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英語 中学生

解き方…?答え方がわからなくて 教えてください😭

Unit 5 What Can Photos Tell ~Read & Think (p.70-71)~ Historical Events in Photos [1] Since photography was invented in 1839,/ photos have shown us historical 写真の夜箱 events vividly.// Let's look at some examples./ 生々しく [2] This is a photo/ that shows the first modern Olympic Games./ It was held 近代の in Greece in 1896./ Only male athletes from 14 countries joined it./ Eight athlefe の課転 sports such as track and field, swimming, and tennis/ were played./ オリンピク ギッシャ Athletes who won first place/ received silver medals.// Second place winners receiveの過去 ~を受の飲る medaiの根歌料 received bronze ones.// Third place winners got no medals./ Tロズ、高飼 [3] This photo shows the Wright Brothers' first flight//. In the photo,/ Wilbur is ウィルバー ライト 兄弟 watching the plane/ that Orville is operating.// In 1903,/ their plane with an Operateのng形。 engine flew/ for the first time/ in history.ll The plane flew for 12 seconds/ 座ま オービル エンジン fiyo通去形 初めて and went 36.5 meters.// Since then,/ airplanes have developed greatly./ airploneの液軟能 [4] These photos show the first humans/ to land on the moon.l/ Three astronauts 着陸すう たに aStronoan の象略 went to the moon/ on Apollo 11/ in 1969.// - They wore special suits/ that アホ°ロ 11 号 Wearo過去 Suitの凝称静 protected them in space./ The man who stepped on the moon/ for the first time/ was Captain Neil Armstrong.// You may know his famous words,/ “One 後長、希衣 small step fora man,/one giant leap for mankind."// 下きな 躍道 人種 15] The world has greatly changed/ since these events happened.// Look around/ 月回を見液す and think about/how these events have changed the world.//

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英語 中学生

至急!! お願いします!m(__)m

を詳んで あとの各間に符え ある いる還・了名には のあとに 【守| 2 次の文 ) x印の付い 8 ra"eap'mean? Whyim thie yearcamed alem mWhatdoes the W leap yegr y knowg there 2016jsal are usually 865 daya in ayear、 365 365 d ut that. The ye8r verybod rat learn abo day of the week Yshifts one day me day. xfell on Wedne 2016 then? Saturday? No eap' and the ye8T which has the leap ja called g ear comes, tho 5 POr yemr? sday in 2014 and on Rday in 20 So when a now y sday 2013, on Thuri [Ria【Sundgy| 時1 ] 呈 1eap year。 Sothie year ia chai ュ 62 weeks and o mas Day are example, Christi What day 8 Christmas Day 反 jump ia aed Jeap ye8r・ ayear which has one *extra day why does this ieap happen? 「EYo four yeare, we have That extra day CaU868 the leap、 The extra day iscalled a ]oap day。 and we have it in February do we hnd a leap yenr? the yegr 好 jiiimible by four that year 9 a leap year。、Ror ample 2016 jadiysible by four soita aleap 79計 [- _@5 How about the year 1900?. not a leap year、 It was a Do you know the reason? Today the Tt *ia based on the *movement of the carth around the 1900 is divisible by four。but i Wa8 Ca KGreg6riam Calendar ia used in many counties around the world」 and it etarted in 1582. the Gregorian calendar, people already knew that one Year jia a Hittle 1onger than 865 Calculated agam and agsinand fnally they found that the earth goes gun。 Before days。 Some scientists And the aun in 365.2422 days。 This means 365 daya and about eix houre. So every year ij about six hours longer than 865 days, and after four year8, the extra time *adds up to 24 hours (one day)。 But there is still some small difierence because each year is a httle shorter than 365 days and six hours8、 TO *make up for the difference, three rules were made. Rule 1: fthe year ig divisible by 4 s a leap year. But we aleo have to follow these two rules. Rule 2: fthe year jg divisible by 100, is a common year Rule 3: f the year ia divigible by 400, 辻 ja a leap year. From the 1 ese three rules, we wl know the years 2000 and 2400 are | (3-a) | years, but 2100, 2200 and 2800 are | (3-b) | yeare. Now you know why the year | 4 Wa a common year. There are dift 0 e と "calendara all over the world。 We can fnd different leaps in them。、 ら ma i ・ に 8 和 eir calendar by using the movements of the sun and the moon。 Their calendgr ren1 ュ ・ *Inatead, they 2 the Gregopan calendar There ia no 1eap day in the Chinese calendar. eap month。 They put gi し 19 monthsinayemrl It goes hike (January rother month mn the calendar, so sometimes there aTG Im Japan, 80 day8. calendar, the od cendarin Edo pen cbruary March Teap March、 Apri May 。 0ne year had 354 da 198 Yag Hike the Chinese calendar。 One month had 29 After three yeara 了 had 11 daye fewer than a common year of the Gregonmm ) erence adde up to 88 days、 Thia im about one month。 0! -6・ ti

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物理 高校生

量子力学モデル(quantum mechanical model) とは何か簡単に概要だけでも教えてもらえませんか? 高校何年生でやるのかだけでも構わないので教えてください🙇‍♂️

The Bohring World of Niels Bohr In 1913WBohr proposed that electrons are arranged in concentric circular paths or orbits around the nucleus. Bohr answered in a novel way why electrons which are attracted to protons, never crash into the nucleus. He proposed that electrons in a particular path have a fixed energy. Thus they do not lose energy and crash into the nucleus. 7カje energy /eve/ of g/) e/ecro7 5 太e 7eg/O7 g7Ounの のe 70C7eus Were た5がeルfo pe. These energy levels are like rungs on a ladder, lower levels have less energy and work. The opposite is also true if an electron loses energy it falls to a lower level. Also an electron can only be found rungs of a ladder. The amount of energy gained or lost by every electron is not always the same. Unlike the rungs of a ladder, the energy levels are not evenly spaced. 4 gug/fg77 O7 ene79y 75 妨e 977Ou7た Oげ ener9y ee0eg ro 77oVe 7 e/ecfron廊O77 745 prese7t _ene/rgy 7eve/ 7O je exf jgカer oe or to make a quantum leap- The Quantum Mechanical Model Like the Bohr model, the ggg74777 776c7g77Co/ 777Oe/ leads to gugn67ze9 energy levels for an electron. However the Quantum Mechanical model does not define the exact path an electron takes around the nucleus. It is concerned with the likelihood of finding an electron in a certain position. This probability can be portrayed as a (oto sale) o @ ら oプ @ Figure 3A Classical Alomic Schematic of Carbon 党 Figure 3B New Atomic Schematic of Carbon 1 nucleus while Gtrostatc equivalents keep Envelopes separale Figure 3C New Atomic Schematic of Oxygen (Electron Envelope above page not shown) blurry cloud of negative charge (electron cloud). The cloud is most dense where the electron is likely to 人M be. ーーーーーー" 午

解決済み 回答数: 1