[{"data":1,"prerenderedAt":135},["ShallowReactive",2],{"\u002Fpublic\u002Ftopics\u002Ffisica\u002Ffisica-moderna?{}":3,"topics-with-content:fisica":110},{"course":4,"topic":12,"counts":17,"universities":22,"channels":36,"sampleQuestions":66,"sameName":109},{"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},523,"fisica-moderna","Física moderna",22,{"topicId":13,"courseId":5,"questions":18,"classes":19,"videos":20,"minutes":21},27,90,81,1225,[23,32],{"universityId":24,"questions":25,"years":26},1,17,[27,28,29,30,31],2026,2025,2024,2023,2022,{"universityId":33,"questions":34,"years":35},2,10,[27,28,29,31],[37,40,43,46,49,52,54,56,58,60,62,64],{"name":38,"classes":39},"Academias Aduni y César Vallejo",19,{"name":41,"classes":42},"Academia Grupo Ciencias",16,{"name":44,"classes":45},"Alberto Cruz",15,{"name":47,"classes":48},"Academia ipluton",14,{"name":50,"classes":51},"Academia Internet",9,{"name":53,"classes":5},"CEPRE UNMSM",{"name":55,"classes":11},"Ciclo Uni-San Marcos",{"name":57,"classes":33},"Academia_Pitagoras",{"name":59,"classes":33},"META VILLARREAL",{"name":61,"classes":33},"Salón Sapiens",{"name":63,"classes":24},"Lumbreras Editores",{"name":65,"classes":24},"Saco Oliveros",[67,92],{"id":68,"courseId":5,"topicId":13,"pastExamId":69,"stem":70,"options":71,"correctKey":76,"explanation":87,"difficulty":33,"status":88,"source":89,"stats":90},1593,197,"Sobre una superficie de cobre, cuya función trabajo es 4,7 eV, inciden fotones con longitud de onda λ. Si el potencial de frenado es 1,3 V, calcule aproximadamente λ (en nm).\n\nConsidere que 1 eV=1,602×10$^{–19}$ J, h=6,626×10$^{–34}$ J·s y c=3×10$^{8}$ m\u002Fs.",[72,75,78,81,84],{"key":73,"text":74},"A","107",{"key":76,"text":77},"B","207",{"key":79,"text":80},"C","307",{"key":82,"text":83},"D","407",{"key":85,"text":86},"E","507","","published","UNI 2026-1 · Física y Química",{"attempts":91,"accuracy":91},0,{"id":93,"courseId":5,"topicId":13,"pastExamId":94,"stem":95,"options":96,"correctKey":76,"explanation":87,"difficulty":33,"status":88,"source":107,"stats":108},1777,200,"La radiación electromagnética que proviene del Sol viaja fuera de la atmósfera con longitudes de onda que varían entre 280 nm a 3000 nm. ¿Cuáles son las energías de los fotones, en eV, que corresponden a las longitudes de onda indicadas? Datos:\n\nConstante de Planck: 4,1×10$^{-15}$ eV·s Velocidad de la luz: 3×10$^{8}$ m\u002Fs",[97,99,101,103,105],{"key":73,"text":98},"3,39 y 0,41",{"key":76,"text":100},"4,39 y 0,41",{"key":79,"text":102},"4,39 y 1,41",{"key":82,"text":104},"5,39 y 1,41",{"key":85,"text":106},"5,39 y 2,41","UNI 2026-2 · Física y Química",{"attempts":91,"accuracy":91},[],[111,112,113,114,115,116,117,118,119,120,121,122,123,124,125,126,127,128,129,130,131,132,13,133,134],501,502,503,504,505,506,507,508,509,510,511,512,513,514,515,516,517,518,519,520,521,522,524,525,1791501528670]