[{"data":1,"prerenderedAt":95},["ShallowReactive",2],{"category-page:\u002Fhigh-school\u002Fbasic-earth-science\u002Fearth-history":3},{"category":4,"seo":11,"breadcrumbs":16,"childCategories":23,"topicPreview":24,"topicCount":94},{"path":5,"title":6,"description":7,"shortDescription":8,"parentPath":9,"accentToken":10},"\u002Fhigh-school\u002Fbasic-earth-science\u002Fearth-history","地球の変遷","宇宙・太陽系・地球の誕生から、地層と化石、生命と大気、ヒトの進化までを時間軸で扱うカテゴリです。","宇宙誕生から生命の変遷をたどる","\u002Fhigh-school\u002Fbasic-earth-science","signal-purple",{"title":12,"description":13,"canonicalUrl":14,"ogImage":15},"地球の変遷 | 地学基礎 学習カテゴリ | Zeqnilo","高校地学基礎の宇宙・太陽系・地球の誕生、地質時代、生命の変遷を整理します。","https:\u002F\u002Fzeqnilo.com\u002Fhigh-school\u002Fbasic-earth-science\u002Fearth-history","https:\u002F\u002Fzeqnilo.com\u002Fassets\u002Fsite\u002Fdefault-og.svg",[17,20,22],{"title":18,"path":19},"高校","\u002Fhigh-school",{"title":21,"path":9},"地学基礎",{"title":6,"path":5},[],[25,39,49,58,67,76,85],{"id":26,"title":27,"summary":28,"canonicalPath":29,"categoryPath":5,"categoryTitle":6,"difficulty":30,"targetAudience":31,"estimatedMinutes":32,"publishedAt":33,"updatedAt":33,"reviewStatus":34,"tags":35},"high-school-basic-earth-science-earth-history-big-bang-age-and-light-elements","ビッグバン・宇宙の年齢と軽元素","ビッグバンから宇宙の膨張・冷却、水素とヘリウムの形成までを時間の順序で整理します。","\u002Fhigh-school\u002Fbasic-earth-science\u002Fearth-history\u002Fbig-bang-age-and-light-elements","beginner","student_high",6,"2026-07-28","ai_generated",[21,6,36,37,38],"ビッグバン","宇宙年齢は約138億年","高温高密度から膨張",{"id":40,"title":41,"summary":42,"canonicalPath":43,"categoryPath":5,"categoryTitle":6,"difficulty":30,"targetAudience":31,"estimatedMinutes":44,"publishedAt":33,"updatedAt":33,"reviewStatus":34,"tags":45},"high-school-basic-earth-science-earth-history-solar-system-formation-and-planetary-differentiation","太陽系の形成と惑星の分化","ガスと塵の円盤から微惑星・惑星が成長し、加熱と分化で内部構造ができる過程を学びます。","\u002Fhigh-school\u002Fbasic-earth-science\u002Fearth-history\u002Fsolar-system-formation-and-planetary-differentiation",5,[21,6,46,47,48],"原始太陽系円盤","ガスと塵の円盤","衝突・付着で集積",{"id":50,"title":51,"summary":52,"canonicalPath":53,"categoryPath":5,"categoryTitle":6,"difficulty":30,"targetAudience":31,"estimatedMinutes":32,"publishedAt":33,"updatedAt":33,"reviewStatus":34,"tags":54},"high-school-basic-earth-science-earth-history-sun-formation-and-nuclear-fusion","太陽の誕生と水素核融合","ガス雲の重力収縮から原始太陽ができ、中心で水素からヘリウムへの核融合が始まるまでを、誕生時の加熱と現在のエネルギー源に分けて整理します。","\u002Fhigh-school\u002Fbasic-earth-science\u002Fearth-history\u002Fsun-formation-and-nuclear-fusion",[21,6,55,56,57],"太陽の核融合","ガス雲が重力収縮","中心温度が上昇",{"id":59,"title":60,"summary":61,"canonicalPath":62,"categoryPath":5,"categoryTitle":6,"difficulty":30,"targetAudience":31,"estimatedMinutes":44,"publishedAt":33,"updatedAt":33,"reviewStatus":34,"tags":63},"high-school-basic-earth-science-earth-history-primitive-atmosphere-ocean-and-habitable-earth","原始大気・海の形成と生命を支える地球","原始地球の冷却から大気・海の形成をたどり、太陽からの距離、質量、大気、液体の水が生命を支える条件へどう関わるかを整理します。","\u002Fhigh-school\u002Fbasic-earth-science\u002Fearth-history\u002Fprimitive-atmosphere-ocean-and-habitable-earth",[21,6,64,65,66],"生命を支える地球の条件","太陽からの距離が温度に関係","質量が大気保持に関係",{"id":68,"title":69,"summary":70,"canonicalPath":71,"categoryPath":5,"categoryTitle":6,"difficulty":30,"targetAudience":31,"estimatedMinutes":32,"publishedAt":33,"updatedAt":33,"reviewStatus":34,"tags":72},"high-school-basic-earth-science-earth-history-strata-fossils-and-geologic-time","地層・化石と地質時代","地層の上下関係と化石の種類・産出状況を使い、古生代・中生代・新生代の年代比較と過去の堆積環境を、証拠の役割を分けて読みます。","\u002Fhigh-school\u002Fbasic-earth-science\u002Fearth-history\u002Fstrata-fossils-and-geologic-time",[21,6,73,74,75],"地質時代","乱れがなければ下ほど古い","示準化石は年代比較",{"id":77,"title":78,"summary":79,"canonicalPath":80,"categoryPath":5,"categoryTitle":6,"difficulty":30,"targetAudience":31,"estimatedMinutes":44,"publishedAt":33,"updatedAt":33,"reviewStatus":34,"tags":81},"high-school-basic-earth-science-earth-history-atmosphere-life-coevolution","大気と生命の相互作用","生命活動が大気を変え、大気の変化が生命の活動範囲を変えた相互作用を時間軸で学びます。","\u002Fhigh-school\u002Fbasic-earth-science\u002Fearth-history\u002Fatmosphere-life-coevolution",[21,6,82,83,84],"生命と地球環境の相互作用","光合成で酸素放出","大気中酸素が増加",{"id":86,"title":87,"summary":88,"canonicalPath":89,"categoryPath":5,"categoryTitle":6,"difficulty":30,"targetAudience":31,"estimatedMinutes":32,"publishedAt":33,"updatedAt":33,"reviewStatus":34,"tags":90},"high-school-basic-earth-science-earth-history-human-evolution-and-bipedalism","ヒトの進化と直立二足歩行","人類進化を分岐として捉え、直立二足歩行を人類の代表的特徴として化石資料から読みます。","\u002Fhigh-school\u002Fbasic-earth-science\u002Fearth-history\u002Fhuman-evolution-and-bipedalism",[21,6,91,92,93],"直立二足歩行","共通祖先から枝分かれ","骨盤・大腿骨が証拠",7,1785565314419]