[{"data":1,"prerenderedAt":73},["ShallowReactive",2],{"q-fire-114-1-fire-science-014":3},{"subject":4,"subjectSlug":5,"subjectKicker":6,"subjectShort":7,"question":8,"related":25,"sameNumber":51,"hasEssay":72},"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-114-1-火災學概要-014","fire-114-1-fire-science-014",114,1,14,"依據川越邦雄、關根孝、P.H Thomas 等之研究，火災最盛期時燃燒速度 R 之值，是和開口部之「面積」與「高度」二者相關，若開口部之面積增大為原來二倍，其他條件不變時，依理論計算， R 值為原來值的多少？",{"A":16,"B":17,"C":18,"D":19},"四分之一","二分之一","二倍","四倍","C",null,[],false,"",[26,31,35,39,43,47],{"webId":27,"stem":28,"number":29,"year":30,"session":12},"fire-106-1-fire-science-006","通常可燃性氣體或液體之分子每莫耳燃燒熱大於多少 kcal\u002Fmole？",6,106,{"webId":32,"stem":33,"number":34,"year":30,"session":12},"fire-106-1-fire-science-008","硫磺固體之燃燒屬於下列何種燃燒型態？",8,{"webId":36,"stem":37,"number":38,"year":30,"session":12},"fire-106-1-fire-science-005","下列形成火災原因中，何者屬於硬體設備之因素？",5,{"webId":40,"stem":41,"number":42,"year":30,"session":12},"fire-106-1-fire-science-009","燃燒之型態中，石油類之燃燒係屬下列何種型態燃燒？",9,{"webId":44,"stem":45,"number":46,"year":30,"session":12},"fire-106-1-fire-science-004","關於火災紀錄的敘述，下列何者錯誤？",4,{"webId":48,"stem":49,"number":50,"year":30,"session":12},"fire-106-1-fire-science-010","火災在燃燒可以持續之狀況下，有向四周無限擴大之特性。在不受其他因素之影響下，通常其燃燒面積與經過時間之關係為何？",10,[52,56,60,64,68],{"webId":53,"year":54,"stem":55,"number":13},"fire-113-1-fire-science-014",113,"下列何者屬水蒸氣爆炸？",{"webId":57,"year":58,"stem":59,"number":13},"fire-112-1-fire-science-014",112,"依史蒂芬-波茲曼（Stefan-Boltzmann）公式之定義，輻射熱量與輻射物體絕對溫度的幾次方成正比？",{"webId":61,"year":62,"stem":63,"number":13},"fire-111-1-fire-science-014",111,"普通木造建築物旁欲蓋 9 公尺高之建築物，其延燒係數為 3 級（係數為 0.15），其防火間隔應保持多少公尺？",{"webId":65,"year":66,"stem":67,"number":13},"fire-110-1-fire-science-014",110,"自然發火性物質中的原棉，主要是因為下列何種熱之蓄積而發火？",{"webId":69,"year":70,"stem":71,"number":13},"fire-109-1-fire-science-014",109,"火場溫度隨燃燒時間而逐漸升高，其空氣亦漸膨脹，空氣由外界流入該起火房間，同時熱煙霧也會從該起火房間流出。若忽略燃燒分解過程而產生之質量流率，建築物內部空氣溫度為 25℃，起火房間溫度為 800℃，流入起火房間之空氣體積流量為 1 m3\u002Fs，則流出起火房間之熱煙霧體積流量約為若干？",true,1785129966008]