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UniLink"}],["$","meta","3",{"name":"description","content":"医学部志望の再受験なのですが、化学にどうしても興味が持ちづらいため、生物と物理で受験を考えております。そこで相談なのですが、化学を学習しない場合、生物や物理の学習理解が不十分になってしまう恐れはありますでしょうか?モル計算や化学反応式の作り方など、初歩的なことは多少学習しています。"}],["$","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"] 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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"],"AdOnAdviceList3"] 1a:Tf0a,正直のところ進研模試でその点だと、あと半年で合格するのはほぼ不可能だと思います。ただ浪人すれば良いとかそう言う問題ではなく根本的な学習方法に問題があるかもしれません。 一度これまでの学習を振り返ってみるのをおすすめします。具体的には、これまで1日に何時間この科目をやっていて、この分野はこれくらい出来るけど、この分野はこれくらい苦手だとか科目ごとの達成率を計算してみると得意な部分と苦手な部分がはっきりするので自分がするべき勉強内容が分かると思います。 科目別で対策を立ててみましょう。 英語に関しては、ターゲット1900レベルまでの基礎的な単語知識は全て覚えておきましょう。また、東工大では和訳など文法の理解力も求められるので、関係詞や分詞構文などは常識レベルに理解して日常的に正確に文章を読む力を身につけてる必要があるでしょう。また、長文では制限時間に対して文章量が多い年があるので早く文章を読めるような訓練が必要になります。 数学に関しては、各分野の定義を正しく理解し、定理や公式が自分の力で証明できるようになるまで学習する必要があります。また、各問題を解けるからそれでいいと終わらせず、他に解法はないかと手を動かす習慣をつけましょう。これらを繰り返すことで複数分野の融合問題が出ても見た目にビビることなく問題に挑戦できるようになると思います。 物理に関しては、まずは力学を徹底的に勉強してください。力学は物理法則の根幹にある分野です。運動方程式の意味を正しく理解できていないと電磁気学を勉強するのが辛くなるでしょう。高校範囲の熱力学はすぐに身につけられるので得点源です。落とさないように状態方程式や熱力学第一法則を自在に使えるようにしましょう。困ったらPV図から答えを導くのも良いでしょう。波動に関しては三角関数の扱いがうまく出来ないと理解できないと思います。しっかり復習しましょう。 化学に関しては、とにかく基礎固めをしましょう。私も進路志望を変えた影響で化学は半年も勉強できませんでしたが、まずは有機化学の基礎事項は全て抑えましょう。同じ問題を使って何度も復習するだけでも効果があると思います。そして、理論化学の基礎的な計算問題は物理と比較すれば圧倒的に簡単なので基礎問題は落とさないように訓練しておきましょう。無機化学も同様に基礎固めだけはしておきましょう。化学は基礎さえできれば共通テストで8割切らない科目なので、努力すればすぐに結果がついてくると思います。頑張ってください。 また、東工大は2次比率100%ですが630/900を割って足切り喰らっては意味無いので国語や社会にも少しは気にかける必要があるでしょう。 英語、物理、化学は予備校に頼ってたのでおすすめの教材がありませんが、数学に関しては東京出版の一対一対応の数学で問題を解きながら定義や定理を掘り下げていくのが1番近道だとは思います。ただし、一対一対応の問題は普通に入試でも標準からやや難問レベルなので合わないかも知れません。まずは、手元にある参考書なり教科書や問題集をできるようになりましょう。 それでは健闘を祈ります。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:Tc62,演習の際、用意している教材は問題集のみでしょうか? もしそうなら、必ず教科書や図録を見ながら取り組みましょう。 教科書や図録を使わずに学習をする人は、丸暗記に陥りがちです。 解説が的を絞ったことしか書いていないからです。 以下詳細な回答です。 *丸暗記では勝てない *暗記の心得3カ条 *人に教えて理解を深める *まとめ ------------ 【丸暗記では勝てない】 京大の化学は丸暗記で挑む人を叩きのめす構造になっています。 基本的な事柄に対しても「なぜか?」を理解して説明できる力が必要です。 大問1…酸化還元や物質の構造に関する問題 大問2…溶液や気体の化学平衡に関する問題 大問3…有機化学に関する問題 大問4…高分子化合物に関する問題 が例年のパターンです。 計算問題や有機化学のパズルは一見論証と関わりなさそうですが、立式導出過程を問題文から理解するということが必要になってくるので、丸暗記が習慣になっている人は苦戦を強いられます。 ----------- 【暗記の心得3カ条】 駿台化学科の石川正明先生は、 「論理性」 「意味性」 「感動性」 を大切に理解暗記していきましょう、と指導されています。 「論理性」 何故そうなるのかを説明できると、自信をもって理解暗記できます。 (例) 過マンガン酸イオンが、酸性溶液中で酸化剤としてはたらく半反応式 MnO4(-) 8•H( ) 5•e(-) → Mn(2 ) 4•H2O これは何故このような式になるのか、自分なりにわかりやすく説明できるようになっている人の方が自信を持って暗記できます。 教科書と化学図録を用いて詳しく調べながら学習を進めると良いです。 「意味性」 それを理解すると何が得られるのかを知ると、理解暗記する意欲が増します。 例) ステアリン酸×3とグリセリンから成る油脂は分子量890で、これを覚えておけば高分子化合物の分子量絡みの計算が速くなる。 「感動性」 面白い、すごい、ひどい、と心動くことで暗記しやすくなります。 例) 「水兵リーベ僕の船…」に代表されるような語呂合わせ。 ------------ 【人に教えて理解を深める】 重要問題集で自分が出来た問題でも、誰かにわかりやすく解説することは出来ますか? 「論理性」「意味性」「感動性」を意識して、人に教えてみてください。 これは僕が実践してきた化学勉強法です。 友達同士で質問し合いっこしましょう。 特に模試の復習でこれをやると効果的です。 ------------ 【まとめ】 問題集 教科書 図録で演習。 人と教えあいっこで理解を深める。 京大相手に丸暗記では太刀打ちできない。2:["$","main",null,{"className":"px-4 pt-4 pb-4","children":["$","div",null,{"className":"max-w-3xl mx-auto w-full","children":[["$","div",null,{"className":"mb-8","children":["$","$L7",null,{"href":"https://unilink-app.onelink.me/isbO/h6xeh63x?advice=u1I9X4IBTqPwDZPucLoI","target":"_blank","children":["$","$L8",null,{"src":"/images/web_to_app_banner.jpg","width":3660,"height":1500,"sizes":"100vw","style":{"width":"100%","height":"auto"},"alt":"UniLink WebToAppバナー画像","className":"mb-4 rounded"}]}]}],["$","h1",null,{"className":"text-xl font-semibold mb-2","children":"生物と物理で受験します"}],["$","div",null,{"className":"flex justify-between mb-4","children":[["$","div",null,{"className":"text-left text-xs text-caption","children":["クリップ(",1,") 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items-center py-4","children":[["$","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":[["$","div",null,{"className":"mb-1","children":"物理をやるかやらないか"}],["$","div",null,{"className":"text-xs text-caption line-clamp-2 mb-1","children":"yooさん、はじめまして!\n\n\n化学の学習の進み具合によって変わってくるかなと思います。\n\n有機の範囲は独学中と言うことですが、化学の共通テストが有機以外はかなり解けるならギリギリ物理も間に合う可能性があります。ただこの場合は二次試験の勉強時間なんかもだいぶ削られてしまうので、かなり頑張らなければならないです!\n\n逆に化学の共通テストが現時点ではまだ不安という場合は覚悟は必要になってしまいますが物理は捨てる方がいいのかなと思います。物理の電磁気の範囲はかなり分量もありますし内容も簡単ではないので、この時期からは少し難しいです。\n\n\n私も志望校を一本で受験したのですが、かなり覚悟は必要でした。\n物理を捨てることでもしかしたら満足できる志望校が一本になってしまう可能性もあるので、どれだけ筑波大学に行きたいかということも考慮して決断していただくといいかなと思います!\n\nもちろん志望校を一本に絞ることによって無駄な対策をする必要がなくなるので、そこはかなりメリットになります!\n\n\n長くなってしまいましたが、参考になれば幸いです😊\n質問などがあれば、気軽にコメント欄で聞いてください!\n\n\n"}],["$","div",null,{"className":"flex mb-1","children":[["$","svg",null,{"stroke":"currentColor","fill":"currentColor","strokeWidth":"0","viewBox":"0 0 24 24","className":"text-subPrimary 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items-center py-4","children":[["$","div",null,{"className":"flex-1 mr-3","children":[["$","div",null,{"className":"mb-1","children":"物理化学が全くわからない"}],["$","div",null,{"className":"text-xs text-caption line-clamp-2 mb-1","children":" 物理についてお話ししますね。\n 気持ちはわかります。物理とかってなんか文字多いし、「難しい、わけわかんない」みたいなイメージありますよね。わけわかんないって思いながら勉強したって全然頭に入ってこないものです。でも実はそれって物理をぼんやりとした像として見ているからそう感じるのであって、わかってしまえば物理はただのパターンゲーに過ぎないんです。少し物理の像を詳しくのぞいてみましょう。\n 物理の単元は、大まかに 力学、電磁気、波動、熱力学、原子 と分類されます。例えば力学に関して言えば、ほとんどの力学の問題は大まかに\n運動方程式を立てる→必要なら3種の保存則(力学的エネルギー、運動量、面積速度)で使えるものを使う→必要なら反発係数の定義式とかを使う\nで解決します。円運動も、単振動も、二体運動ももれなくそうです。非慣性系とか重心系とかおまけは色々ありますけど、結局流れは全部同じなんです。普段解いてる問題の解き方を少し俯瞰的にみてみてください。見た目ほど大したことやってないんですよあれ。\n さらに言えば、力学で覚えるべき公式はたったの20個程度です(ただし暗記する必要のないものは除外しています)。20個程度ちゃちゃっと覚えちゃえば力学なんてあとパターン慣れちゃえば得点源です。ほぼ同様のことが電磁気、熱力学にも言えます。波動と原子はほとんどただの暗記です。これらの計算はめんどいだけで脳死でやってても答えは出ます。\n こんな感じで、実は物理って\n\n どうでしょう、少しは苦手意識がなくなりましたか。物理の苦手を克服するには、物理への苦手意識をまずなくすことが大事です。難しい、わかんない、と思ったままやけくそに勉強するのではなくて、ゆっくりと分析してみましょう。解説を見るときに、これはなにをやってるのかな、というのを噛み砕いてみてみましょう。一度わかってしまえばあとは実践あるのみです。"}],["$","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":["東京大学理科一類"," ","Atom"]}]]}],["$","div",null,{"className":"flex 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