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英語 中学生

これを読んで問題を解いてください。よろしくお願いします

「クリック コンテンツ CAN-DO エネルギー問題に関する説明文を読んで、 概要を理解し, 自分の考えや意見を述べることができる。 Pre-reading What does "power" in this title mean? New Words ○ electricity [ilèktrísati] 電力 |cut [kåt] ← cut [kôt]...を切る, ・・・の供給をとめる じゅうでん charge [tfa:rdz] ・・・を充電する ✓ smartphone (s) [smártfôun(z)] スマートフォン ○ oil [5il] 石油 ○ coal [kóul] 石炭 ○ natural gas [nætfaral gés] 天然ガス ひかく ○ relatively [rélativli] 比較的 ✓ release [rilí:s] ・・・を放出する ■ dangerous [déindzaras] 危険な ✓ chemical(s) [kémikal(z)] 化学物質 health [hél0] 健康 fossil fuel(s) [fásl fjù:al(z)] 化石燃料 carbon dioxide [ka:rban daiáksaid] 二酸化炭素 ○ run out of ・・・ を使い果たす If the electricity were cut for one week, what would happen to our lives? The lights would be off. Trains コンテンツ would stop. We could not charge our smartphones. We depend on electricity to power most of our daily activities. How can we make the electricity we need for our future? 5 2 Japan uses a lot of oil, coal, and natural gas to make electricity. These resources are called “fossil fuels.” Fossil fuels have some good points. They are relatively cheap, and they can be used for many things. However, scientists say that we may run out of fossil 10 fuels in 100 years. There are other problems, too. Fossil fuels release carbon dioxide and other dangerous chemicals. They increase global warming and damage our health. [123 words] In-reading 1 What do we depend on to power our daily activities? 2 What do fossil fuels release? ●日本の一次エネルギー国内供給の割合 まいぞう ●世界のエネルギー資源の可採年数と確認可採埋蔵量 エネルギーなど 7.8 Other renewable energy, etc その他の再生可能 Natural gas 石油 51年 天然ガス 53年 石炭 153年 Oil 石油 187兆m3 39.7 天然ガス Water power 23.8 水力 3.3 1兆7,067億 バーレル Coal 石炭 25.4 資源エネルギー庁 (2016) 106 one hundred and six TIT 11,393億トン 日本原子力文化財団 (2016)

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英語 高校生

英検準一級の要約問題です。 添削していただけないでしょうか?🙇‍♀️

英検公式サンプル問題 ⚫ Instructions: Read the article below and summarize it in your own words as far as possible in English. ⚫ Suggested length: 60-70 words Write your summary in the space provided on your answer sheet. Any writing outside the space will not be graded. From the 1980s to the early 2000s, many national museums in Britain were charging their visitors entrance fees. The newly elected government, however, was supportive of the arts. It introduced a landmark policy to provide financial aid to museums so that they would drop their entrance fees. As a result, entrance to many national museums, including the Natural History Museum, became free of charge. Supporters of the policy said that as it would widen access to national museums, it would have significant benefits. People, regardless of their education or income, would have the opportunity to experience the large collections of artworks in museums and learn about the country's cultural history. Although surveys indicated that visitors to national museums that became free increased by an average of 70 percent after the policy's introduction, critics claimed the policy was not completely successful. This increase, they say, mostly consisted of the same people visiting museums many times. Additionally, some independent museums with entrance fees said the policy negatively affected them. Their visitor numbers decreased because people were visiting national museums to avoid paying fees, causing the independent museums to struggle financially.

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化学 大学生・専門学校生・社会人

高分子の組成比率を求める問題なのですが、講義のスライドに載せられていた求め方が一貫性が無さすぎてどう解けばいいか分かりません。 3つのうちの1番上のもののAの比率の出し方、3つのうちの1番下のもののAの比率の出し方を解説していただきたいです。 2つ目が課題なのですが、これも... 続きを読む

5・2 ビニルポリマーの立体規則性の表示法 α 置換基 B-CH₂ n-ad () ベルヌーイ 確 ad (偶数) * ベルヌーイ 確 * triad isotactic, mm (I) heterotactic, mr (H) syndiotactic,rr (S) ++ (1-P)² 2P (1-P) dyad meso, (f) racemo,(s) tetrad立体規則性により周囲の環境が異なる P (1-P) pentad mmmm mmm mmmr ||||||||-2P(1-P) mmr H2P(1-P) b rmmr |||||||||-2 P³(1-P)² rmr P(1-P)² mmrm 2P(1-P) mrm P(1-P) b mmrr | 2P(1-P) rrm 2P(1-P) rmrm |||||| 2 P³(1-P) rrr ||||(1-8) rmrr ||||||||- 2P(1-P)³ mrrm rrrm |||||||-2P(1-P) 高分子合成化学 p.103 rrrr ||||||(1-P)* A B ポリ塩化 CI ポリイソブチレン CH Ħ CH3 H CH3 ビニリデン CH₂ C C C C C C I H CI H 01 CH3 H CH3 a b C (A=91 mol %) 164H 36H 54H 200 = 54 x:Aの mol %) 76H 120H ai a 3.8 3.6 63H (A=63 mol %) M 126H 130H a₁AAAA az BAAA(AAAB) 2 6(1-x) モル分率 as BAAB bi AABA(ABAA) ✗= (100-9)/100 = 0.91 bz BABA(ABAB) bs: AABB(BBAA) b: BABB(BBAB) C₁ ABA 左の共重合体の組成比を計 ABB(BBA)算せよ cs: BBB ||233H b領域の積分値の半分はA由来で、 半分はB由来 a: az as bi ba ba b C1 C2 C3 4 2 $ (ppm) 126/2 233 63+126/2 2x 2(1-x-y) 6(1-x)+2y 1.5ppmにピークを持つBのモル分率をy とすると、 b領域のBのモル分率は (1-x-y) 図5-15 塩化ビニリデン (A) - イソブチレン (B) 共重合体ならびに両単独 重合体の1H-NMR スペクトル (60 MHz S.Cl溶液 130°C) 16

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