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Chemistry Senior High

(4)と(5)が分かりません

有機化合物の特徴と構造 (1) 有機化合物に関する説明のうち、正しい説明の文章の数を答えなさい。 構成元素の種類が少ないが、 化合物の種類は非常に多い。 分子式が同じでも、構造や性質の異なるものがある。 一般に,融点や沸点が高く, 可燃性のものが多い。 炭素原子間は共有結合で結ばれている。 分子からなる物質が多く, 水に溶けやすいが, 有機溶媒にも溶けやすい。 (2) 次の有機化合物のうち、下線部の官能基の名称をそれぞれ答えなさい。 ① C6H5NO2 , CH3NH₂ (3) 図は、 元素分析装置を模式的に示したものである。 炭素、 (6) 水素、酸素からなる化合物 4.6mg を完全燃焼させたとこ ろ, 水 5.4mg と二酸化炭素 8.8mg を得た。 ① 図の酸化銅(ⅡI)はどのような役割をしているか。 ②図の塩化カルシウム管とソーダ石灰管は,それぞれどのような役割をしているか。 ③図の塩化カルシウム管とソーダ石灰管の順番を逆にしてはいけないのはなぜか。 乾燥し た酸素 試料と 酸化銅(ⅡI) 燃焼 塩化カル シウム 塩化カル シウム管 ソーダ石灰 ソーダ 石灰管 吸引 ④ 元素分析の結果から,この有機化合物の組成式を求めなさい。 ⑤ この有機化合物は ④ の組成式と同じ分子式をもつことが分かった。 さらに、2つの構造異性体がある この有機化合物は、水には溶けにくく、ナトリウムとも反応しなかった。 この有機化合物の物質名 を答えなさい。 77

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English Senior High

考えても分かりません。解答お願いします

20 Unit 1 - History - Gutenberg is famous for inventing printing, but he didn't really invent it. He invented a better way of printing. [2] For hundreds of years people used blocks of wood* to print. They used a knife to cut words backward in the block of wood. Then they covered the block with ink and pressed it onto paper. When they pulled the paper from the inky blocks, the words appeared on the 金属 5 paper in the right direction. In Korea and China, people printed with metal type* instead of 右向き wood. (2)Either way, printing was difficult and very slow. It took several years to make one copy of a book. [3] Books were very expensive and rare. Only ( 3a ) people could buy them, and ( 3b ) 10 people could not read. But, as ( 3c -) people learned to read, books became more popular. So people wanted to find a quicker, better and less expensive way to print books. One of these people was Johannes Gutenberg. opsugas.l Y tinU 9003 iinil 4 Gutenberg was born in Mainz, Germany, around 1400. He was good at working with metal, but probably had no idea how people printed in China. His idea was to make a piece Clarey operan 15 of metal type for each letter of the alphabet and use the letters (4)over and over. (5)He could put the type together to make words and arrange words to make pages. With ink on the type, he could press paper on them to print a page. A "printing press" machine could make hundreds of copies of a single page quickly. After that page, he could rearrange the same letters to make other words and print other pages. LISSH Si nou 5 It took Gutenberg a long time to make the type for each letter of the alphabet. When he finished the type, he didn't have enough money to make the printing press. He borrowed money from a man named Johann Fust. After many years, Gutenberg's printing press was Legione ready. Gutenberg printed his first book, the Bible, around 1455. 6 There are only twenty-one complete copies of the original Bible. They are some of the 25 most expensive books in the world. In 1987, part of a Gutenberg Bible sold for $5.3 million. 7 Today people remember Johannes Gutenberg. The city of Mainz has a statue of him and a museum. His original printing press is in the museum. (6)They print several pages a day to show that it is in good condition. earoviaU 012mu 394 words/#IN block of wood: type: vrigsypola 01 sind 7 an Oupside down & 下線部 (6) を日本 7. 本文の内容に合わ Many people & Gutenberg g Gutenberg Olt was a long Though Gu cost a lot of Hannes Rotest

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English Senior High

3枚目の問いの答えを教えてください。 よろしくお願い致します。

Radio Host: durlar aind Roger Ali: Radio Host: Roger Ali: Radio Host: Roger Ali: Radio Host: Roger Ali: Roger Ali: Radio Host: Roger Ali: Radio Host: Welcome back. As I mentioned before the break, Roger Ali is with us today to talk about artificial intelligence. Thank you for being here, Dr. Ali. Thank you for having me. I'll be honest with you. When I hear the words "artificial intelligence," the first thing I think of is the character HAL from the movie 2001: A Space Odyssey. ch tud goons bad Radio Host:ome In other words, the search engine draws conclusions about what we're looking for on the Internet. Roger Ali: Sure. Many people remember HAL. In the movie, he's the computer that controls the systems of a spacecraft. He also speaks with the people on the spacecraft. And he's not very happy when the people decide to turn off the computer. In the movie, HAL becomes very dangerous. That's right, but fortunately, artificial intelligence in the real world isn't like HAL. Well, that's good! Can you tell us what is happening in the field of AI? Many interesting things. For example, when we search for something on the Internet, the search results that we see are chosen carefully. The search engine has learned which websites are the most popular, the most reliable, and so on. This prevents us from seeing a lot of websites we're not really interested in. Tosa Right, so it only shows us the information it thinks we want to see, which includes go advertisements as well. We usually see only ads for products that the computer thinks we might want to buy. You said, "It thinks," but is the search engine really thinking? IST That depends on your definition of thinking. The search engine is capable of learning machine learning-and it does have knowledge. Knowledge about the Internet. Are learning and knowledge part of your definition of thinking? They're part of it, but human beings are capable of so much more. We have our senses hearing, smell, sight, touch, taste-and our emotions. We notice a lot about the world, and we use our judgment to make decisions. That's true, and most computer scientists know that we can't replace human beings with computers. We don't intend to make robots for every kind of job, either. That's just not practical.

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Chemistry Senior High

解説がなくて全て分かりません。 よろしくお願いします。。

結合エネルギー 20230421 2 H2O (気) 1mol 中の0-H結合を, すべて切断するのに必要なエネルギーは何kJか。 最 も適当な数値を,下の①~⑤のうちから一つ選べ。 ただし, H-H および 0 0 の結合エ ネルギーは、それぞれ436kJ/mol, 498 kJ/mol とする。 また,H2O (液) の生成熱 [kJ/mol] および蒸発熱 [kJ/mol] は, それぞれ次の熱化学方程式で表されるものとする。 [] kJ 代入するだけ。 H2 (気) +1202 (気) = H20(液) + 286 kJ… (1) H2O (液) = H2O (気) - 44kJ ... (2) ① 443 ② 692 ③ 927 ④ 971 ⑤ 1176 [解答] N2とH2 から NH3 が生成する反応 N2 (気) + 3H2 (気) 2NH3 (気) について, 次の問い (a~c) に答えよ。 2 a (1) 式の反応における反応熱, および結合エネルギーの関係 を図1に示す。 NH3 分子の N-H結合1mol 当たりの結合エ ネルギーは何kJか。 最も適当な数値を、次の①~⑤のう ちから一つ選べ。 [ JkJ ① 46 ② 391 (3 782 ④ 1173 ⑤ 2346 とばす 高2N(気) 6H(気) チ N.(気) +6H(気) N₂()+3H₂ (9) 2NH (気) [946kJ |1308kJ 192kJ b (1) 弐の反応につい て文献を調べたとこ ろ、 右の記述 (ア~エ) および図2に示すエ ネルギー変化が掲載 されていた。 これら と図1をもとに,こ の反応のしくみや触 媒のはたらきに関す る次の記述 (I~III) について, 正誤の組 合せとして最も適当 なものを,下の①~ ⑧ のうちから一つ選 -1- 図1と図2より, N2, H2 分子の結合エ ( )組( ) 番 名前 ( (1) ① 正 ② (2) ③ (4) 文献調査のまとめ 触媒がないとき ア (1) 式の反応は,いくつかの反応段階を経て進行する。 イ正反応の活性化エネルギーは,234kJである。 触媒があるとき ウ (1) 式の反応は,いくつかの反応段階を経て進行する。 エ正反応の活性化エネルギーは, 96kJである。 | N.(気) +3H2(笑) 触媒あり I II III I ⅡI III IE IE IE ⑤ 誤 正 IE 正 IE IE IE (6) 誤 IE 誤 IE ⑦ 誤 IE 正 誤 誤 8 誤 誤 234kJ 反応の進む方向 図2 NH」の生成反応におけるエネルギー変化 ネルギーと活性化エネルギーを比較すると, (1) 式の反応は気体状態で次の反応段階 を経ていないことがわかる。 N2 (気) → 2N (気) ・・・ (2) H2 (気) → 2H(気) ・・・ (3) 1 ⅡⅠ 図2より, 触媒のあるときもないときも、 逆反応の活性化エネルギーは正反応よ りも大きいことがわかる。 図2より, 反応熱の大きさは, 触媒の有無にかかわらず, 変わらないことがわか る。 ( ) 正 96kJ 誤 誤 ) 2NH, ()

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