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Physics Senior High

問題の(3)でなぜぼくの解法はダメなんでしょうか? 教えて下さい

12. 傾角0 のあらい斜面上に質量mの物体Aを置き, Aに結んだ糸で、図のように, なめらかな 滑車を通して質量Mの物体Bをつるす。 Aと斜面との間の静止摩擦係数をμ,動摩擦係数をμ' 重力加速度の大きさをgとして,以下の問いに答えよ。 ただし, tan0μとする。 (1) migainis: T-Mr. T = mgrino ung rove. -mg Jono- Mero) N= my care また物体色において、Mg=1なので Mig - mg (vino _Medvo). 2 M₁ = m (sing - M CONG) (2) Aにおいて M₂ = T=mg(sino+Mizuno) M. T=Mag なので m (vino & Movo). AN A mg caf 0 (1) B の質量M が 1より小さいと, A は斜面下方にすべりだす。 M1 をm,μ, 0 を用いて表せ。 (2) B の質量MがM2より大きいと, Aは斜面上方にすべりだす。 M2をm, μ, 0 を用いて表せ。 (3) 次に, B のかわりに質量M (M2) の物体Cをつるしたら, Cは一定の加速度で降下した。 Cの 加速度の大きさをm, M3, g, μ', 0 を用いて表せ。 Jug To My mg enro M B Ir Mg (13) ℃において、運動方程式より Me a Meg - T. また、Aにおいて、力のつり合いより T= my (vino - Micovo). 代ギオして Mia: Mig.mgwing +/u cout). 2 M3 - Momo Noso) M3. (3) ℃において運動方程式より。 Maa = Mag-T3. 肌においても同様にして g ・To-mgsino-imgcwjo. ma これらの式を合算して. (Mg + M) a = Myg- my forno+ 'coro). My - M (sine + w/ rout). M3+m

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Physics Senior High

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

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