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artması cərəyana gətirib çıxarsa da işığın intensivliyi və ya plitələr arasındakı gərginliyin artması səbəb olmur.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=az","simPageUrl":"/az/simulations/photoelectric","title":"Fotoelektrik effekt"},"be":{"description":"Паглядзіце, як святло вырывае электроны з металічнай мішэні, і прайграйце эксперымент, які спарадзіў цэлую вобласць квантавай механікі.","downloadUrl":"/sims/photoelectric/photoelectric_be.jar","hasPrototype":false,"id":6267,"isCheerpj":true,"learningGoals":"Разгледзьце і апішыце ўстаноўку для вывучэння фотаэлектрычнага эфекту<br/>Правільна прадкажыце вынікі эксперыментаў па вывучэнню фотаэлектрычнага эфекту: напрыклад, як змяненне інтэнсіўнасці святла будзе ўплываць на ток і кінетычную энергію электронаў, як змяненне даўжыні хвалі святла будзе ўплываць на ток і кінетычную энергію электронаў, як змяненне напружання будзе ўплываць на ток і кінетычную энергію электронаў, як змяненне матэрыялу мішэні будзе ўплываць на ток і кінетычную энергію электронаў<br/>Апішыце, як гэтыя вынікі прыводзяць да квантавай мадэлі святла: напр. аргументуйце, чаму толькі квантамі святла можна растлумачыць, чаму, калі святло падае на метал, але току няма, павелічэнне частаты святла прывядзе да з'яўлення току, але павелічэнне інтэнсіўнасці святла, або напружання паміж пласцінамі не будзе прыводзіць да з'яўлення току.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=be","simPageUrl":"/be/simulations/photoelectric","title":"Фотаэлектрычны эфект"},"bg":{"downloadUrl":"/sims/photoelectric/photoelectric_bg.jar","hasPrototype":false,"id":5784,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=bg","simPageUrl":"/bg/simulations/photoelectric","title":"Фотоелектричен ефект"},"bs":{"downloadUrl":"/sims/photoelectric/photoelectric_bs.jar","hasPrototype":false,"id":5477,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=bs","simPageUrl":"/bs/simulations/photoelectric","title":"FOTOELEKTRIČNI EFEKAT"},"ca":{"downloadUrl":"/sims/photoelectric/photoelectric_ca.jar","hasPrototype":false,"id":3180,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=ca","simPageUrl":"/ca/simulations/photoelectric","title":"Efecte fotoelèctric"},"cs":{"downloadUrl":"/sims/photoelectric/photoelectric_cs.jar","hasPrototype":false,"id":5269,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=cs","simPageUrl":"/cs/simulations/photoelectric","title":"Fotoelektrický efekt"},"da":{"description":"Se hvordan lyset slår elektroner væk fra et metal-mål, og genskab eksperimentet, der var begyndelsen på kvantemekanikken.","downloadUrl":"/sims/photoelectric/photoelectric_da.jar","hasPrototype":false,"id":2453,"isCheerpj":true,"learningGoals":"Visualisere og beskrive det fotoelektriske effekt-eksperiment <br/>Korrekt at kunne forudsige resultatet af eksperimenter med den fotoelektriske effekt, f.eks. hvordan en ændring i intensiteten af lyset vil påvirke spændingen og energien af elektronerne, hvordan en ændring af lysets bølgelængde vil påvirke spændingen og energien af elektronerne, hvordan skiftende materiale af målet vil påvirke spændingen og energien af elektronerne <br/>Beskriv hvordan disse resultater fører til foton-modellen for lys. F.eks argumenter for at kun en fotonmodel for lys, kan forklare hvorfor lyset genskinner i metallet, men at der ikke er en strøm, forøgelse af frekvensen vil føre til en strøm, medens en stigende intensitet af lys, eller spænding mellem pladerne, vil ikke.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=da","simPageUrl":"/da/simulations/photoelectric","title":"Fotoelektrisk effekt"},"de":{"description":"Sehen Sie, wie Licht Elektronen aus einem Metall herausschlagen kann und wiederholen Sie das Experiment, aus dem die Quantenmechanik hervorging.","downloadUrl":"/sims/photoelectric/photoelectric_de.jar","hasPrototype":false,"id":596,"isCheerpj":true,"learningGoals":"Beschreiben Sie den photoelektrischen Effekt.<br/>Sagen Sie die Ergebnisse bestimmter Experimenten zum photoelektrischen Effekt voraus: <br/>Wie verändert sich die Elektronenenergie und die Stromstärke mit der Intensität des eingestahlten Lichts?<br/>Wie verändert sich die Elektronenenergie und die Stromstärke mit der Wellenlänge des eingestahlten Lichts?<br/>Wie verändert sich die Elektronenenergie und die Stromstärke mit der angelegten Spannung?<br/>Wie verändert sich die Elektronenenergie und die Stromstärke wenn das Anodenmaterial verändert wird.<br/>Beschreiben Sie, wie diese Ergebnisse zum Photonen-Modell des Lichts führten.<br/>Argumentieren Sie, warum nur das Photonen-Modell erklären kann, warum (bei anfänglichem Photostrom von Null) nur eine Veränderung der Wellenlänge zu einem Photostrom führen kann, nicht aber eine Veränderung der Intensität oder der Spannung.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=de","simPageUrl":"/de/simulations/photoelectric","title":"Der photoelektrische Effekt"},"el":{"description":"Παρατηρήστε με ποιον τρόπο το φως χτυπά τα ηλεκτρόνια ενός μεταλλικού στόχου και ξανακάντε το πείραμα που αυξάνει το πεδίο της κβαντικής μηχανικής.","downloadUrl":"/sims/photoelectric/photoelectric_el.jar","hasPrototype":false,"id":2249,"isCheerpj":true,"learningGoals":"Οπτικοποίησε και περίγραψε το πείραμα του φωτοηλεκτρικού φαινομένου.<br/>ΠΡόβλεψε σωστά τα αποτελέσματα πειραμάτων σχετικών με το φωτοηλεκτρικό φαινόμενο π.χ: πως θα επηρεαστεί το ρεύμα των ηλεκτρονίων, μεταβάλλοντας την ένταση του φωτός , πως θα επηρεαστεί το ρεύμα και η ενέργεια των ηλεκτρονίων, μεταβάλλοντας το μήκος κύματος του φωτός , πως θα επηρεαστεί το ρεύμα και η ενέργεια των ηλεκτρονίων, μεταβάλλοντας την τάση , πως θα μεταβληθεί η ενέργεια των ηλεκτρονίων μεταβάλλοντας το υλικό του στόχου.<br/>Εξήγησε πως τα παραπάνω πειράματα οφήγησαν στο σωματιδιακό μοντέλο για το φως π.χ: Δικαιολόγησε γιατί μόνο ένα σωματιδιακό μοντέλο για το φως μπορεί να εξηγήσει γιατί όταν το φως φωτίζει το μέταλλο και δεν δημιουργείται ρεύμα, η αύξηση της συχνότητας θα οδηγήσει στην παραγωγή ρεύματος, ενώ η αύξηση της έντασης του φωτός ή της τάσης ανάμεσα στις πλάκες δεν θα φέρουν αποτέλεσμα","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=el","simPageUrl":"/el/simulations/photoelectric","title":"Φωτοηλεκτρικό φαινόμενο"},"en":{"description":"See how light knocks electrons off a metal target, and recreate the experiment that spawned the field of quantum mechanics.","downloadUrl":"/sims/photoelectric/photoelectric_en.jar","hasPrototype":false,"id":602,"isCheerpj":true,"learningGoals":"Visualize and describe the photoelectric effect experiment.<br/>Correctly predict the results of experiments of the photoelectric effect: e.g. how changing the intensity of light will affect the current and the energy of electrons, how changing the wavelength of light will affect the current and the energy of electrons, how changing the voltage of light will affect the current and the energy of electrons, how changing the material of the target will affect the current and the energy of electrons.<br/>Describe how these results lead to the photon model of light: e.g. argue that only a photon model of light can explain why, when light is shining on the metal but there is no current, increasing the frequency will lead to a current, but increasing the intensity of light or the voltage between the plates will not.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric","simPageUrl":"/en/simulations/photoelectric","teachersGuide":"/teachers-guide/photoelectric-guide.pdf","title":"Photoelectric Effect"},"es":{"description":"Ve cómo la luz golpea los electrones de un objeto metálico, y recrea el experimento que dio origen al campo de la mecánica cuántica.","downloadUrl":"/sims/photoelectric/photoelectric_es.jar","hasPrototype":false,"id":595,"isCheerpj":true,"learningGoals":"Visualiza y describe el experimento del efecto fotoeléctrico.<br/>Predice correctamente los resultados de los experimentos del efecto fotoeléctrico: por ejemplo, cómo los cambios en la intensidad de la luz afectará a la corriente y la energía de los electrones, cómo el cambiar la longitud de onda de la luz afectará a la corriente y cambia la energía de los electrones, cómo cambiar el voltaje de la luz afectará a la corriente y la energía de los electrones, cómo el cambiar el material del objetivo afectará a la corriente y la energía de los electrones.<br/>Describe cómo estos resultados conducen al modelo de fotones de la luz: por ejemplo, argumenta que sólo un modelo de fotones de la luz puede explicar el por qué cuando la luz incide sobre el metal, pero no hay corriente, el aumento de la frecuencia conducirá a una corriente, pero el aumento de la intensidad de la luz o el voltaje entre las placas no.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=es","simPageUrl":"/es/simulations/photoelectric","teachersGuide":"/teachers-guide/photoelectric-guide_es.pdf","title":"Efecto Fotoeléctrico"},"es_MX":{"downloadUrl":"/sims/photoelectric/photoelectric_es_MX.jar","hasPrototype":false,"id":8171,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=es_MX","simPageUrl":"/es_MX/simulations/photoelectric","teachersGuide":"/teachers-guide/photoelectric-guide_es_MX.pdf","title":"El Efecto Fotoeléctrico"},"es_PE":{"description":"Vea cómo la luz golpea los electrones de un objeto metálico, y recrea el experimento que dio origen al campo de la mecánica cuántica.","downloadUrl":"/sims/photoelectric/photoelectric_es_PE.jar","hasPrototype":false,"id":4717,"isCheerpj":true,"learningGoals":"Visualizar y describir el experimento del efecto fotoeléctrico.<br/>Predecir correctamente los resultados de los experimentos del efecto fotoeléctrico: por ejemplo, cómo los cambios en la intensidad de la luz afectará a la corriente y la energía de los electrones, cómo cambiando la longitud de onda de la luz afectará a la corriente y cambia energía de los electrones, cómo cambiar el voltaje de la luz afectará a la corriente y la energía de los electrones, cómo cambiando el material del objetivo afectará a la corriente y la energía de los electrones.<br/>Describir cómo estos resultados conducen al modelo de fotones de la luz: por ejemplo, argumenta que sólo un modelo de fotones de la luz puede explicar el por qué, cuando la luz incide sobre el metal, pero no hay corriente, el aumento de la frecuencia conducirá a una corriente, pero el aumento de la intensidad de la luz o el voltaje entre las placas no.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=es_PE","simPageUrl":"/es_PE/simulations/photoelectric","title":"Efecto Fotoeléctrico"},"et":{"description":"Jälgi, kuidas valgus metallist sihtmärgist elektrone välja lööb ning taasloo eksperiment, mida võib pidada kvantmehaanika alguseks.","downloadUrl":"/sims/photoelectric/photoelectric_et.jar","hasPrototype":false,"id":1441,"isCheerpj":true,"learningGoals":"Visualiseerib ja kirjeldab fotoelektrilise efekti eksperimenti.<br/>Ennustab korrektselt fotoelektrilise efekti eksperimentide tulemust, st kuidas valguse intensiivsuse muutmine mõjutab elektronide voolu ja energiat; kuidas valguse lainepikkuse muutmine mõjutab elektronide voolu ja energiat; kuidas valguse pinge muutmine mõjutab elektronide voolu ja energiat.<br/>Kirjeldab, kuidas need tulemused viivad valguse footonmudelini, st selgitama, miks ainult valguse footonmudeli abil saab selgitada, miks metalli valgustamisel valgusega ajal, mil vool puudub, viib sageduse tõstmine voolu tekkimiseni, kuid valguse intensiivsuse või plaatidevahelise pinge tõstmine selleni ei vii.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=et","simPageUrl":"/et/simulations/photoelectric","title":"Fotoelektriline efekt"},"eu":{"downloadUrl":"/sims/photoelectric/photoelectric_eu.jar","hasPrototype":false,"id":4653,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=eu","simPageUrl":"/eu/simulations/photoelectric","title":"Efektu fotoelektrikoa"},"fa":{"downloadUrl":"/sims/photoelectric/photoelectric_fa.jar","hasPrototype":false,"id":593,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=fa","simPageUrl":"/fa/simulations/photoelectric","title":"اثر فوتوالکتریک"},"fi":{"description":"Näe miten valo irrottaa elektronin metallin pinnasta ja tee uudelleen koe, joka synnytti kvanttimekaniikan alan.","downloadUrl":"/sims/photoelectric/photoelectric_fi.jar","hasPrototype":false,"id":1220,"isCheerpj":true,"learningGoals":"Visualisoi ja kuvaile valosähköinen ilmiö.<br/>Ennusta oikein valosähköisen ilmiön tutkimuksen tulokset: miten valon intensiteetin tai aallonpituuden, levyjen välisen jännitteen tai kohdemateriaalin muuttaminen vaikuttaa virtaan ja elektronien energiaan, miten valon aallonpituuden muuttaminen vaikuttaa virtaan ja elektronien energiaan.<br/>Kuvaile miten nämä tulokset johtavat valon hiukkasmalliin: perustele miksi vain valon hiukkasmalli voi selittää miksi valon osuessa metalliin sen taajuuden lisääminen saa aikaan sähkövirran, mutta valon intensiteetin tai levyjen välisen jännitteen lisääminen ei.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=fi","simPageUrl":"/fi/simulations/photoelectric","title":"Valosähköinen ilmiö"},"fr":{"description":"Voir comment la lumière frappe les électrons sur une cible en métal, et recréer l'expérience qui a engendré le domaine de la mécanique quantique.","downloadUrl":"/sims/photoelectric/photoelectric_fr.jar","hasPrototype":false,"id":3114,"isCheerpj":true,"learningGoals":"Visualiser et décrire l'expérience de l'effet photoélectrique.<br/>Prédire correctement les résultats des expériences de l'effet photoélectrique: par exemple, comment l'évolution de l'intensité de la lumière aura une incidence sur le courant et l'énergie des électrons, comment changer la longueur d'onde de la lumière aura une incidence sur le courant et l'énergie des électrons, comment changer la tension de la lumière aura une incidence sur le courant et l'énergie des électrons, comment changer le matériau de la cible aura une incidence sur le courant et l'énergie des électrons.<br/>Décrivez comment ces résultats conduisent au modèle de photons de la lumière: par exemple, comment ils soutiennent que seul un modèle photonique de la lumière peut expliquer pourquoi, lorsque la lumière brille sur le métal, mais qu'il n'y a pas de courant, l'augmentation de la fréquence conduira à l'apparition d'un courant, alors que l'augmentation de l'intensité de la lumière ou de la tension entre les plaques ne le fera pas.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=fr","simPageUrl":"/fr/simulations/photoelectric","title":"Effet Photoélectrique"},"fu":{"downloadUrl":"/sims/photoelectric/photoelectric_fu.jar","hasPrototype":false,"id":1442,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=fu","simPageUrl":"/fu/simulations/photoelectric","title":"L'efiet fotoeletric"},"gl":{"downloadUrl":"/sims/photoelectric/photoelectric_gl.jar","hasPrototype":false,"id":4830,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=gl","simPageUrl":"/gl/simulations/photoelectric","title":"Efecto Fotoeléctrico"},"hr":{"downloadUrl":"/sims/photoelectric/photoelectric_hr.jar","hasPrototype":false,"id":598,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=hr","simPageUrl":"/hr/simulations/photoelectric","title":"Fotoelektrični efekt"},"hu":{"description":"Nézd meg, hogyan üti ki a fény az elektronokat egy fémes céltárgyból, és reprodukáld a kísérletet, amely megnyitotta a kvantummechanika felé vezető utat.","downloadUrl":"/sims/photoelectric/photoelectric_hu.jar","hasPrototype":false,"id":599,"isCheerpj":true,"learningGoals":"Vázolja fel a fotoelektromos jelenségről szóló kísérletet.<br/>Jósolja meg a kísérletek kimenetelét: pl. hogyan befolyásolja a fényintenzitás változása az áramerősséget és az elektronok energiáját; hogyan befolyásolja a fényhullámhossz változása az áramerősséget és az elektronok energiáját; hogyan befolyásolja a feszültség változása az áramerősséget és az elektronok energiáját; hogyan befolyásolja a céltárgy anyaga az áramerősséget és az elektronok energiáját.<br/>Magyarázza el, hogyan vezettek ezek a kísérletek a fény fotonmodelljéhez. Pl. érvelhet úgy, hogy csak a fény fotonmodellje alapján érthetjük meg, miért van az, hogy ha a fémet fény éri, de áram nincsen, akkor a frekvencia növelése áramot eredményez, míg a fényintenzitás vagy a feszültség növelése nem.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=hu","simPageUrl":"/hu/simulations/photoelectric","title":"Fotoeffektus"},"hy":{"downloadUrl":"/sims/photoelectric/photoelectric_hy.jar","hasPrototype":false,"id":5635,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=hy","simPageUrl":"/hy/simulations/photoelectric","title":"Ֆոտոէլեկտրական էֆեկտ"},"in":{"downloadUrl":"/sims/photoelectric/photoelectric_in.jar","hasPrototype":false,"id":4348,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=in","simPageUrl":"/in/simulations/photoelectric","title":"Efek Fotolistrik"},"it":{"description":"Vedere come la luce colpisce gli elettroni di un metallo bersaglio, e ricreare l'esperimento che ha portato all'avvento della meccanica quantistica.","downloadUrl":"/sims/photoelectric/photoelectric_it.jar","hasPrototype":false,"id":1221,"isCheerpj":true,"learningGoals":"Visualizzare e descrivere l'esperimento dell'effetto fotoelettrico.<br/>Fare una previsione corretta dei risultati degli esperimenti dell'effetto fotoelettrico cioè come la correntre e l'energia degli elettroni varino al variare della intensità della luce, della lunghezza d'onda, della tensione applicata, del materiale utilizzato. <br/>Descrivere come questi risultati portino al modello fotonico della luce, cioè comprendere che il modello fotonico spiega perché quando la luce lampeggia su un metallo in assenza di corrente, aumentando la frequenza si produca una corrente, mentre ciò non avviene aumentando l'intensità della luce o la tensione tra le piastre.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=it","simPageUrl":"/it/simulations/photoelectric","title":"L'Effetto Fotoelettrico "},"iw":{"downloadUrl":"/sims/photoelectric/photoelectric_iw.jar","hasPrototype":false,"id":1596,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=iw","simPageUrl":"/iw/simulations/photoelectric","title":"האפקט הפוטואלקטרי"},"ja":{"description":"光を当てることによって、どのように金属ターゲットから電子が飛び出すかを見て、量子力学の分野を生み出した実験を再現しましょう。","downloadUrl":"/sims/photoelectric/photoelectric_ja.jar","hasPrototype":false,"id":1644,"isCheerpj":true,"learningGoals":"光電効果の実験を図で表して説明します。<BR/><br/>光電効果の実験結果を正しく予測します:例えば、光の強さを変えると、どのように電流と電子のエネルギーが変化するのか、光の波長を変えるとと、どのように電流と電子のエネルギーが変化するのか、光の電圧を変えると、どのように電流と電子のエネルギーが変化するのか、ターゲットの素材を変えると、どのように電流と電子のエネルギーが変化するのか予測します。<BR/><br/>これらの結果が、どのように光の光子モデルにつながるかを説明します。例えば、なぜ、金属に光が当てられているけれども電流は流れていない時、光の周波数を上げることによって電流が発生して、光の強さを上げても、また、プレート間の電圧を上げても電流は発生しないのか、これを光の光子モデルのみによって説明できることを論じます。","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=ja","simPageUrl":"/ja/simulations/photoelectric","title":"光電効果"},"ka":{"downloadUrl":"/sims/photoelectric/photoelectric_ka.jar","hasPrototype":false,"id":1659,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=ka","simPageUrl":"/ka/simulations/photoelectric","title":"ფოტოელექტრიკული ეფექტები"},"kk":{"downloadUrl":"/sims/photoelectric/photoelectric_kk.jar","hasPrototype":false,"id":5690,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=kk","simPageUrl":"/kk/simulations/photoelectric","title":"Фотоэлектрлік эффект"},"kn":{"downloadUrl":"/sims/photoelectric/photoelectric_kn.jar","hasPrototype":false,"id":5184,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=kn","simPageUrl":"/kn/simulations/photoelectric","title":"ದ್ಯುತಿ ವಿದ್ಯುತ್ ಪರಿಣಾಮ"},"ko":{"description":"빛이 어떻게 금속표적에서 전자를 떼어내는지 살펴보고, 양자역학 분야를 부화시킨 이 실험을 재창조한다.","downloadUrl":"/sims/photoelectric/photoelectric_ko.jar","hasPrototype":false,"id":1222,"isCheerpj":true,"learningGoals":"광전효과 실험을 시각화하고 설명한다.<br/> <br/>광전효과 실험의 결과를 정확하게 예측한다. 예를 들어, 빛의 세기 변화가 전류와 전자의 에너지에 끼치는 영향, 빛의 파장 변화가 전류와 전자의 에너지에 끼치는 영향, 빛의 전압 변화가 전류와 전자의 에너지에 끼치는 영향, 표적의 물질 변화가 전류와 전자의 에너지에 끼치는 영향 등을 예측한다. <br/><br/>이러한 결과들이 어떻게 빛의 광자 모형과 연계되는지를 설명한다. 예를 들어, 왜 금속에 빛이 비칠 때 전류의 흐름이 없으나 빛의 세기를 증가시키면 전류가 흐르고 반면에 빛의 세기나 두 판 사이의 전압을 증가시켜도 전류가 흐르지 않는지를 빛의 광전자 모형만이 설명할 수 있다는 주장을 설명한다.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=ko","simPageUrl":"/ko/simulations/photoelectric","title":"광전효과"},"ku_TR":{"description":"Bibînin ku çawa ronak elektronan ji metalan diketîne, û ezmûngehê ji bo navenda qûwantûma mekanîkî jî biceribînin.","downloadUrl":"/sims/photoelectric/photoelectric_ku_TR.jar","hasPrototype":false,"id":5902,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=ku_TR","simPageUrl":"/ku_TR/simulations/photoelectric","title":"Karîgeriya Ronakî-Kareba"},"mk":{"description":"Погледнете како светлинатаги вади електроните од еден метална мета, и рекреирајте експеримент кој го предизвика полето квантната механика.","downloadUrl":"/sims/photoelectric/photoelectric_mk.jar","hasPrototype":false,"id":1549,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=mk","simPageUrl":"/mk/simulations/photoelectric","title":"Фотоелектричен ефект"},"mn":{"downloadUrl":"/sims/photoelectric/photoelectric_mn.jar","hasPrototype":false,"id":9744,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=mn","simPageUrl":"/mn/simulations/photoelectric","title":"Фотоцахилгаан Үзэгдэл"},"mr":{"downloadUrl":"/sims/photoelectric/photoelectric_mr.jar","hasPrototype":false,"id":5158,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=mr","simPageUrl":"/mr/simulations/photoelectric","title":"प्रकाशविद्युत परिणाम"},"nb":{"description":"Se hvordan lys slår løs elektroner fra et mål av metall, og gjenskap eksperimentet som avfødte forskningsfeltet kvantemekanikk.","downloadUrl":"/sims/photoelectric/photoelectric_nb.jar","hasPrototype":false,"id":5597,"isCheerpj":true,"learningGoals":"Visualiser og beskriv eksperimentet med den fotoelektriske effekten.<br/>Gi en korrekt forutsigelse av resultatene fra eksperimentet av den fotoelektriske effekten.Det vil si: hvordan det å endre intensiteten til lyset vil påvirke strømmen og energien til elektronene, hvordan endring av lysets bølgelengde påvirker strømmen og energien til elektronene, hvordan endring av batterispenningen påvirker strømmen og energien til elektronene, hvordan endring av materialet til målet påvirker strømmen og energien til elektronene.<br/>Beskriv hvordan disse resultatene leder til lysets fotonmodell. Det vil si at du må argumentere for at bare en fotonmodell kan forklare hvorfor der er slik at når lyset skinner på metallet, og det ikke er strøm, vil en økning i frekvensen føre til at det går en strøm, mens det å øke lysintensiteten eller spenningen mellom platene ikke gjør det.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=nb","simPageUrl":"/nb/simulations/photoelectric","title":"Fotoelektrisk Effekt"},"nl":{"description":"Toon hoe licht elektronen uit een metalen doel botst en doe de proef opnieuw die de aanzet gaf tot de kwantum mechanica.","downloadUrl":"/sims/photoelectric/photoelectric_nl.jar","hasPrototype":false,"id":594,"isCheerpj":true,"learningGoals":"Visualiseer en beschrijf het experiment over het fotoelektronisch effect.<br/>Voorspel correct de resultaten van de experimenten over het fotoelektronisch effect: hoe het veranderen van de intensiteit van het licht invloed zal hebben op de stroomsterkte en de energie van de elektronen, hoe het veranderen van de golflengte van het licht invloed zal hebben op de stroomsterkte en de energie van de elektronen, hoe het veranderen van de spanning invloed zal hebben op de stroomsterkte en de energie van de elektronen en hoe het veranderen van aard van de metalen plaat effect zal hebben op de stroomsterkte en de energie van de elektronen.<br/>Beschrijf hoe deze resultaten leiden tot het foton model van licht: alléén met een foton model van licht kan worden uitgelegd waarom als er licht valt op een metaal en er geen stroom is, een toenemen van de frequentie zal leiden tot een stroom, maar het doen toenemen van de intensiteit van licht of de spanning tussen de platen dat niet zal doen.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=nl","simPageUrl":"/nl/simulations/photoelectric","title":"Fotoelektrisch effect"},"pl":{"description":"Zobacz, jak światło wybija elektrony z metalowego celu i odtwórz eksperyment, który zapoczątkował mechanikę kwantową.","downloadUrl":"/sims/photoelectric/photoelectric_pl.jar","hasPrototype":false,"id":601,"isCheerpj":true,"learningGoals":"Zwizualizuj i opisz eksperyment z efektem fotoelektrycznym.<br/>Poprawnie przewiduj wyniki eksperymentów efektu fotoelektrycznego: np. jak zmiana natężenia światła wpłynie na natężenie prądu i energię elektronów, jak zmiana długości fali światła wpłynie na natężenie prądu i energię elektronów, jak zmiana napięcia między płytkami wpłynie na natężenie prądu i energię elektronów, jak zmiana materiału tarczy wpłynie na natężenie prądu i energię elektronów.<br/>Opisz, jak te wyniki prowadzą do fotonowego modelu światła: np. argumentuj, że tylko fotonowy model światła może wyjaśnić, dlaczego, gdy światło pada na metal, ale nie ma prądu, zwiększenie częstotliwości doprowadzi do powstania prądu, ale zwiększenie natężenia światła lub napięcia między płytkami już nie.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=pl","simPageUrl":"/pl/simulations/photoelectric","title":"Efekt fotoelektryczny"},"pt":{"downloadUrl":"/sims/photoelectric/photoelectric_pt.jar","hasPrototype":false,"id":592,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=pt","simPageUrl":"/pt/simulations/photoelectric","title":"O Efeito Fotoeléctrico"},"pt_BR":{"description":"Veja como a luz bate em elétrons de um alvo metálico, e recrie a experiência que deu origem ao campo da mecânica quântica.","downloadUrl":"/sims/photoelectric/photoelectric_pt_BR.jar","hasPrototype":false,"id":1597,"isCheerpj":true,"learningGoals":"Visualizar e descrever a experiência do efeito fotoelétrico.<br/>Predizer corretamente os resultados de experimentos sobre o efeito fotoelétrico, tais como: como mudar a intensidade da luz afetará a corrente e a energia dos elétrons, como a alteração do comprimento de onda da luz irá afetar a corrente e a energia dos elétrons, como mudar a voltagem da luz irá afetar a corrente e a energia dos elétrons, como a alterar o material do alvo afetará a corrente e a energia dos elétrons<br/>Descrever como esses resultados nos levam ao modelo de fóton de luz (por exemplo: argumentar que apenas um modelo de fóton de luz pode explicar por que, quando a luz está brilhando sobre o metal, mas não há corrente, aumentando a frequência levará a uma corrente, mas aumentando a intensidade da luz ou a tensão entre as placas não.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=pt_BR","simPageUrl":"/pt_BR/simulations/photoelectric","title":"Efeito Fotoelétrico"},"ro":{"description":"Vedeți cum lumina scoate electronii dintr-o țintă metalică și recreați experimentul care a dat naștere mecanicii cuantice.","downloadUrl":"/sims/photoelectric/photoelectric_ro.jar","hasPrototype":false,"id":3944,"isCheerpj":true,"learningGoals":"Să vizualizeze și să descrie experimentul efectului fotoelectric.<br/>Să prezică în mod corect rezultatele experimentelor privind efectul fotoelectric: de exemplu, modul în care modificarea intensității luminii va afecta curentul și energia electronilor, modul în care modificarea lungimii de undă a luminii va afecta curentul și energia electronilor, modul în care modificarea tensiunii luminii va afecta curentul și energia electronilor, modul în care modificarea materialului țintei va afecta curentul și energia electronilor.<br/>Să descrie modul în care aceste rezultate conduc la modelul fotonic al luminii: de exemplu, să argumenteze că numai un model fotonic al luminii poate explica de ce, atunci când lumina luminează metalul, dar nu există curent, creșterea frecvenței va duce la apariția unui curent, dar nu și creșterea intensității luminii sau a tensiunii dintre plăci.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=ro","simPageUrl":"/ro/simulations/photoelectric","title":"Efectul fotoelectric"},"ru":{"downloadUrl":"/sims/photoelectric/photoelectric_ru.jar","hasPrototype":false,"id":1550,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=ru","simPageUrl":"/ru/simulations/photoelectric","title":"Фотоэффект"},"sk":{"downloadUrl":"/sims/photoelectric/photoelectric_sk.jar","hasPrototype":false,"id":597,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=sk","simPageUrl":"/sk/simulations/photoelectric","title":"Fotoelektrický jav"},"sl":{"downloadUrl":"/sims/photoelectric/photoelectric_sl.jar","hasPrototype":false,"id":9261,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=sl","simPageUrl":"/sl/simulations/photoelectric","title":"Fotoelektrični pojav"},"sq":{"downloadUrl":"/sims/photoelectric/photoelectric_sq.jar","hasPrototype":false,"id":2513,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=sq","simPageUrl":"/sq/simulations/photoelectric","title":"Efekti Fotoelektrik"},"sr":{"downloadUrl":"/sims/photoelectric/photoelectric_sr.jar","hasPrototype":false,"id":1812,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=sr","simPageUrl":"/sr/simulations/photoelectric","title":"ФОТОЕЛЕКТРИЧНИ ЕФЕКАТ"},"sv":{"downloadUrl":"/sims/photoelectric/photoelectric_sv.jar","hasPrototype":false,"id":1551,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=sv","simPageUrl":"/sv/simulations/photoelectric","title":"Fotoelektrisk effekt"},"ta":{"downloadUrl":"/sims/photoelectric/photoelectric_ta.jar","hasPrototype":false,"id":5032,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=ta","simPageUrl":"/ta/simulations/photoelectric","title":"ஒளிமின் விளைவு"},"te":{"downloadUrl":"/sims/photoelectric/photoelectric_te.jar","hasPrototype":false,"id":6013,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=te","simPageUrl":"/te/simulations/photoelectric","title":"కాంతి విద్యుత్ ఫలితము"},"th":{"description":"สังเกตดูว่าแสงส่งผลกระทบอย่างไรต่อการหลุดได้ของอิเล็กตรอนของโลหะ และการทดลองสมัยใหม่ที่สามารถทำให้เข้าใจในปรากฏการณ์กลศาสตร์ระดับควอนตัม","downloadUrl":"/sims/photoelectric/photoelectric_th.jar","hasPrototype":false,"id":5144,"isCheerpj":true,"learningGoals":"แสดงให้เห็นได้และบรรยายถึงผลลัพธ์การทดลองปรากฏการณ์โฟโตอิเล็กทริก<br/>มีความแม่นยำในการทำนายผลลัพธ์การทดลองปรากฏการณ์โฟโตอิเล็กทริก: ตัวอย่างเช่น ความเข้มของแสงที่เปลี่ยนไปส่งผลอย่างไรต่อระดับพลังงานและกระแสของอิเล็กตรอน, ความยาวคลื่นที่เปลียนไปส่งอย่างไรต่อระดับพลังงานและกระแสของอิเล็กตรอน, ความต่างศักย์ของแสงที่เปลี่ยนไปส่งผลอย่างไรต่อระดับพลังงานและกระแสของอิเล็กตรอน, ชนิดของวัสดุที่เปลี่ยนไปจะส่งผลอย่างไรต่อระดับพลังงานและกระแสของอิเล็กตรอน.<br/>อธิบายถึงผลลัพธ์การทดลองดังกล่าวข้างต้นว่ากลายมาเป็นโมเดลทางวิทยาศาสตร์ที่เกี่ยวกับโฟตอนของแสงได้อย่างไร: ตัวอย่างเช่น แสดงให้เห็นถึงข้อถกเถียงทางวิทยาศาสตร์ว่าเหตุใดโมเดลโฟตอนของแสงสามารถอธิบายได้ว่าเหตุใดเมื่อแสงส่องตกกระทบโลหะแล้วจึงไม่มีกระแสเกิดขึ้น, เหตุใดการเพิ่มขึ้นของความถี่จึ่งทำให้เกิดกระแส ในขณะที่การเพิ่มขึ้นของความเข้มแสงหรือของความต่างศักย์ระหวา่งเพลทนั้นไม่ทำให้กระแสเกิดขึ้นได้","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=th","simPageUrl":"/th/simulations/photoelectric","title":"ปรากฏการณ์โฟโตอิเล็กตริก"},"tk":{"downloadUrl":"/sims/photoelectric/photoelectric_tk.jar","hasPrototype":false,"id":4540,"isCheerpj":true,"learningGoals":"","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=tk","simPageUrl":"/tk/simulations/photoelectric","title":"Fotoelektriki effekt"},"tr":{"description":"Işığın elektronlarla metal bir hedefi nasıl yok ettiğini görün ve kuantim mekanik alanları yeniden ortaya çıkaran deneyin tekrar edin.","downloadUrl":"/sims/photoelectric/photoelectric_tr.jar","hasPrototype":false,"id":2883,"isCheerpj":true,"learningGoals":"Fotoelektrik deneyini görselleştir ve tanımlar.<br/> Fotoelektrik etki -ışığın yoğunluğunu değiştirmenin akımı ve elektronların enerjisini etkilemesi, ışığın voltajını değiştirmenin akımı ve ve elektronların enerjisini etkilemesi, hedef materyali değiştirmenin akımı ve elektronların enerjisini etkilemesi -deneylerinin sonuçlarını doğru bir şekilde tahmin eder.<br/> Bu sonuçların, ışığın foton modeline götürmesi; sadece ışığın foton modelinin, akım yokken ışığın metal üzerinde ne zaman ve neden parladığını açıklayabileceğini; frekansı artırmanın akıma neden olacağını, ışığın şiddetini ya da tabakalar arasındaki voltajı artırmanın ise akıma sebebiyet vermeyeceğini tartışır.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=tr","simPageUrl":"/tr/simulations/photoelectric","title":"Fotoelektrik olay"},"uk":{"description":"Подивіться, як світло вибиває електрони з металевої мішені, і відтворіть експеримент, який породив цілу область квантової механіки.","downloadUrl":"/sims/photoelectric/photoelectric_uk.jar","hasPrototype":false,"id":3570,"isCheerpj":true,"learningGoals":"Розгляньте і опишіть експеримент з фотоелектричного ефекту <br/> Правильно передбачте результати експериментів фотоелектричного ефекту: наприклад, як зміна інтенсивності світла буде впливати на струм і енергію електронів, як зміна довжини хвилі світла буде впливати на струм і енергію електронів, як зміна напруги світла буде впливати на струм і енергію електронів, як зміна матеріалу мішені буде впливати на струм і енергію електронів <br/> Опишіть, як ці результати призводять до фотонової моделі світла: напр. аргументуйте, чому тільки фотонами світла можна пояснити, чому, коли світло падає на метал, але струму немає, збільшення частоти світла призведе до появи струму, але і збільшення інтенсивності світла, або напруги між пластинами не буде призводити до появи струму.","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=uk","simPageUrl":"/uk/simulations/photoelectric","teachersGuide":"/teachers-guide/photoelectric-guide_uk.pdf","title":"Фотоефект"},"vi":{"description":"Quan sát cách ánh sáng làm bật điện tử ra khỏi kim loại và tái tạo thí nghiệm đã khai sinh Cơ học lượng tử.","downloadUrl":"/sims/photoelectric/photoelectric_vi.jar","hasPrototype":false,"id":1223,"isCheerpj":true,"learningGoals":"Mô tả thí nghiệm của hiệu ứng quang điện.<br/>Tiên đoán đúng kết quả thí nghiêm: thí dụ như sự thay đổi cường độ dòng điện và năng lượng điện tử khi thay đổi cường độ ánh sáng, bước sóng ánh sáng, hiệu thế, chất làm cathode...<br/>Mô tả việc xây dựng mô hình photon của ánh sáng dựa trên những kết quả này: thí dụ như chỉ có mô hình photon mới giải thích được sự xuất hiện dòng quang điện khi thay đổi bước sóng ánh sáng...","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=vi","simPageUrl":"/vi/simulations/photoelectric","title":"Hiệu ứng Quang điện"},"zh_CN":{"description":"看光线如何敲击电子关闭金属靶,并重新创建催生量子力学领域的实验。","downloadUrl":"/sims/photoelectric/photoelectric_zh_CN.jar","hasPrototype":false,"id":2815,"isCheerpj":true,"learningGoals":"可视化和描述光电效应实验。<br/>正确预测的光电效应实验的结果。例如:如何改变的光的强度影响电流和电子的能量,如何改变光的波长影响电流和电子的能量,如何改变光的电压影响电流和电子的能量,如何改变靶的材料影响电流和电子的能量。<br/>描述这些结果如何导致光的光子模型:例如:认为只有光的光子模型可以解释为何当光照射在没有电流的金属,提高频率将产生一个电流,但增加光的强度或所述板之间的电压不会产生电流。","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=zh_CN","simPageUrl":"/zh_CN/simulations/photoelectric","title":"光电效应"},"zh_TW":{"description":"觀察電子是如何被光撞擊離開金屬靶,並重現產生量子力場的實驗。<br/><br/>翻譯者:<br/>謝祿適 (2009)<br/>江易原 (2010)","downloadUrl":"/sims/photoelectric/photoelectric_zh_TW.jar","hasPrototype":false,"id":600,"isCheerpj":true,"learningGoals":"●想像並形容光電效應的實驗<br/>●正確的預測光電效應的結果:意即改變光強度會怎麼改變電流和電子的能量,改變光波長會如何改變電流和電子的能量,改變光電壓會怎麼改變電流和電子的能量,改變靶材會怎麼改變電流和電子的能量<br/>●描述這些光子模型造成的結果:意即討論只有一種光子模型能夠解釋,當光射向這塊金屬但沒有電流時,增加頻率●就能造成電流,但是增加光強度或光電壓就不會有電流產生","runUrl":"/sims/cheerpj/photoelectric/latest/photoelectric.html?simulation=photoelectric&locale=zh_TW","simPageUrl":"/zh_TW/simulations/photoelectric","title":"Photoelectric Effect 光電效應"}},"lowGradeLevel":2,"lreTerms":[],"name":"photoelectric","phetStudioPublicationTime":"","phetioVersion":"","prototypeTime":0,"relatedSimulations":[],"scienceLiteracyMapKeys":["SMS-MAP-1364"],"secondaryAlignmentIds":[],"subjects":[4,9,10,13,19,20],"topicIds":[52,62,79],"updateTime":1454353446920}],"type":0,"version":{"dev":0,"major":1,"minor":10,"revision":72226,"string":"1.10.0","timestamp":1361383424}}]}}