[{"data":1,"prerenderedAt":69},["ShallowReactive",2],{"q-fire-113-1-fire-science-021":3},{"subject":4,"subjectSlug":5,"subjectKicker":6,"subjectShort":7,"question":8,"related":25,"sameNumber":50,"hasEssay":68},"火災學概要","fire-science","火災學 · Fire Science","火災學",{"id":9,"webId":10,"year":11,"session":12,"subject":4,"number":13,"stem":14,"options":15,"answer":20,"answerNote":21,"images":22,"imagesPending":23,"lawTimestamp":11,"explanation":24,"explanationDeep":24,"freq":12,"indexable":23},"fire-113-1-火災學概要-021","fire-113-1-fire-science-021",113,1,21,"依建築物火災 t2 成長理論，若釋熱率達 1 MW 需時間 100 秒，則釋熱率達 4 MW 所需時間為多少秒？",{"A":16,"B":17,"C":18,"D":19},"25","50","200","400","C",null,[],false,"",[26,31,34,38,42,46],{"webId":27,"stem":28,"number":29,"year":30,"session":12},"fire-107-1-fire-science-019","電線因火災燒熔而短路所形成之熔珠，稱為下列何者？",19,107,{"webId":32,"stem":33,"number":13,"year":30,"session":12},"fire-107-1-fire-science-021","油罐車在灌裝作業中，其累積電壓為 16 kV（其體積為 20 m3，電容為 1000 pF），試估算此作業所產生靜電能量為多少毫焦耳（mj）？",{"webId":35,"stem":36,"number":37,"year":30,"session":12},"fire-107-1-fire-science-018","已知木造倉庫高 6 公尺，如延燒係數為 0.15，依木造建築物火災溫度標準曲線，其鄰棟建築物之理論安全距離應在多少公尺以上？",18,{"webId":39,"stem":40,"number":41,"year":30,"session":12},"fire-107-1-fire-science-022","燃燒塔每分鐘需消耗 5.8 kg 之丁烷（C4H10），請估算在 NTP（25℃，1 大氣壓）之條件下，此燃燒塔每小時所需之燃燒理論空氣體積（LV）約為下列何者？",22,{"webId":43,"stem":44,"number":45,"year":30,"session":12},"fire-107-1-fire-science-017","有關地下建築物火災之敘述，下列何者錯誤？",17,{"webId":47,"stem":48,"number":49,"year":30,"session":12},"fire-107-1-fire-science-023","熱傳導之熱流動方向為何？",23,[51,55,59,63,67],{"webId":52,"year":53,"stem":54,"number":13},"fire-111-1-fire-science-021",111,"下列有關熱量傳遞的敘述，何者正確？",{"webId":56,"year":57,"stem":58,"number":13},"fire-110-1-fire-science-021",110,"下列物質在常溫時，何者的熱傳導係數（W\u002Fm∙K）較低？",{"webId":60,"year":61,"stem":62,"number":13},"fire-109-1-fire-science-021",109,"混合氣體由 A、B、C 三種氣體組成，混合時組成氣體不進行反應，且燃燒無催化作用，其中各氣體之混合濃度中，A 氣體占 1\u002F5（燃燒下限 4.0%），B 氣體占 3\u002F5（燃燒下限 12.5%），C 氣體占 1\u002F5（燃燒下限 2.0%），則此混合氣體燃燒下限約為多少？",{"webId":64,"year":65,"stem":66,"number":13},"fire-108-1-fire-science-021",108,"依據建築物火災 t2 成長理論，在一定義為快速成長的火災中，釋熱率達到 1MW 的時間應為多少秒？",{"webId":32,"year":30,"stem":33,"number":13},true,1785123161236]