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英語 高校生

英検準1級の要約の添削をお願いします🙏 最後の方がまとまり切らなくて入らなかったので、アドバイス欲しいです!

Copenhagen, the capital city of Denmark, has emerged as a shining example of a city proactively addressing global warming. With a comprehensive and ambitious approach to sustainability, Copenhagen has set a goal to become the world's first carbon-neutral capital by 2025. The city has implemented a range of initiatives, including a robust public transportation system, extensive bike lanes, and a commitment to renewable energy sources. One of Copenhagen's notable achievements is its focus on cycling infrastructure, encouraging residents to choose eco-friendly modes of transportation. The city has invested heavily in creating an extensive network of bike lanes and bike-sharing programs, reducing reliance on carbon-emitting vehicles. Additionally, Copenhagen is committed to transitioning to renewable energy, with wind power playing a significant role in meeting its energy needs. While Copenhagen's efforts are widely praised, challenges remain. Critics argue that achieving carbon neutrality by 2025 is an ambitious target and may involve trade-offs, such as increased taxes and potential economic strain. Additionally, the city faces the complexities of balancing urban development with environmental preservation. Nevertheless, Copenhagen's dedication to tackling global warming serves as an inspiring model for other cities, showcasing the potential benefits of sustainable urban planning and the importance of balancing environmental goals with economic considerations.

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生物 高校生

生物の食物連鎖とかの問題だと思うんですけど誰かわかる方いますか??? 英語すみません💦

hhmi Biolnteractive Some Animals Are More Equal than Others: Trophic Cascades and Keystone Species Mean Leaf Area per Plant Over 18 Months without beetle with beetle Leaf Area per Plant (cm²) Control Ecology 2400 2200 2000 1800 1600 1400 1200 1000 800 Experimental 0 T 2 www.BioInteractive.org 8 10 12 14 16 Months After Start of Experiment 4 6 Refer to the figure to answer questions 12 through 17. 12. For both the plots with the beetles added and the control plots, state the mean tree leaf area per plot that the scientists recorded after running the experiment for 18 months. The mean tree leaf area per plot that the Scientist recorded after running the experiment for 18 months wit the beetles added is 1.7m², S 2.2m² 13. Compare the trends in mean tree leaf area per plot for both the plots with the beetles added and the control plots over the 18 months of the experiment. The area of the control plat for thinoceros beetles has d has increased at a nearly constant rate, the other is a gradua decrease at first, then a sudden decrease, and finally a dradua 18 Figure 2. Mean leaf area per tree. Initial measurements were taken before (0 to 2 months) and after (7 to 18 months) beetles were added to 40 of 80 plants. The light gray round markers represent measurements taken of the control plots, to which beetles were not added. The black square markers represent measurements taken of the experimental plots, to which beetles were added. Measurements were made on all leaves to calculate the mean leaf area per plant. Error bars represent standard error of the mean. 14. Draw two diagrams that show the food chains for both the experimental and control plots. Include increase. interactions among predatory beetles (if present), ants, caterpillars, and piper plants. Revised January 2018 Page 4 of 5

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英語 高校生

英語 高3 先生のメモ付きで見ずらくてすみません💦 ・公共のガス灯は1800〜1807年間まで無かった ・鳴鳥や海鳥は落ちるまで旋回する ・毎年何十万もの(産まれたばかりの) ウミガメが海で迷子になる ・闇は仕事上は必要ないけど生活に 置いては光と同様に必... 続きを読む

Lesson 12 Light Pollution Class Name (1) If humans were truly at home under the light of the moon and stars, we would live in くつろぐ darkness happily. The midnight world would be as visible to us as it is to the vast number of No. nocturnal species on this planet. Instead, we are diurnal creatures, with eyes adapted to living in the sun's light. This is a basic evolutionary fact, even though most of us don't think of ourselves as diurnal beings any more than we think of ourselves as mammals. Yet it's the only way to explain what we've done to the night; we've engineered it by filling it with light so that we can へように be active at night. (2) This kind of engineering is similar to damming a river. Its benefits come with consequences に伴って起こる 結果 - called light pollution - the effects of which scientists are only now beginning to study. Light pollution is largely the result of bad lighting design, which allows artificial light to shine outward 人工的な and upward into the sky instead of focusing it downward. Badly designed lighting washes out the darkness of night and greatly alters the light levels and light rhythms, to which many forms of life, including humans, have adapted Wherever human light shines out into the natural world, some aspect of life, whether it is migration, breeding or feeding, is affected. whether A or B· A=·AD3B78332 (3) For most of human history, the phrase "light pollution" would have made no sense. Imagine walking toward London on a moonlit night around 1800, when it was Earth's largest city. Nearly ほとんど a million people lived there with candles, torches, and lanterns. Only a few houses were lit by gas, and there would be no public gaslights in the streets or squares for another seven years. From 広島 (前) さらに a few miles away, you would have been as likely to smell London as to see its faint collective glow. 集まっている様子 (4) Now most humans live under domes of reflected light: of scattering rays from cities and suburbs with too much lighting, and from light-flooded highways and factories. Nearly all of nighttime Europe is a nebula of light, as is most of the United States and all of Japan. In the south Atlantic the glow from a single group of fishing boats squid fishermen attracting prey with 大西 high brightness lamps can be seen from space, burning brighter, in fact, than Buenos Aires or Rio de Janeiro. (5) We've lit up the night, forgetting that it is occupied by many different living species. The number of nocturnal mammal species alone is astonishing. Light is a powerful biological force,

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英語 高校生

回答お願いします🙇

UNIT 7 Reading Reading 33点 10点 Grammar /32点 /15 Information Listening Writing /10 TOTAL 100点 全文 音声 なまけ者のトムが望んだ仕事とは何でしょう。 Tom was a very lazy man*. He didn't like hard work. But he needed a job. One day, (his/Tom / a job / asked / uncle / him / find / to ). "What kind of job?" asked the uncle. Tom answered, "I don't want to work. I want meat for lunch every day. I just want to walk around and take naps*. And I want 100 dollars a day." "( )" the uncle sighed*. 2 One day, Tom got a call from his uncle. "Tom, I found the perfect job for you. A tiger at the zoo died recently. They need a new tiger. You can be the tiger. You'll wear a tiger's skin and walk around, eat meat, and sleep in the cage* like a real tiger." "( 3 )" said Tom. "I'll start tomorrow!" 5 3 The next day, Tom was in the cage in tiger's fur. He just walked around, ate meat, 10 and took a nap. Tom was happy. 44 Suddenly, he heard an announcement*. "We'll soon have a special show. It's a fight between a lion and a tiger! Enjoy this exciting show." "( )" He looked around his cage. Then another cage was carried next to his. A fierce-looking* lion was in it. "I'll be killed!" he cried. The doors of both cages were opened. Tom jumped back. "( 6 )" 15 The big lion slowly walked toward him, roared*, and opened its mouth. "Stop! I'm not a tiger! I'm a man!" 5 "Shhh!" Tom heard a small voice from the lion. "( Ⓒ )” (252 words)

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生物 大学生・専門学校生・社会人

至急お願いいたします🚨 生物の質問です。 ミトコンドリアの経路についての説明だと思うのですが、電子オーバーフローモデルと電子分布モデルの違いを教えていただきたいです。 また、どういう仕組みなのか、何故このように電子が流れるのかも教えていただきたいです。 UQ poolはユ... 続きを読む

(A) Electron overflow model (considered out-of-date) Alt UQ pool Alternative oxidase inactive. Alt No alternative pathway activity Cytochrome pathway unsaturated Cyt (B) Electron distribution model (reflects current thinking) UQ pool Cyt Alternative pathway active Cytochrome pathway saturated Alt Alternative oxidase active Alt UQ pool Cyt Cyt Figure 14.33 Two models for regulation of electron flow through the alternative oxidase. (A) In the electron overflow model, no appreciable electron transfer through the alternative pathway takes place until electron flow through the cytochrome pathway is at or near satu- ration. This could result from the effects of respirato- ry control, if the rate of mitochondrial ATP produc- tion exceeds its rate of utilization in the cytosol, or from some externally imposed stress, such as low temperature. Under such circumstances, the UQ pool becomes sufficiently reduced to allow electrons to flow through the alternative oxidase, the latter re- quiring that the UQ pool be 40% to 60% reduced to attain significant activity. (B) In the electron distribu- tion model, the alternative and cytochrome path- ways both show significant activity at low levels of UQ pool reduction, and electrons are distributed be- tween the two pathways on the basis of the relative activities of each pathway. The activity of the alter- native oxidase under these circumstances is thought to be regulated by the action of a-keto acids and by reduction/oxidation of the intermolecular disulfide bond, as well as by additional regulatory mecha- nisms not yet characterized.

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