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英語 高校生

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dgadoxsca Divdentan |C Listening for details :Listen to the statements and answer T(true) or F(false). oro Comprehension, A Reading for main ideas:Choose the best answer. 1. What is the main idea of the passage? The importance of verbal language. ⑤ What non-verbal language is and its role. lgpsow so ne daus budoses td ah ne rdaqusd in eds s ta nm ugast tas bomno How cultural factors cause misunderstandings. Tleroipast A 10vo 2. The meanings connected to body actions are @ natural and we cannot control them b learned from when we are born © partly natural and partly learned dalidty ne B Reading for details : Fill in the blanks with the words in the box below, an en choose the correct title for each part. >A waiter (1. coffee all over a woman, but the woman said, “thank you Part 1 very much!” to the waiter. > We can understand the woman was (2. ) with the waiter because of the Spto way she looked at him and the voice she used when she talked to him. Hw mee > If we want to understand other people's (3. them but also pay attention to how they talk. Part 2 ), we have to not only listen to anal > Non-verbal language conveys 65 percent of the social meaning of (4. Tslimie ) language. ), and we sometimes use it unintentionally. > One part of non-verbal language is (5. > Another part of non-verbal language is (6. when they are born. Part 3 ), and people start to learn it > Each culture has its (7. verbal language. ) way to express social messages by using non- dt cbad wol bluow uoy busi > By realizing the importance and meaning of non-verbal language, we Part 4 can not only understand the messages from other people better but also understand the messages we are (8. ) to people from different cultures. Titles Different Meaning of “Thank you very much!” D The Importance of Understanding Non-Verbal Language Two Parts of Non-Verbal Language O What Is Non-Verbal Language? Words angry / intentions learned / natural/ own sending / spoken/ spilled Jud 2290 ce 1. ( へ

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英語 高校生

わからないので教えてください!

1 次の英文(教科書 p.77) について, 後の間問いに答えなさい。 (1)Using energy not only harms nature, but also uses up the earth's natural resources. Today, we will think about how we can save energy. We all turn off the lights (2) when we leave a room, (3)which is common sense. But what surprises many is that buying too much also wastes energy. Factories use electricity (4)to create goods, and trucks use gasoline to bring them to stores.(5)Let's not buy what we don't need. (1)下線部(1)と同じ ing 形の働きをする文を1つ選び, 記号で答えなさい。 ア. I'm looking forward to seeing you. ウ. Look at the sleeping cat. イ. Listening to the music, I studied. エ、 She is going to visit Malaysia. (2)下線部(2)と同じ when の働きをする文を1つ選び, 記号で答えなさい。 ア. When do you swim in the sea? イ、Iknow when they will come. ウ. It's time when you must get up. エ. When they study, they use the room. (3)下線部(3)はどのような内容を指すか。 次の( )に入る適切な日本語を答えなさい。 「私たちは皆,部屋を出る( )には、電灯を( )。」ということ。 (4)下線部(4)と同じ to不定詞の働きをする文を1つ選び、 証号で答えなさい。 ア、Iwant to sing the song. ウ、He practiced hard to be a champion. イ、It's easy for me to play the drams. エ, Would you like something to drink? )に与えられた文字で始ま (5)下線部(5)を次のように書き換えた場合,どうなるか。( る語を本文中から抜き出し, 英文を完成させなさい。 Let's not buy (t

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英語 高校生

和訳の確認をしてほしいです! お願いします🙇‍♂️🙇‍♀️

TR3T Humans usually breathe from sixteen to twenty times each minute. If you analyzed 01 the air you breathe, you would find it is a mixture of different gases. Most of it is *nitrogen about four-fifths. One-fifth is oxygen. There is also a tiny amount of carbon dioxide, a little "water vapor (which gives air its humidity), and some "traces of 05 what are called "rare gases. If you were to put a bag over your nose and mouth to catch the air you breathe out, i図 you would find (1)Some strange changes. There would still be the same amount of nitrogen. There would also be the same traces of rare gases. But there would be much less oxygen and a hundred times more carbon dioxide than in the air you breathe in. 10 There would also be considerably more water vapor. TR33 ,What happens is that each time you breathe, an exchange takes place. You keep Some oxygen; you breathe out much more carbon dioxide and water vapor than you breathed in. 、The reason is that every moment of the day and night your body is using up energy. Your heart uses up energy as it beats. Your muscles use up energy. So 15 does your brain, and so does every other part of you. All this energy is produced by the work of the millions and millions of cells that make up your body. Every one of these cells needs Oxygen in order to do its work. As the cells use up oxygen, they form carbon dioxide, which is a “waste product. So your body carries out these two processes at the same time. You breathe in the m3 20 OXygen that cells need to produce energy. You breathe out the carbon dioxide that is harmful. It sounds so simple. Yet your life depends on these processes happening dav and night without interruption.

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数学 大学生・専門学校生・社会人

多様体の接空間に関する基底定理の証明です。g(q)=∫〜と定義した関数を微積分学の基本定理を用いながら変形してg(q)=g(0)+∑gᵢuⁱと導出するのですが、これがうまくいきません。 自分は、g(q)の式をまず両辺tで微分して、次に両辺uⁱで積分して、最後に両辺tで積分... 続きを読む

12. Theorem.If{ = (x', , x") is a coordinate system in M at p, then its coordinate vectors d, lp, …… 0,l, forma basis for the tangent space T,(M); and D= E(x) 。 i=1 for all ve T(M). Proof. By the preceding remarks we can work solely on the coordinate neighborhood of G. Since u(c) = Othere is no loss of generality in assuming ど(p) = 0eR". Shrinking W if necessary gives E(W) = {qe R":|q| < } for some 8. Ifg is a smooth function on E(W) then for each 1 <isndefine og (tq) dt du g(9) = for all qe {(W). It follows using the fundamental theorem of calculus that g= g(0) + E&,u' on (W). Thus if fe &(M), setting g = f。' yields f= f(P) + Ex on U. Applying d/ax' gives f(p) = (f /0x)(P). Thus applying the tangent vector e to the formula gives (f) = 0+ E(x'(p) + E Ap)u(x) = E(Px). ず ax Since this holds for all f e &(M), the tangent vectors v and Z Ux') d,l, are equal. It remains to show that the coordinate vectors are linearly independent. But if ) a, o.l, = 0, then application to x' yields dxi 0=24 (P) = 2q d」= 4. In particular the (vector space) dimension of T,(M) is the same as the dimension of M.

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