[{"data":1,"prerenderedAt":127},["ShallowReactive",2],{"\u002Fpublic\u002Ftopics\u002Ffisica\u002Fgravitacion?{}":3,"topics-with-content:fisica":103},{"course":4,"topic":12,"counts":17,"universities":22,"channels":35,"sampleQuestions":59,"sameName":102},{"id":5,"slug":6,"name":7,"shortName":8,"area":9,"icon":10,"sortOrder":11},5,"fisica","Física","Fís.","science","i-lucide-atom",4,{"id":13,"courseId":5,"slug":14,"name":15,"sortOrder":16},511,"gravitacion","Gravitación",10,{"topicId":13,"courseId":5,"questions":18,"classes":19,"videos":20,"minutes":21},13,57,45,510,[23,31],{"universityId":24,"questions":16,"years":25},2,[26,27,28,29,30],2026,2025,2024,2023,2022,{"universityId":32,"questions":33,"years":34},1,3,[26,28,29],[36,39,41,44,46,49,51,53,55,57],{"name":37,"classes":38},"Alberto Cruz",16,{"name":40,"classes":16},"Academias Aduni y César Vallejo",{"name":42,"classes":43},"Academia Grupo Ciencias",7,{"name":45,"classes":43},"Academia ipluton",{"name":47,"classes":48},"Salón Sapiens",6,{"name":50,"classes":11},"Academia_Pitagoras",{"name":52,"classes":24},"CEPRE UNMSM",{"name":54,"classes":24},"Ciclo Uni-San Marcos",{"name":56,"classes":24},"Trilce Multimedia",{"name":58,"classes":32},"Lumbreras Editores",[60,85],{"id":61,"courseId":5,"topicId":13,"pastExamId":62,"stem":63,"options":64,"correctKey":75,"explanation":80,"difficulty":32,"status":81,"source":82,"stats":83},1604,197,"La masa de un planeta desconocido es igual a la masa de la Tierra, mientras que su radio es la tercera parte del radio terrestre. Calcule (en m\u002Fs²) la aceleración de la gravedad en la superficie de dicho planeta. Considere la magnitud de la aceleración de la gravedad en la superficie de la Tierra igual a 9,81 m\u002Fs².",[65,68,71,74,77],{"key":66,"text":67},"A","58,29",{"key":69,"text":70},"B","68,29",{"key":72,"text":73},"C","78,29",{"key":75,"text":76},"D","88,29",{"key":78,"text":79},"E","98,29","","published","UNI 2026-1 · Física y Química",{"attempts":84,"accuracy":84},0,{"id":86,"courseId":5,"topicId":13,"pastExamId":87,"stem":88,"options":89,"correctKey":72,"explanation":80,"difficulty":33,"status":81,"source":100,"stats":101},1769,200,"Si a una altura de 350 km sobre la superficie de la Tierra, el peso de un cuerpo tiene una magnitud de 25 N, calcule en cuántos km debe aumentarse la altura para que su nuevo peso tenga una magnitud igual a 16 N. Considere que el radio de la Tierra es 6370 km.",[90,92,94,96,98],{"key":66,"text":91},"980",{"key":69,"text":93},"1330",{"key":72,"text":95},"1680",{"key":75,"text":97},"2030",{"key":78,"text":99},"4060","UNI 2026-2 · Física y Química",{"attempts":84,"accuracy":84},[],[104,105,106,107,108,109,110,111,112,21,13,113,114,115,116,117,118,119,120,121,122,123,124,125,126],501,502,503,504,505,506,507,508,509,512,513,514,515,516,517,518,519,520,521,522,523,524,525,1791501528152]