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19:I[6549,["51","static/chunks/795d4814-710d199cb1f51304.js","183","static/chunks/183-141f39fb5cb93742.js","23","static/chunks/app/advice/%5Bid%5D/page-26686d89cc5a4cf8.js"],"CommentItemName"] 1a:I[3866,["51","static/chunks/795d4814-710d199cb1f51304.js","183","static/chunks/183-141f39fb5cb93742.js","23","static/chunks/app/advice/%5Bid%5D/page-26686d89cc5a4cf8.js"],"AdOnAdviceList1"] 1b:I[3866,["51","static/chunks/795d4814-710d199cb1f51304.js","183","static/chunks/183-141f39fb5cb93742.js","23","static/chunks/app/advice/%5Bid%5D/page-26686d89cc5a4cf8.js"],"AdOnAdviceList2"] 1e:I[3866,["51","static/chunks/795d4814-710d199cb1f51304.js","183","static/chunks/183-141f39fb5cb93742.js","23","static/chunks/app/advice/%5Bid%5D/page-26686d89cc5a4cf8.js"],"AdOnAdviceList3"] 1c:T11a0,こんにちは!  ギリギリで第一志望に落ちた者です。今となってはいろいろと思うこともありますので、ギリギリで受かってもらうために頑張ってもらいたいことについて学習面とメンタル面に分けてまとめます! ・学習面  理系でこの時期にやるべきことは ①解ける問題を確実に得点源にする(解法を感   覚でもいいからすぐ思いつくようにする) ②解けない問題を減らしていく  この2つになります。解ける問題を確実に得点源にするためには演習量を増やして同じ系統の問題にできるだけ多く触れることです。過去問の2周目に取り組んでいるとのことですが、正直1周目で解けた問題を再び解くのは効率的とはいえないので、例えば数学で確率の問題が解けて、微積の問題が解けなかったなら、2周目の過去問の確率の問題を解かずに代わりに他の確率の問題を解き、微積は解き直すという風にすると効率的に演習できるはずです。  物理は力学と電磁気が安定してるのは素晴らしいですね。様々なパターンの問題を解いてさらに伸ばしていきましょう!1つだけ要注意だと私が個人的に思っているのは2つ以上の分野が融合された問題です。去年私が知る限り初めて東大で力学と電磁気と原子が融合した問題、電磁気と波動が融合した問題が出題されました。東大受験生でも難易度が高すぎたので、去年の東大の難易度のまま出題されることはないと思われますが、難関大で融合問題を出題する風潮が生まれてしまった可能性があるので頭の片隅に入れておいてください。  化学は理論ができているのは安心です。化学の基礎となる知識は定着していると思いますので無機、有機もこの1ヶ月で伸びやすいです!  次に解けない問題を解けるようにするためには間違えたor解けなかった問題をまとめるノートを作っておくといいと思います。解けなかった問題を貼り付けて、どこでつまづいたのか、どの発想ができなかったのかなどをメモってスキマ時間などで見返すくせがつけばかなり力がつきます!数学はこの方法で解放を身につけることができ、物理も使うべき法則や公式が身につきます。また化学ですが、無機と有機が苦手ということですが、無機に関しては暗記ゲーな要素が少しありますよね。不快な気分にさせてしまったら大変申し訳ないのですが、YouTubeで『超抜ける!高校化学』というチャンネルが印象的すぎて無機の暗記がかなり楽になります。とはいえ、チャンネル名の通り気分を害される可能性もあります。申し訳ありません。 ・メンタル面  次に気持ちの持ち方で参考にして欲しい言葉があります。 【気持ちには引力がある】  私の部活のコーチが教えてくれた言葉です。勝ちたいという気持ちが強い方にボールが転がる、偶然と言えばそれまでですが、日々の死ぬほどきつい練習と、そして勝ちに対する貪欲さによる不思議な引力がボールを自分のもとに導くと教えてくれました。(ラクロスというスポーツをプレーしております)  信じるかどうかは自分次第ですが、100人ほどの狭き門に1000人以上が受けるような大学受験で-0.2点で落ちる人、+0.1点で受かる人の違いが勉強時間なわけないと思うんですよね。時間が足りなくて適当にマークするしかなかった記号問題で合否が決まることだってあります。その数秒で選ぶ1/5が1/4.9とか1/4.8とかになるのはきっと受かりたいと思う気持ちなはずです。やあさん質問の文面からして本気で受かりたいと思っているはず。途中でどれだけきついことがあって諦めそうになっても『受かりたい』と強い気持ちを持ち続けてもらいたいと思います!頑張れ🔥  また何か質問等ありましたらいつでもコメント欄やDMなどで相談してください!なるべく早く返信します!1d:Tcba,こんにちは!東工大一年のたまちゃんです! 物理に関しては分野がわからないので、助言しにくいのですが、苦手な分野であったり、忘れやすい分野があるのであればそこを繰り返しやりましょう。 でも、基本的に物理は理解していれば忘れにくいです。熱力学を例に挙げると、定圧変化・定積変化・等温変化などはどうなるとかを覚えていなくても理解していれば何とかなります。ドップラー効果の式なども覚えなくても理解していれば導出可能です。覚えていた方が早いので出来れば覚えて欲しいですが… 例えば、f= の式の分母が観測者だったかな、音源だったかな、うろ覚えだなとなったら導出するのが良いと思います。 化学に関しては電気分解の式は自分で作れます。イオン化傾向がわかれば行けるはずです。反応式を書けという問題は出ないはずなので、反応式の細かいところがわからなくても、この金属に対して水素は〜mol発生しそうだなというのがわかれば良いので、電気分解の反応式は覚えなくて良いです。電池の問題は正極と負極(陽極と陰極)が何でてきているかを覚えていないと無理です。出来れば溶液も覚えて欲しいです。電池に関してはヒントがほとんど出ないので、覚えておいた方が良いです。 深い知識を得るにはやはり理解することだと思います。理解したことは忘れにくいですからね。逆に単純暗記のものは忘れやすいです。また、用語などは何度もやって覚えていくしかないですね。イオン化エネルギーの意味を説明できるかなど結構基本的なことを聞いてきたりもするので、基本用語の意味を覚えることも怠らずに頑張って下さい。また、引っかけもたまにありますので、注意深く読むことも必要です。 やってないところを忘れるのはみんな一緒ですので、そんなに深刻に考えなくても大丈夫です。 東工大の化学はほぼ全ての分野から出題されるので、直前に過去問をやりまくれば、しばらく触れていない分野もなくなると思います。それでも本番にど忘れしてしまうことはあると思います。私は本番でど忘れして一問落としました。ですが、そこで焦らず他の問題を冷静に解くことが大事です。結構そういったメンタル面も点数に関係すると思いますので。 あとは絶対に覚えるんだ!と思って覚えて下さい。単語帳をボーッと眺めても覚えられないように、ただなんとなくやっていると効率が悪いです。残り少ないので、今解いている問題を次いつ復習できるかわかりません。もしかしたら入試までもう見ないかもしれません。ですから、絶対に覚えてやるんだ!という気概を持って勉強して下さい。個人的にはこれが最も重要かなと思ってます。 長文失礼しました。2:["$","main",null,{"className":"px-4 pt-4 pb-4","children":["$","div",null,{"className":"max-w-3xl mx-auto 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mb-2","children":"回答"}],["$","div",null,{"className":"mb-4","children":["$","$L15",null,{"adviserImageUrl":null,"adviserName":"あつし58","adviserDepartment":"東京大学理科一類","adviceId":"2Gpht90YJvxkMbqa"}]}],["$","div",null,{"className":"coach-mark mb-4","children":"すべての回答者は、学生証などを使用してUniLinkによって審査された東大・京大・慶應・早稲田・一橋・東工大・旧帝大のいずれかに所属する現役難関大生です。加えて、実際の回答をUniLinkが確認して一定の水準をクリアした合格者だけが登録できる仕組みとなっています。"}],["$","div",null,{"className":"mb-8","children":[["$","div",null,{"className":"leading-loose 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whitespace-pre-wrap","children":"それはわかるんですが、導線がうごいて内部の磁束が変化する時は磁場を横切った導線部分に誘導起電力ができると思うんですけど、どの導線も動かずに磁場だけが変化した時は何も磁場を横切るものがなく、どこに誘導起電力が生じるのかがわかりません……"}]]}]]}],["$","div",null,{"className":"flex py-4","children":[["$","div",null,{"className":"mr-2","children":["$","$L18",null,{"avatarUrl":null,"contributorName":"あつし58","adviceId":"2Gpht90YJvxkMbqa"}]}],["$","div",null,{"className":"flex-1","children":[["$","div",null,{"className":"flex justify-between","children":[["$","div",null,{"className":"mb-2","children":["$","$L19",null,{"contributorName":"あつし58","adviceId":"2Gpht90YJvxkMbqa"}]}],["$","div",null,{"className":"text-xs text-caption","children":"12/16 19:59"}]]}],["$","div",null,{"className":"text-xs whitespace-pre-wrap","children":"えぇ、、、\n\n導線が動かないと解けないなら磁場を軸に固定して考えてください、、、"}]]}]]}],["$","div",null,{"className":"flex 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items-center py-4","children":[["$","div",null,{"className":"flex-1 mr-3","children":[["$","div",null,{"className":"mb-1","children":"電気情報生命工での勉強について"}],["$","div",null,{"className":"text-xs text-caption line-clamp-2 mb-1","children":"電生への進学おめでとうございます!僕も電生なので嬉しいです笑\nとりあえず、1年次を思い出しながら書いてみますね\n\nまず優先してやっておくといいのが高校生物と電磁気分野ですかね。\n研究室配属時に電生では実力試験があるのですが、そこでは必修科目として細胞生物学と電磁気学、選択科目として分子生物学か回路理論が含まれます。\n特に細胞生物学と電磁気学は1年次に必修の授業であるので、高校生物の内容と電磁気学は見直しておくと楽になるはずです。\n\n続いて見ておくと良いのは力学ですかね。\n電生の力学は先進理工学部の中でも応物と並んで難しい部類に入り、他学科からも「電生の力学は3割単位を落とす」ということで有名です。\nただ、高校力学の内容で抜けている部分がなければ、少なくとも前期はクリアすることができると思います。特にエネルギー保存則などその辺りを復習しておきましょう。\n\n数学だと数IIIの範囲を復習しておきましょう。複素数平面は回路理論で使いますし、微分・積分は様々なところで出てきます。\nまた、今の指導要領では出てきていませんが、「行列」という単元があるので時間があればそれも確認してみてください。線形代数という分野があるのですが、行列の知識があれば簡単にクリアできます。\n\n化学はsp軌道など物理よりの話が多いです。新演習などの参考書に書いてあるらしいですが、先生方が丁寧に教えてくださるのでそこまで復習の必要はないでしょう笑\n\n指定校推薦だと事前課題が出されると思いますので、まずはそちらを集中的に取り組んだ上で時間があったらやってみてください。\nまた、ここから大学入学まで時間がたくさんあると思うので、やりたいことを今のうちにやっておくのもいいと思います。残りの高校生活を存分に楽しんでくださいね笑"}],["$","div",null,{"className":"flex mb-1","children":[["$","svg",null,{"stroke":"currentColor","fill":"currentColor","strokeWidth":"0","viewBox":"0 0 24 24","className":"text-subPrimary 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