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Publikační činnost
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Typ záznamu:
stať ve sborníku (D)
Domácí pracoviště:
Katedra informačních a komunikačních technologií (45080)
Název:
Use of Computer Simulation in Learning Process
Citace
Nagyová, I. Use of Computer Simulation in Learning Process.
In:
DIVAI 2016: DIVAI 2016 11th International Scientific Conference on Distance Learning in Applied Informatics 2016-05-02 Štúrovo.
Štúrovo: Constantine the Philosopher University in Nitra, 2016. s. 375-383. ISBN 978-80-7552-249-8.
Podnázev
Rok vydání:
2016
Obor:
Pedagogika a školství
Počet stran:
9
Strana od:
375
Strana do:
383
Forma vydání:
Tištená verze
Kód ISBN:
978-80-7552-249-8
Kód ISSN:
2464-7470
Název sborníku:
DIVAI 2016 11th International Scientific Conference on Distance Learning in Applied Informatics
Sborník:
Mezinárodní
Název nakladatele:
Constantine the Philosopher University in Nitra
Místo vydání:
Štúrovo
Stát vydání:
Sborník vydaný v zahraničí
Název konference:
DIVAI 2016
Místo konání konference:
Štúrovo
Datum zahájení konference:
Typ akce podle státní
příslušnosti účastníků akce:
Evropská akce
Kód UT WoS:
000386971000032
EID:
Klíčová slova anglicky:
Computer simulation, teaching, information processing, algorithmic thinking.
Popis v původním jazyce:
Models and simulators are one of the forms of digital technology, which supports the learning process. A model enables learning through discovering and the construction of hypotheses. The hypotheses can be subsequently verified due to the possibility of working with simulators and observing the behaviour of modelled objects and their mutual relationships. As a result, the acquired knowledge can be accommodated into the learning structure of an individual. The paper demonstrates the possibilities of constructivist instruction in the field of astronomy aimed at the relative movements of the Sun and the Earth. The simulation of a planetarium in the environment of the Stellarium computer program enables the creation of didactic situations in which students learn about their na?ve pre-concepts. In the Stellarium environment, students can observe and verify these pre-concepts from various points of view ? as inhabitants of the individual planets of the Solar System or as outside observers. The rooted knowledge (pre-concepts) and the inability to approach it from different points of view need to be overcome through a conscious activity and consistent observation in the Stellarium environment. Experiments and various measurements can be conducted in the environment, which leads to the acquisition of data that can be used for further processing and verification of the established hypotheses. In order for the reconstructed and newly created pre-concepts to be real and true. Observation of the movements of celestial bodies helps develop students? spatial imagination. Moreover, working in the virtual planetarium environment contributes to the development of an algorithmic approach to problem solving.
Popis v anglickém jazyce:
Seznam ohlasů
Ohlas
R01:
RIV/61988987:17450/16:A1701H83
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