when you think about it, but that's exactly the problem: us big smart humans can and do think about it, (, introduces all manner of problems and neuroses*. Have you noticed how you always have "room for dessert"? You might have just eaten the best part of a cow, or enough cheesy pasta to sink a gondola, but you can manage that fudge brownie or sundae. Why? How? If your stomach is full, how ice cream triple-scoop b) eating more even physically possible? It's largely because your brain makes an executive decision and decides that, no, you still have room. The sweetness of desserts is a palpable* reward (7)that the brain recognizes and wants so it overrules the stomach. C Exactly {c case is ③ is 4 the this why) uncertain. It may be that humans need quite a complex diet in order to remain in tip-top* condition, so rather than just relying on our basic metabolic systems to eat whatever is available, the brain steps in and tries to regulate our diet better. And this would be fine if that was all the brain does. But it doesn't. So it isn't. Learned associations are incredibly powerful when it comes ( d ) eating. You may be a big fan of something like, say, cake. You can be eating cake for years without any bother, then one day you eat some cake that makes you vomit. Could be some of the cream in it has gone sour; it might contain an ingredient you're allergic to; or (and here's the annoying one) it could be that something else entirely made you throw up shortly after eating cake. out of The disgust eating poiso g And it consider th The brain than food, it doesn't worryingl needlessl one of li shovelin the brai (注) (1) (2

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TOEIC・English Undergraduate

下線部(1)の文構造が分かりません。特に2行目の文構造が分かりません。強調のdoであることは分かりますが、その後のthat以降が関係詞?かすらも分からないので、誰か教えて下さい!

次の英文は1991年に出版された本からのもので、 研究分野としての「人工知 能」 (Artificial Intelligence) について述べています。 下線部(1)~(3)を日本語に訳 しなさい。 What is Artificial Intelligence (AI)? Just about the only characterization of Al that would meet with universal acceptance is that it involves trying to make machines do tasks which are normally seen as requiring intelligence. There are countless refinements of this characterization: what sort of machines we want to consider; how we decide what tasks require intelligence and so on. One of the most important questions concerns the reasons why we want to make machines do such tasks. AI has always been split between people who want to make machines do tasks that require intelligence because they want more useful machines, and people who want to do it because they see it as a way of exploring how humans do such tasks. We will call the two approaches the engineering approach and the cognitive-science respectively. (2) (1) approach The techniques required for the two approaches are not always very different. For many of the tasks that engineering AI wants solutions to, the only systems we know about that can perform them are humans), so that, at least initially, the obvious way to design solutions is to try to mimic what we know about humans. For many of the tasks that cognitive-science Al wants solutions to, the evidence on how humans do them is too hard to interpret to enable us to construct computational models, so the only approach is to try to design solutions from scratch" and then see how well they fit what we know about humans. The main visible difference between the two approaches is in (3) their criteria for success; an engineer would be delighted to have create something that outperformed a person; a cognitive scientist would regard it as a failure. -1- M7 (492-61

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IT Undergraduate

Oracle certified Java Programmer Gold SE11 IT系ベンダー資格のOracle certified Java Programmer Gold SE11の資格勉強をしているのですが、もし、Javaに詳しい人がいるのでしたら、 第6章... Read More

8. 次のコードをコンパイル、 実行したときの結果として、正しいものを びなさい。 (1つ選択) } var sql = "select * from item where id = ?": try (var ps = con.prepareStatement (sql)){ ResultSet rs = ps.executeQuery(); // do something 0件の検索結果が戻される 11. 次のコードをコンパイル、実行したときの結果として、正しいものを選 びなさい。(1つ選択) var sql = "select * from emp"; try (PreparedStatement ps = con.prepareStatement(sql){ ResultSet rsps.executeQuery(); System.out.println(rs.getString(2)); なお、 検索する対象となるempテーブルは、以下のレコードが登録さ れているものとする。 DEPARTMENT A. B. 全件の検索結果が戻される C. コンパイルエラーが発生する D. 実行時に例外がスローされる ID NAME 1 ALLEN R&D A. B. executeQueryメソッド C. executeメソッド D. executeBatch メソッド メソッドとして、最も適切なものを選びなさい。 (1つ選択) executeUpdate メソッド 19. JDBCを使ったデータベースプログラミングをしている。 UPDATE文を 実行した結果、 何件更新されたかを調べたい。 PreparedStatementの P314 2 SCOTT SALES 3 BILL ACCOUNTING A. 「1」 と表示される Marit B. 「2」 と表示される C. 「ALLEN」 と表示される D. 「SCOTT」 と表示される E. コンパイルエラーが発生する F. 実行時に例外がスローされる 第6章 JDBCによるデータベース連携 (問題) <->P316 P314 10. 次のコードをコンパイル、 実行したときの結果として、正しいものを選 びなさい。 (1つ選択) var sql = "delete from item where id = ?"; try (var ps = con.prepareStatement(sql))( ps.setInt(1, 1); ps.executeUpdate("update item set name="test' where id = ?'); 12. 次のコードをコンパイル、 実行したときの結果として、正しいものを選 びなさい。 (1つ選択) var sql = "select count(*) from item"; try (PreparedStatement ps = con.prepareStatement(sql)){ System.out.println(ps.execute()); なお、検索する対象となるitemテーブルは、以下のレコードが登録さ れているものとする。 A. DELETE文が実行される id name 1 B. UPDATE文が実行される banana 2 C. コンパイルエラーが発生する apple 3 D. 実行時に例外がスローされる P316 orange 298 ※次ページに続く 299

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Mathematics Undergraduate

多様体を構成するために、位相空間に完全アトラスを導入するところで質問です。 完全アトラスを導入するメリットとして、この文章の下線部を「異なる座標系を用いたのに同じ計算ができてしまうという問題が解消される」解釈したのですが、そこがよくわかりません。座標系を変えて計算する... Read More

1 Two n-dimensional coordinate systems & and ŋ in S overlap smoothly provided the functions on¯¹ and ŋo §¯¹ are both smooth. Explicitly, if : U → R" and ŋ: R", then ŋ 1 is defined on the open set ε (ur) → ° (UV) V and carries it to n(u)—while its inverse function § 4-1 runs in the opposite direction (see Figure 1). These functions are then required to be smooth in the usual Euclidean sense defined above. This condition is con- sidered to hold trivially if u and do not meet. Č (UV) R" Ĕ(U) n(UV) R" S n(v) Figure 1. 1. Definition. An atlas A of dimension n on a space S is a collection of n-dimensional coordinate systems in S such that (A1) each point of S is contained in the domain of some coordinate system in, and (A2) any two coordinate systems in ✅ overlap smoothly. An atlas on S makes it possible to do calculus consistently on all of S. But different atlases may produce the same calculus, a technical difficulty eliminated as follows. Call an atlas Con S complete if C contains each co- ordinate system in S that overlaps smoothly with every coordinate system in C. 2. Lemma. Each atlas ✅ on S is contained in a unique complete atlas. Proof. If has dimension n, let A' be the set of all n-dimensional coordinate systems in S that overlap smoothly with every one contained in A. (a) A' is an atlas (of the same dimension as ✅).

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