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UniLink"}],["$","meta","3",{"name":"description","content":"物理が本当に救いようもないほどできません。1度見た問題は徹底的にやれば解けるようになりますが、初見の問題は本当に出来ないです。今良問の物理を着々と解いているところなのですが、基礎問題ですら手が止まってしまいます。公式は覚えているのですがなかなか上手く行きません。なにかコツや参考書などがあれば教えていただきたいです。"}],["$","link","4",{"rel":"icon","href":"/favicon.ico","type":"image/x-icon","sizes":"48x48"}],["$","link","5",{"rel":"icon","href":"/icon.png?2c0dc65a59843333","type":"image/png","sizes":"180x180"}],["$","link","6",{"rel":"apple-touch-icon","href":"/apple-icon.png?2c0dc65a59843333","type":"image/png","sizes":"180x180"}],["$","meta","7",{"name":"next-size-adjust"}]] 1:null 13:I[3903,["51","static/chunks/795d4814-710d199cb1f51304.js","183","static/chunks/183-141f39fb5cb93742.js","23","static/chunks/app/advice/%5Bid%5D/page-26686d89cc5a4cf8.js"],"ClientInfo"] 14:I[2798,["51","static/chunks/795d4814-710d199cb1f51304.js","183","static/chunks/183-141f39fb5cb93742.js","23","static/chunks/app/advice/%5Bid%5D/page-26686d89cc5a4cf8.js"],"AdUnderConsultation"] 15:I[2582,["51","static/chunks/795d4814-710d199cb1f51304.js","183","static/chunks/183-141f39fb5cb93742.js","23","static/chunks/app/advice/%5Bid%5D/page-26686d89cc5a4cf8.js"],"AdviserInfo"] 16:I[7060,["51","static/chunks/795d4814-710d199cb1f51304.js","183","static/chunks/183-141f39fb5cb93742.js","23","static/chunks/app/advice/%5Bid%5D/page-26686d89cc5a4cf8.js"],"AdUnderAdvice"] 17:I[3194,["51","static/chunks/795d4814-710d199cb1f51304.js","183","static/chunks/183-141f39fb5cb93742.js","23","static/chunks/app/advice/%5Bid%5D/page-26686d89cc5a4cf8.js"],"CommentPostButton"] 18:I[6411,["51","static/chunks/795d4814-710d199cb1f51304.js","183","static/chunks/183-141f39fb5cb93742.js","23","static/chunks/app/advice/%5Bid%5D/page-26686d89cc5a4cf8.js"],"CommentItemAvatar"] 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"] 1c: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"] 1b:T11d8,慶應義塾大学経済学部 kp様の過去回答記録より、 「物理のセンスのいい人などは、公式の導出の際に本質を理解して、いろいろな問題に応用して問題が解けます。 しかし、普通の人は一発目から本質はわかないので、公式を暗記して、それを使って問題を解きながら徐々に本質を理解していくのがいいと思います。 オススメはまず教科書をじっくり読んで公式を理解し、良問の風や名門の森をやって問題や公式に慣れていき、自分で公式の導出ができるまで練習するのが良いと思います。」 東京工業大学第三類 たかゆー様の過去回答記録より、 「物理ができない理由としては ①イメージがつかめていない ②単純に演習量が足りない ③応用力がない といった感じだと僕は考えています。 ①に関しては、物理を学ぶ上で最も難しい部分です。そこで僕がオススメするのが秘伝の物理という参考書です。この参考書は、かなり分厚いですが内容がすんなり入ってくることに加え、イラストや動画解説もあるのでかなりイメージがつかめます。秘伝の物理でイメージがつかめたら問題演習に入っていきましょう。 ②に関しては、物理のエッセンスでひたすら演習を積んでいきましょう。同じ問題は3回解くをモットーに頑張りましょう。 ③に関しては、名門の森という参考書を解いていけば身につきます。名門の森をマスターできれば入試物理で解けない問題はほとんどなくなるかと思います。まあ捨て問は別ですが笑 (質問者さんがどこでつまずいているのかはわかりませんが、おそらくイメージがつかめていないのと、演習量が足りないのではないかなぁと思います。) 問題を読んだ瞬間にあ〜こうすれば解けるなぁって思えるようになりましょう笑」 「エッセンス、体系物理がある程度完成しているとの事なので、過去問に入っても問題ない状況ではありますが物理で高得点を狙うためにはもう少し演習が必要です。 一応分野別物理以外の参考書は解いた経験があるので、実際に使って見た感想を交えながらおすすめしていこうと思います。 まず、一番おすすめなのは標準問題精講です。 この参考書は、簡単に言うと難系をぎゅっと圧縮してわかりやすくした感じです。 難系を解かないと高得点が取れない時代は終わりつつあるので、難系を使わないで標準問題精講を利用しましょう。 また、電磁気分野に関しては名門の森が一番いいので、時間があれば電磁気のみ名門を使っていくのがいいかと思います。 もし仮に、それでも時間に余裕があるのならば新物理入門の力学分野を一通り読んで理解しておくと、物理で九割は下回らないようになってきます。」 京都大学農学部 剛様の過去回答記録より、 「物理に限らず公式は暗記して理解するのではなく、理解しようと頑張ったら自然と暗記していたという順番が好ましいです。 例えば、運動方程式F=maですが単にこの形を覚えてしまえばつかえることは使えます。しかし、力Fが同じ状況下で質量mが大きければ大きいほど加速度は小さくなる、すなわち重いものは動き始めが遅いという実際に経験できる通りの理論だと分かります。 これはこう覚える、ということをする時も私自信ありましたが、京大物理を見据えて、どうしてそうなるのかを追求することが入試の得点に繋がります。学校のテストに言及すれば公式を覚えているのに点が取れないのは単に問題演習量が足りない可能性があります。使っている問題集のテスト範囲の問題は分かるまで何度も解いて、解説を読み込む作業を繰り返しましょう。」 虎の威を借る狐の如く、このような形でしか力になってあげられないことについて、大変なる不甲斐なさと申し訳なさを感じます。こんなことしか言えませんが、ぜひとも頑張ってください。1d:Tf6e,はじめまして。前期、後期ともに物理を受験したため回答させていただきます。長くなります。すみません🙏 自分がやった物理のルートは、 漆原の物理基礎・物理が面白いほどわかる本、並行して学校教材→名問の森 でした。 そのため、上記ルートのどれにも該当しません。 物理のエッセンスは有名な本ですが、自分は選びませんでした。その理由として、 ①本屋で試し読みしてしっくりこなかったこと。 ②レイアウトが自分の好みではなかったこと。 ③人によって評価の賛否が分かれていたこと。 ④青い物理のエッセンスは塾においてあり、気になったところだけ立ち読みできる環境があったこと。 があります。 物理のエッセンスは人によって善し悪しの意見が分かれるため、一度本屋で試しに読んでみて自分に合うと感じたら購入するという流れがいいと思います。 自分は気になったところがあったときだけ塾で借りて確認しました。全体はほとんど読まなかったので買わなくて正解でした。 漆原の面白いほどわかる本は、物理の本質的なところから丁寧に解説がなされているため個人的にはおすすめです。特に電磁気を予習するときにはかなり役立ちました。 自分が受験期にやった全体の流れとしては、 夏休み中に漆原の本3冊で既習範囲の復習&未習範囲の予習、そして漆原で勉強した未習範囲を実践アクセス(学校教材)でアウトプット。 夏休み明けから名問の森を勉強する。 という感じでした。 名問の森をやる上で注意してほしいのは、分からない部分があった場合に放置しないことです。名問の森は解説が不十分なところが少しあります。どうして模範解答のような解法を使おうと思うのか、どうして解答のような計算ができるか、など少しでも疑問に思ったらすぐに周りの人に教えてもらったり、自分で調べたりするべきです。名問の森は有名な参考書であるため、ネットにも沢山解答があります。 自分の場合、分からないところがあったら クァンダやネットで問題番号を検索して調べ、それでも分からなかったら先生やチューターさんに聞くようにしてました。 名問の森を周回してやるという発想では、解法暗記となってしまい、初見の問題に対応できなくなってしまいます。京都大学の場合、他の大学では見られないような面白い設定で問題が出されることが多く、解法暗記では対応できません。 9月から始めましたが前期試験までに2冊合わせて一周しかやってません。その代わりに、調べて分かったことを解答に書き込み、それをよく見直してました。 前期試験終了後に問題を選んで2週目をやったという感じです。 今振り返ると一周は流石にやらなさ過ぎではありますが、それくらい量ではなく理解することを大切にしてほしいです。理解するためにじっくり名問の森をやって、理解した考え方を定着させるために復習してたらいつの間にか周回してたというのが理想だと思います。 名問の森にある考え方は全部吸収してやろうと考えていたため、時間と労力を考えて良問の森はやりませんでした。 名問の森は本当に名問ばかりだと思います。 名問の森の考え方を身につけて、物理の入試に立ち向かってください!応援してます!! 何か質問があればコメントでお願いします!2:["$","main",null,{"className":"px-4 pt-4 pb-4","children":["$","div",null,{"className":"max-w-3xl mx-auto 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items-center py-4","children":[["$","div",null,{"className":"flex-1 mr-3","children":[["$","div",null,{"className":"mb-1","children":"物理の勉強法 参考書、難問に対応"}],["$","div",null,{"className":"text-xs text-caption line-clamp-2 mb-1","children":"こんにちは!東工大一年のたまちゃんです。 \n問題集は質問者様のレベル次第ですね。良問の風、名門の森とエッセンスは同じ著者なので、無駄金になってしまうかもしれませんが、一応買っておくのもありかなと思います。また、エッセンスをやるのでも良いと思います。良問の風とエッセンスの中にある問題のレベルはほとんど変わりません。出題形式が良問の風の方が入試っぽいというだけです。名門の森まで行って欲しいですが、全く理解出来そうにないなら、エッセンス、良問の風をやる方が良いです。背伸びをすることは悪いことだとは思いませんが、背伸びのしすぎは悪いことです。書店で見てみて、良問の風の問題がぱっと見出来そう(方針が立つ)なら、名門の森からで良いと思います。\n物理の力学において、一番大切なのは力の図示だと思います。その図を見ながら、運動方程式を立てることが大事です。図示は練習すれば、なんとなくわかってくるものなので、解いている問題とかでも力をちゃんと図示してみて下さい。先生に見せて、答え合わせ出来れば最高ですね。\n波動は公式の理解ですかね。ドップラー効果の公式の説明などもエッセンスには書いてあります。その理解も意外と大事です。また、どんな時にfが変わりどんな時にλが変わるのかをちゃんと確認してください。その辺を適当にやっていると、解けません。\n熱力学はU=Q-Wの公式が大事です。気体の力のつりあいは力学とほぼ同じです。また、どんな時にΔU=3/2nRΔT が使えるのかなど、断熱の時はどうなるのか、などもきちんと整理しておいて下さい。出来ない人はそこがテキトーになっている気がします。テキトーに公式に当てはめるなどしてると、当たり前ですが、解けなくなります。何故この公式を使うのかを考えることが重要です。\n電磁気は色々な公式が出てきます。その式は電荷の式なのか、コンデンサーの式なのか、直流回路の式なのかを意識して勉強して下さいね!\n長文失礼しました。"}],["$","div",null,{"className":"flex mb-1","children":[["$","svg",null,{"stroke":"currentColor","fill":"currentColor","strokeWidth":"0","viewBox":"0 0 24 24","className":"text-subPrimary mr-1","children":["$undefined",[["$","path","0",{"fill":"none","d":"M0 0h24v24H0V0z","children":[]}],["$","path","1",{"d":"M12 6c1.1 0 2 .9 2 2s-.9 2-2 2-2-.9-2-2 .9-2 2-2m0 10c2.7 0 5.8 1.29 6 2H6c.23-.72 3.31-2 6-2m0-12C9.79 4 8 5.79 8 8s1.79 4 4 4 4-1.79 4-4-1.79-4-4-4zm0 10c-2.67 0-8 1.34-8 4v2h16v-2c0-2.66-5.33-4-8-4z","children":[]}]]],"style":{"color":"$undefined"},"height":16,"width":16,"xmlns":"http://www.w3.org/2000/svg"}],["$","div",null,{"className":"text-xs","children":["東京工業大学第三類"," ","たまちゃん"]}]]}],["$","div",null,{"className":"flex 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mb-1","children":"私も昨年同じようなことで悩んでいたので回答させて頂きます。参考にしてください。\n\nまず模試は気にし過ぎないことです。復習して完全に理解したらそれでよしにしてしまいましょう。物理が得意な人でも芋づる式にミスして大量失点してしまうことがあるくらいなので。\n\n本題に移るとセンターの過去問はやったことがありますか?急に何の話って感じかもしれませんが、センターの過去問を解いたことがなければそれで基礎力を確認してみて頂きたいのです。\n\n化学もそうですが、センターの過去問は基礎の良い確認になります。\n(※最初から共テだと戸惑ってしまうかもしれないのでそれはオススメしていないです。センターが取れるようになったらこちらも良い勉強になるので活用して見て頂きたいです。共テ対策でセンター共テの過去問はどうせやると思いますが、早くからやった方が自分の状態がその分早く分かって得だと思います。)\n\n安定して点が取れるなら基本事項には自信をもって良いはずです。逆に点を取れないなら教科書などの基本に立ち戻るべきです。\n\nセンターで高得点を安定して出せるなら名問の森でも良い気がします。名問の森は解説がわかりやすく、基礎事項もまとめてくれているので。ミスしてもそこを突き詰めていけば良い訳ですし。良問の風よりめちゃくちゃ難しいってことは無かったです。あくまで私個人の考えですが。\n\n物理が凄く得意だったわけではありませんがじっくり慌てずにご自身が間違えた問題があればどこをどう間違えたか突き詰めて勉強してみて頂きたいです。\n\nよく言われることですが物理は量より質だと思います。沢山の問題をやっても浅い理解だったら効果は薄いです。逆に一問を研究すること(別の解き方でやってみたり、グラフを描いてみたり、問題になっていないことも考えてみたりすることなど)で沢山のことがわかったりします。\n\nあとは次元のチェック(単位が合っているかの確認)を素早くできるようにすることと極限の確認(m→∞とした時に矛盾しないかの確認など)を意識すれば少しずつ点を伸ばして、理解も深くすることができると思います。\n\n長くなってしまったのでまとめるとセンターの過去問を解いて基礎に戻るか少し応用的なものに進むか考えてみて頂きたいということです。\n\n慌てずに一問一問を完全に説明できる状態まで持っていければ根本の理解に近づくと思います。\n\n参考にどうぞ。\n\n頑張って下さい!"}],["$","div",null,{"className":"flex 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items-center py-4","children":[["$","div",null,{"className":"flex-1 mr-3","children":[["$","div",null,{"className":"mb-1","children":"物理今から始めても遅くないですか?"}],["$","div",null,{"className":"text-xs text-caption line-clamp-2 mb-1","children":" 0から(運動方程式とは、とかそのレベル)だとするなら、流石に無理があると思いますよ。他科目が既に合格水準を上回っていて11月末くらいまでほぼ物理にフォーカスできるなら上手くいけば人並みにはなれる、くらいのイメージでいいと思います。現状のレベルが正確に把握できないのであれですが、基礎はともかく普通の物理はなんとなく解けてるよって感じならなんとかなるかもしれません。以下ほぼ0からであるとしてお話しします。\n もし希望学部が化学一科目で受験できるならそっちをお勧めします。大学入ってから少ししんどいかもしれませんが、受験方式で物理を使わない選択肢がある以上ある程度のフォローは期待してもいいでしょう。(シラバス(大学の授業予定)などが参照できれば、物理の基礎が開講されているかどうか確認してみるのもあり)\n 大学に入ってからのことを心配するよりも、受験に最適な戦略を立てた方がいいと思います。入っちゃえばまぁなんとでもなりますから。\n \n その上でどうしても物理で受験したいと思うのであれば、以下の手順で学習を進めるといいと思います。参考までにどうぞ。\n[単元ごとに教科書を一読→出てきた公式を暗記→該当単元の「セミナー物理」を一周→解けなかった問題のみもう数周]ここまでを全単元やる→セミナーもう一周→解けなかったものをもう一周→重要問題集物理\nここまでできればある程度は解けると思います。\nセミナーがある程度完璧にならないうちは重問には進まない方がいいです。かなり時間がかかるのは覚悟してください。死ぬ気でやんないと無理です。とはいえ時間を気にしすぎて理解しないで先に進むのは厳禁ですよ。\n教科書の使い勝手が悪い場合は適当な参考書でも買ってそれを使っても構いません。"}],["$","div",null,{"className":"flex mb-1","children":[["$","svg",null,{"stroke":"currentColor","fill":"currentColor","strokeWidth":"0","viewBox":"0 0 24 24","className":"text-subPrimary mr-1","children":["$undefined",[["$","path","0",{"fill":"none","d":"M0 0h24v24H0V0z","children":[]}],["$","path","1",{"d":"M12 6c1.1 0 2 .9 2 2s-.9 2-2 2-2-.9-2-2 .9-2 2-2m0 10c2.7 0 5.8 1.29 6 2H6c.23-.72 3.31-2 6-2m0-12C9.79 4 8 5.79 8 8s1.79 4 4 4 4-1.79 4-4-1.79-4-4-4zm0 10c-2.67 0-8 1.34-8 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items-center py-4","children":[["$","div",null,{"className":"flex-1 mr-3","children":[["$","div",null,{"className":"mb-1","children":"証明や導出がすごい気になってしまう"}],["$","div",null,{"className":"text-xs text-caption line-clamp-2 mb-1","children":"三味線さん、はじめまして。\n\nお気持ちはすごく分かります。\nたしかに解答の細かいところに疑問を持ったり、その都度公式を導出していると参考書の進むペースは遅くなってしまいますが、その分、質は高くなると思うので全然良いことだと思いますし、むしろそうするべきだと思います。\n\nよく言われる「数学は理解」という言葉は、なぜその公式を使ったのか、なぜその解法で解くのか、なぜその変換を行うのか、もっと細かいことで言うと、なぜその順に解答を記述するのかといったことを理解することです。\n\n「数学は暗記」という言葉もたまに聞きますが、これは単純に英単語みたいに暗記すると言うことではなくて、どうしてこの解法を使うのかを理解した上でどうゆう問題が出たらどの解法を使うのかを暗記すると言うことです。\n仮に理解の過程を飛ばして暗記だけすると、少し問題の形が変わっただけで解法が思い浮かばないということになってしまいます。\n\nそして理解を深めるためには、三味線さんのように細かいところにも疑問を持って問題を解くのが一番の近道です。公式は導出ができる方が理解度ははるかに上がりますし、たまにある公式の導出に基づいた問題なんかも出題されることもあります。\nまた質問文中のことで触れると、なぜ置換積分はこうゆう形でするのか、一次独立とは何か、解答に使われている言葉の意図、こういったことに疑問をもって考えるのはとても良いことだと思います。確認しても忘れてしまうのは人間なので仕方ないことで、確認してその時に理解したことをノートなんかに纏めておきましょう。次に同じような疑問が出た時にノートを見返すことで少しずつ定着して力になっていくはずです。\n私の場合だと2.3回では定着せず、5回とか10回その都度見返すことで定着し始めた感じだったので、忘れているから力になっていないと焦らずに、自分のペースで頑張ってください!\n\n応援しています☺️\n"}],["$","div",null,{"className":"flex mb-1","children":[["$","svg",null,{"stroke":"currentColor","fill":"currentColor","strokeWidth":"0","viewBox":"0 0 24 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