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Voyez pourquoi les métaux sont conducteurs et pas les plastiques , et pourquoi certains matériaux conduisent seulement quand vous les éclairez avec une lampe de poche.","downloadUrl":"/sims/conductivity/conductivity_fr.jar","hasPrototype":false,"id":1230,"isCheerpj":true,"learningGoals":"Reconnaître la force motrice dans un circuit.<br/>Expliquer la différence dans le comportement conducteur entre les métaux, les plastiques et les photoconducteurs en termes de différence dans la structure des niveaux d'énergie.<br/>Expliquez pourquoi une lumière allumée sur un photoconducteur le rend conducteur.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=fr","simPageUrl":"/fr/simulations/conductivity","title":"Conductivité"},"gl":{"downloadUrl":"/sims/conductivity/conductivity_gl.jar","hasPrototype":false,"id":4884,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=gl","simPageUrl":"/gl/simulations/conductivity","title":"Conductividade"},"hr":{"downloadUrl":"/sims/conductivity/conductivity_hr.jar","hasPrototype":false,"id":174,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=hr","simPageUrl":"/hr/simulations/conductivity","title":"Vodljivost"},"hu":{"description":"Kísérletezz a fémek, műanyagok és fotoellenállások (fényellenállások) vezetőképességével. Figyeld meg, hogy a fémek vezetik az áramot, a műanyagok nem, és vannak olyan anyagok is (fényellenállások), amelyek akkor vezetnek csak, ha megvilágítjuk őket.","downloadUrl":"/sims/conductivity/conductivity_hu.jar","hasPrototype":false,"id":2388,"isCheerpj":true,"learningGoals":"Megérteni, mi adja az áramkör hajtóerejét.<br/>Magyarázza meg a fémek, műanyagok és a fotoellenállások vezetőképessége közti különbséget. A magyarázat az energiaszintek rendszere közötti különbségekből induljon ki.<br/>Magyarázza meg, miért válik vezetővé a fényellenállás, ha fény éri.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=hu","simPageUrl":"/hu/simulations/conductivity","title":"Vezetőképesség"},"hy":{"downloadUrl":"/sims/conductivity/conductivity_hy.jar","hasPrototype":false,"id":4985,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=hy","simPageUrl":"/hy/simulations/conductivity","title":"Հաղորդիչներ"},"in":{"downloadUrl":"/sims/conductivity/conductivity_in.jar","hasPrototype":false,"id":4406,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=in","simPageUrl":"/in/simulations/conductivity","title":"Konduktivitas"},"it":{"description":"Fai esperimenti sulla conducibilità di metalli, plastiche e materiali fotoconduttori. Scopri perché i metalli conducono e le plastiche no, e perché alcuni materiali conducono se l'illumini con una torcia.","downloadUrl":"/sims/conductivity/conductivity_it.jar","hasPrototype":false,"id":2482,"isCheerpj":true,"learningGoals":"Identificare il tipo di forza nel circuito.<br/>Spiegare le differenze di conducibilità tra metalli, plastiche e fotoconduttori in termini di differenza nella struttura dei livelli energetici.<br/>Spiegare come illuminando un fotoconduttore si provochi la conducibilità","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=it","simPageUrl":"/it/simulations/conductivity","title":"Conducibilità"},"iw":{"downloadUrl":"/sims/conductivity/conductivity_iw.jar","hasPrototype":false,"id":1231,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=iw","simPageUrl":"/iw/simulations/conductivity","title":"מוליכות"},"ja":{"description":"金属、プラスチックおよび光伝導体の導電性を試してみましょう。なぜ金属は電気を通して、プラスチックは通さないのか、そして、なぜ一部の材料は懐中電灯で照らした時にだけ電気を通すのか考えてみましょう。","downloadUrl":"/sims/conductivity/conductivity_ja.jar","hasPrototype":false,"id":5071,"isCheerpj":true,"learningGoals":"回路の駆動力を特定します。<br/><br/>金属とプラスチックと光伝導体の導電挙動に関する違いを、エネルギー準位の構造の違いの観点から説明します。<br/><br/>光伝導体は、なぜ光を照射すると電気を通すのか説明します。","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=ja","simPageUrl":"/ja/simulations/conductivity","title":"伝導率"},"ka":{"description":"ჩაატარეთ ექსპერიმენტები მეტალის, პლასტმასის და შუქმგრძნობიარე გამტარებზე. ნახეთ როგორ ატარებენ ან არ ატარებენ დენს მეტალები ან პლასტმასები. ან როგორ იცვლება შუქმგრძნობიარე მასალების გამტარობა განათებისას.","downloadUrl":"/sims/conductivity/conductivity_ka.jar","hasPrototype":false,"id":1382,"isCheerpj":true,"learningGoals":"დაასაბუთეთ რატომ არის აკუმულატორი წრედში დენის წარმოქმნის წარმმართველი ძალა. გამოყავით განსხვავება მეტალების, პლასტმასების და შუქმგრძნობიარე მასალებს შორის და მათ ენერგეტიკულ დონეებს შორის.<br/>ახსენით რატომ ახდენს სინათლის სხივი ზემოქმედებას ფოტოგამტარებზე.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=ka","simPageUrl":"/ka/simulations/conductivity","title":"გამტარუნარიანობა"},"kk":{"downloadUrl":"/sims/conductivity/conductivity_kk.jar","hasPrototype":false,"id":5676,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=kk","simPageUrl":"/kk/simulations/conductivity","title":"Өткізгіштік"},"km":{"downloadUrl":"/sims/conductivity/conductivity_km.jar","hasPrototype":false,"id":2497,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=km","simPageUrl":"/km/simulations/conductivity","title":"ការចម្លងចរន្តអគ្គិសនី"},"kn":{"downloadUrl":"/sims/conductivity/conductivity_kn.jar","hasPrototype":false,"id":3401,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=kn","simPageUrl":"/kn/simulations/conductivity","title":"ವಾಹಕತೆ(ಕಂಡಕ್ಟಿವಿಟಿ)"},"ko":{"description":"금속, 플라스틱, 광전도체로 전도도 실험을 한다. 왜 금속은 전기가 통하고, 플라스틱은 안 통하는지 또 어떤 물질은 플래시로 빛을 비춰주어야만 전기가 통하는지 알아본다.","downloadUrl":"/sims/conductivity/conductivity_ko.jar","hasPrototype":false,"id":1843,"isCheerpj":true,"learningGoals":"회로내의 추진력 확인한다.<br/><br/>금속, 플라스틱, 광전도체의 전기 전도성의 차이를 에너지 준위의 구조 차이로 설명한다.<br/><br/>광전도체에 빛을 비추면 왜 전기가 통하는지 설명한다.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=ko","simPageUrl":"/ko/simulations/conductivity","title":"전도도"},"ku":{"downloadUrl":"/sims/conductivity/conductivity_ku.jar","hasPrototype":false,"id":5266,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=ku","simPageUrl":"/ku/simulations/conductivity","title":"توانای گهیاندن"},"ku_TR":{"description":"Gehîneriya metal, plastîk û gehînerê ronakî biceribînin. Bibînin ku çima metal gehîner in û plastîk nînin, û çima hinek kerese tenê wextê hun lambê li ser digirin gehînerin.","downloadUrl":"/sims/conductivity/conductivity_ku_TR.jar","hasPrototype":false,"id":5879,"isCheerpj":true,"learningGoals":"Hêzên ajokar yên di gêjenê de diyar bikin.<br/>Cudahiya di navbera gehîneriya metal, plastîk û gehînerên ronakî de bi cudahiya avabûna astên wizeyên wan rave bikin.<br/>Rave bikin ku çima ronahiya li ser gehînerên ronakî dibe sedema gehîneriyê.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=ku_TR","simPageUrl":"/ku_TR/simulations/conductivity","title":"Gehînerî"},"lo":{"downloadUrl":"/sims/conductivity/conductivity_lo.jar","hasPrototype":false,"id":8358,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=lo","simPageUrl":"/lo/simulations/conductivity","title":"ການດຳເນີນ"},"mk":{"description":"Експериментирајте со спроводливоста во метали, пластика и фотопроводници. Погледнете зошто металите спроведуваат а пластиката не, и зошто некои материјали спроведуваат само кога ќе светнете со фенерче на нив.","downloadUrl":"/sims/conductivity/conductivity_mk.jar","hasPrototype":false,"id":1467,"isCheerpj":true,"learningGoals":"Препознајте дека батеријата е движечката сила во колото. <br/> Објаснете ја разликата во спроведување меѓу метали, пластика, и фотопроводници во однос на разликите во структурата на нивото на енергија. <br/> Објаснете зошто осветлувањето на фотопроводниците предизвикува тие да спроведуваат.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=mk","simPageUrl":"/mk/simulations/conductivity","title":"Проводливост"},"mn":{"downloadUrl":"/sims/conductivity/conductivity_mn.jar","hasPrototype":false,"id":9147,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=mn","simPageUrl":"/mn/simulations/conductivity","title":"Дамжуулалт"},"mr":{"downloadUrl":"/sims/conductivity/conductivity_mr.jar","hasPrototype":false,"id":3968,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=mr","simPageUrl":"/mr/simulations/conductivity","title":"वाहकता"},"nl":{"description":"Experimenteer met de geleidbaarheid in metalen, plastics en foto-geleidende stoffen. Bekijk hoe metalen geleiden en plastics niet, en waarom sommige materialen alleen geleiden wanneer je ze beschijnt met intens licht.","downloadUrl":"/sims/conductivity/conductivity_nl.jar","hasPrototype":false,"id":164,"isCheerpj":true,"learningGoals":"Duidt de drijvende kracht aan in een schakeling.<br/>Verklaar het verschil in geleidingsgedrag tussen metalen, plastics, en foto-geleidende materialen aan de hand van het verschil van de structuur van de energie niveaus.<br/>Verklaar hoe het helle licht op foto-geleidend materiaal dit doet geleiden.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=nl","simPageUrl":"/nl/simulations/conductivity","title":"Geleidingsvermogen"},"pl":{"description":"Eksperymentuj z przewodnictwem w metalach, tworzywach sztucznych i fotoprzewodnikach. Zobacz, dlaczego metale przewodzą, a tworzywa sztuczne nie, i dlaczego niektóre materiały przewodzą tylko wtedy, gdy poświecisz na nie latarką.","downloadUrl":"/sims/conductivity/conductivity_pl.jar","hasPrototype":false,"id":176,"isCheerpj":true,"learningGoals":"Zidentyfikuj siłę napędową w obwodzie.<br/>Wyjaśnij różnicę w zachowaniu przewodzenia między metalami, tworzywami sztucznymi i fotoprzewodnikami w kategoriach różnicy w strukturze poziomów energetycznych.<br/>Wyjaśnij, dlaczego światło padające na fotoprzewodnik powoduje jego przewodzenie.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=pl","simPageUrl":"/pl/simulations/conductivity","title":"Przewodnictwo"},"pt":{"downloadUrl":"/sims/conductivity/conductivity_pt.jar","hasPrototype":false,"id":168,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=pt","simPageUrl":"/pt/simulations/conductivity","title":"Conductividade"},"pt_BR":{"description":"Experimente a condutividade de metais, plásticos e fotocondutores. Veja porque os metais conduzem e os plásticos não, e porque alguns materiais conduzem somente quando você acende uma lanterna sobre eles.","downloadUrl":"/sims/conductivity/conductivity_pt_BR.jar","hasPrototype":false,"id":2572,"isCheerpj":true,"learningGoals":"Reconher a força motriz em um circuito.<br/>Explicar a diferença no comportamento de condução entre os metais, plásticos e fotocondutores em termos da diferença na estrutura dos níveis de energia.<br/>Explicar por que iluminar um fotocondutor faz ele conduzir.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=pt_BR","simPageUrl":"/pt_BR/simulations/conductivity","title":"Condutividade"},"ro":{"description":"Experimentați cu conductivitatea în metale, materiale plastice și fotoconductori. Vedeți de ce metalele conduc și materialele plastice nu conduc și de ce unele materiale conduc doar atunci când le luminați cu o lanternă.","downloadUrl":"/sims/conductivity/conductivity_ro.jar","hasPrototype":false,"id":172,"isCheerpj":true,"learningGoals":"Să identifice forța care acționează într-un circuit.<br/>Să explice diferența în ceea ce privește conductivitatea între metale, materiale plastice și fotoconductori prin prisma diferenței de structură a nivelurilor energetice.<br/>Să explice de ce iluminarea cu lumină a unui fotoconductor îl face conductor.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=ro","simPageUrl":"/ro/simulations/conductivity","title":"Conductivitate"},"ru":{"downloadUrl":"/sims/conductivity/conductivity_ru.jar","hasPrototype":false,"id":171,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=ru","simPageUrl":"/ru/simulations/conductivity","title":"Проводимость"},"sk":{"downloadUrl":"/sims/conductivity/conductivity_sk.jar","hasPrototype":false,"id":2434,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=sk","simPageUrl":"/sk/simulations/conductivity","title":"Vodivosť"},"sl":{"downloadUrl":"/sims/conductivity/conductivity_sl.jar","hasPrototype":false,"id":2603,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=sl","simPageUrl":"/sl/simulations/conductivity","title":"Prevodnost"},"sq":{"downloadUrl":"/sims/conductivity/conductivity_sq.jar","hasPrototype":false,"id":5805,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=sq","simPageUrl":"/sq/simulations/conductivity","title":"Përçueshmëria"},"sr":{"downloadUrl":"/sims/conductivity/conductivity_sr.jar","hasPrototype":false,"id":1232,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=sr","simPageUrl":"/sr/simulations/conductivity","title":"Проводљивост"},"sv":{"downloadUrl":"/sims/conductivity/conductivity_sv.jar","hasPrototype":false,"id":3666,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=sv","simPageUrl":"/sv/simulations/conductivity","title":"Konduktivitet(ledningsförmåga)"},"th":{"description":"ทำการทดลองกับความสามารถในการนำไฟฟ้าในโลหะ, พลาสติก, และตัวนำแสง สังเกตดูว่าทำไมโลหะจึงนำไฟฟ้าได้แต่พลาสติกไม่สามารถที่จะนำไฟฟ้า และเหตุใดวัสดุบางชนิดสามารถที่จะนำไฟฟ้าเฉพาะเมื่อถูกฉายแสงไปกระทบ","downloadUrl":"/sims/conductivity/conductivity_th.jar","hasPrototype":false,"id":6327,"isCheerpj":true,"learningGoals":"ระบุถึงว่าแรงขับเคลื่อนในวงจรไฟฟ้าได้<br/>อธิบายความแตกต่างของพฤติกรรมการนำไฟฟ้าระหว่างโลหะ พลาสติก และตัวนำแสงในด้านความแตกต่างของโครงสร้างของระกับพลังงาน<br/>อธิบายสาเหตุที่การฉายแสงบนโฟโตคอนดัคเตอร์ (Photoconductor) จึงส่งผลให้เกิดการนำไฟฟ้าได้","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=th","simPageUrl":"/th/simulations/conductivity","title":"การนำไฟฟ้า"},"tk":{"downloadUrl":"/sims/conductivity/conductivity_tk.jar","hasPrototype":false,"id":3317,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=tk","simPageUrl":"/tk/simulations/conductivity","title":"Geçirijilik"},"tr":{"description":"Metal, plastik ve fotoiletkenlerde iletkenliği deneyimleyin. Metallerin neden ilettiğini ve plastiklerin neden iletmediğini ve neden bazı materyallerin üzerlerine ışık tutulduğunda ilettiğini görün.","downloadUrl":"/sims/conductivity/conductivity_tr.jar","hasPrototype":false,"id":3090,"isCheerpj":true,"learningGoals":"Bir devredeki itici gücü tanımlar.<br/>Metaller, plastikler ve fotoiletkenler arasındaki iletkenlik davranışındaki farkı, enerji seviyelerinin yapısı açısından açıklar.<br/>Bir fotoiletken üzerinde parlayan ışığın neden buna sebep olduğunu açıklar.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=tr","simPageUrl":"/tr/simulations/conductivity","title":"İletkenlik"},"uk":{"description":"Поекспериментуйте з провідністю металів, пластмас і фоторезисторів. Дізнайтеся, чому метали проводять елекрику, а пластмаси - ні, і чому деякі матеріали, проводять струм тільки тоді, коли на них світять ліхтариком.","downloadUrl":"/sims/conductivity/conductivity_uk.jar","hasPrototype":false,"id":166,"isCheerpj":true,"learningGoals":"Визначте рушійну силу в колі. <br/> Поясніть різницю в проведенні струму металами, пластмасами і фоторезисторами з точки зору відмінностей в структурі енергетичних рівнів. <br/> Поясніть, чому яскраве світло, спрямоване на фоторезистор змушує його проводити струм.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=uk","simPageUrl":"/uk/simulations/conductivity","teachersGuide":"/teachers-guide/conductivity-guide_uk.pdf","title":"Електропровідність"},"vi":{"description":"Thí nghiệm về độ dẫn điện của kim loại, nhựa và chất bán dẫn. Quan sát để biết tại sao kim loại dẫn điện còn nhựa thì không, và tại sao một số kim loại dẫn điện tốt khi chiếu ánh sáng vào nó.","downloadUrl":"/sims/conductivity/conductivity_vi.jar","hasPrototype":false,"id":165,"isCheerpj":true,"learningGoals":"Xác định động lực trong một mạch điện.<br/>Giải thích được độ dẫn điện của kim loại, nhựa và chất quang dẫn theo cấu trúc vùng năng lượng.<br/>Giải thích nguyên nhân dẫn điện tốt của chất quang dẫn khi được chiếu sáng.","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=vi","simPageUrl":"/vi/simulations/conductivity","title":"Độ dẫn điện"},"zh_CN":{"description":"采用金属、塑料和光敏电阻进行导电性实验。思考一下为什么金属可以导电,而塑料却不能,为什么有些材料只有受到光照时才能导电。","downloadUrl":"/sims/conductivity/conductivity_zh_CN.jar","hasPrototype":false,"id":173,"isCheerpj":true,"learningGoals":"认识到电源是电路中电荷运动的驱动力。<br/>从能级结构的差异上来解释金属、塑料和光敏电阻导电性的不同。<br/>解释光敏电阻受光照时会导电的原因。","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=zh_CN","simPageUrl":"/zh_CN/simulations/conductivity","title":"物体导电性能实验"},"zh_TW":{"description":"以金屬、塑膠和光導體進行導電率實驗,留意金屬為什麼能導電而塑膠則否,而某些材質只有在照光時才能導電。<br/><br/>翻譯者:<br/>潘建宏 (2009)<br/>潘建宏 (2010)","downloadUrl":"/sims/conductivity/conductivity_zh_TW.jar","hasPrototype":false,"id":175,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/conductivity/latest/conductivity.html?simulation=conductivity&locale=zh_TW","simPageUrl":"/zh_TW/simulations/conductivity","title":"導電度"}},"lowGradeLevel":2,"lreTerms":[],"name":"conductivity","phetStudioPublicationTime":"","phetioVersion":"","prototypeTime":0,"relatedSimulations":[],"scienceLiteracyMapKeys":["SMS-MAP-1325","SMS-MAP-2085"],"secondaryAlignmentIds":[],"subjects":[4,9,11,13,20],"topicIds":[53,56,85],"updateTime":1456162276257}],"type":0,"version":{"dev":0,"major":1,"minor":5,"revision":51723,"string":"1.5.0","timestamp":1304986404}}]}}