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Chemistry Senior High

(2)から(4)まで解き方がわからないです。 画像中の解説では理解が出来なかったので分かりやすく教えて頂けると幸いです。お願いします!!

APINGAT STIMULO, HUG 例題 ⑤ 電離度と濃度 5 0.10mol/Lの酢酸水溶液がある。電離度を0.010として次の(1)~(4) の濃度を求めよ。(金) (1) 水素イオン濃度[H+] (2) 酢酸イオン濃度[CH3COO-] (4) 水酸化物イオン濃度[OH-] (3) 酢酸分子濃度[CH3COOH] |解説| cum CH3COOH - →H+ + CH3COOO (2) HOBK&Hしたと 酸c 0 OHN (6) 1つは 電離前 電離後 (1-α) (1) 「イオンはカモ電」を使う。 酢酸は1価の弱酸より, [H+] = 1 × 0.10 × 0.010 = 1.0 × 10-3mol/L (エ) よるの森 Hen(d) ca 1.0 × 10-14 [H+] 電離前 (オ)0年) (2) 酢酸の電離式は, CH3COOH CH3COO+H+だから, [H+]=[CH3COO-] となり [CH3COO-]=1×0.10×0.010=1.0×10-3mol/L/に近い (3) 電離せずに残った [CH3COOH] は, 初めの濃度から電離した分を引けばよい。 = 水 OeHold Dom (02.(s) D. CHICO C (I) < (RC) < (C) < (F) () <() () [H+][mol/L] = (価数) × (モル濃度) × (電離度)より,倍に濃くする。 0 えて薄め [CH3COOH]=0.10-0.10×0.010=0.10×(1-0.010)=9.9 × 102mol/L Ricmomo [H] (4) [OH-]は, 水のイオン積[H+][OH-]=1.0 × 10-14 (mol/L)2より、 toner [OH-]= CH3COOH 2+1 FORD 1.0 × 10-1400 = 1.0×10-11mol/L 1.0 × 103 ので 0.10 HOC 電離後 0.10(1-0.010 ) 解答 (1) [H+]=1.0×10-3mol/L XOHq ( na α = 0.010 COULD OOK 157~8-30+ OBA の味中 個円 (3) [CH3COOH] = 9.9 × 10-2mol/L LITOL LITOL, SIMOLEST (0) XH&m H+ CH3COOH 10:30 10倍濃くなり), pH=5-3=2 0 THE & 0 HUN 1 x 0.10 × 0.010 1 × 0.10 × 0.010 HO. (2) [CH3COO-] = 1.0 × 10-3mol/L Luty (SPC (4) [OH-]=1.0×10-11mol/L TEEKLINIKAH MARO

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English Senior High

申し訳ないのですが、このページの問題が分かりません。全て教えてくれるとありがたいです🥲

つけまし EXERCISES 関係代名詞 )内の語句に、関係代名詞を加えて並べかえ, 全文を書きなさい。 (1) Do you know (standing / is / the girl) by the door? (2) (contains/the hard disk) my data suddenly crashed. (3) Ihave (goes / a sister) to elementary school. (4) We live in (built / was / a house) 50 years ago. ②2 日本語に合うように,( )に適語を入れなさい。 (1) 私たちが発明した製品は画期的だ。 The product ( ) invented is groundbreaking. (2) 彼は私が長い間知っている少年だ。 He is a boy ( :) ( ) ( ) ( (3) その先生はしばしば私が答えられない質問をしてくる。 The teacher often asks me questions ( :) ( FJA (4) 私のおじが買った車はハイブリッドです。 The car ( )()( ) is a hybrid. ) for a long time. ) ( 3 与えられた状況に合うように( )内の語句を並べかえ, 全文を書きなさい。 (1) 状況 すてきな時計をしているね,と友人に言われて・・・。 This is (bought / my / me / the watch / father) two years ago. (2) 状況 久しぶりのクラス会。 だれだか思い出せなくて・・・。 What is the name (the man/ in / who / of / just came)? (3) 状況 スペイン語の学習が進んできて、難しいことにも挑戦したくなりました。 I want to read (in / that / anovel/Spanish/ written/ is ). (4) 状況 衣替えで夏服を着ようと思いましたが,どこにしまってあるのかわかりません。 Where are (that / wore / the summer clothes / last year/I) ? (1) 私には~が得意な友だちがいる。 [who/good] I (2) 私が昨日会った人は・・・だった。 [who / meet ] B A B 4 [ ]内の語を参考にして,~, ….に自由に語句を入れ, オリジナルの英文をつくりなさい。 B

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English Senior High

(3)について答えはthese new types of cementまたはnew types of cement ですがthe new types of cement でも大丈夫ですか?

6 2019年度 英語 Ordinary Portland cement-t produced by baking lime in a kiln and emits approximately one ton of carb a kiln and emits Cement production is responsible for cement. dioxide for every ton of approximately 5% of global man-made CO2 emissions, according to the World Business Council for Sustainable Development. Cement does absorb some carbon dioxide back from the atmosphere over time, One 2016 study estimated that between 1930 and 2013, the equivalent of 43% of CO2 released from lime during heating was reabsorbed by - although that percentage does not include carbon concrete products worldwide dioxide emitted by the fossil fuels burned to heat kilns, a significant contributor of says. Fennell notes. 東京医科歯科大前駅 - the most common form in concrete- CO2 emissions during production. Unfortunately, this absorption comes at a price, particularly when cement is used in structures that feature steel reinforcement bars (rebar) within concrete. vl(As) CO₂ moves through cement it changes the pH of the surroundings, Fennell says. Concrete loses its alkalinity and, when moisture and oxygen are present, causes the rebar to rust. 2) ad "Rusting steel can expand with great force to as much as nine times its original dimensions if you add up all of the layers of iron oxide," says Randolph Langenbach, an international consultant in building conservation. This expansion causes the concrete to crack, flake and crumble. Svi aft ni adosband huma Degradation is a massive concern, he argues, and problems are not limited to rusting rebar. Everything from air pockets left in the concrete mix when it's laid to salt air buffeting coastal-facing walls, or the use of beach sand in the concrete, can shorten a building's lifespan. As one specialist once put it to Langenbach: "If it ain't cracked, it aint concrete."qubong ao yas guidtyns ogde stornos 90 s of fshoqml is vatns mash *** long llopsd lust ay to Given the concerns about the environmental impact and structural longevity of concrete, why do we continue to build with it? addi Simply put, concrete is cheap, versatile, quick to erect and requires no of weight J

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