Literatura académica sobre el tema "Geogebra"
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Artículos de revistas sobre el tema "Geogebra"
Cruz, Marcos Paulo Mesquita da, Everton Nogueira Silva, Ivan de Oliveira Holanda Filho y Lorena Maria Gomes Bastos. "GeoGebra". Revista do Instituto GeoGebra Internacional de São Paulo 11, n.º 1 (7 de junio de 2022): 022–36. http://dx.doi.org/10.23925/2237-9657.2022.v11i1p022-036.
Texto completoCahyono, Budi y Eva Khoirun Nisa. "PEMANFAATAN SOFTWARE GEOGEBRA UNTUK MENUNJANG PENCAPAIAN STANDAR KOMPETENSI GURU MATEMATIKA MTS DI KOTA SEMARANG". At-Taqaddum 11, n.º 1 (8 de agosto de 2019): 95. http://dx.doi.org/10.21580/at.v11i1.3802.
Texto completoPhilemon, Nxumalo Mfanasibili, Admire Chibisa y Maria Siwela Mabusela. "Acceptance of the GeoGebra Application in Learning Circle Theorems". International Journal of Learning, Teaching and Educational Research 21, n.º 12 (30 de diciembre de 2022): 1–20. http://dx.doi.org/10.26803/ijlter.21.12.1.
Texto completoLosi, Nanda Tia, Mukhtar Mukhtar y Waminton Rajagukguk. "Perbedaan Kemampuan Komunikasi Matematis Siswa yang diajar Menggunakan Model Problem Based Learning dan Guided Discovery Learning Berbantuan Geogebra ditinjau dari Gender". Paradikma:Jurnal Pendidikan Matematika 14, n.º 1 (31 de julio de 2021): 88–95. http://dx.doi.org/10.24114/paradikma.v14i1.27136.
Texto completoPurwasih, Ratni, Ratna Sariningsih y Indah Puspita Sari. "SELF EFFICACY TERHADAP KEMAMPUAN HIGH ORDER THINKING MATHEMATICS SISWA MELALUI PEMBELAJARAN BERBANTUAN SOFTWERE GEOGEBRA". AKSIOMA: Jurnal Program Studi Pendidikan Matematika 9, n.º 1 (31 de marzo de 2020): 166. http://dx.doi.org/10.24127/ajpm.v9i1.2663.
Texto completoNasution, Syaiful Hamzah, Susy Kuspambudi Andaini, Rini Nurhakiki, Hendro Permadi y Slamet Slamet. "WORKSHOP MEDIA PEMBELAJARAN MATEMATIKA BERBASIS ICT MGMP MATEMATIKA SMA KABUPATEN TRENGGALEK". PEDULI: Jurnal Ilmiah Pengabdian Pada Masyarakat 3, n.º 2 (19 de octubre de 2019): 21–27. http://dx.doi.org/10.37303/peduli.v3i2.123.
Texto completoJANCHESKI, Metodija y Sofija JANCHESKA. "Multidisciplinary, Multilingual, Multilevel and Multipurpose Usage of GeoGebra Software in Education". Olympiads in Informatics 13 (13 de julio de 2019): 41–56. http://dx.doi.org/10.15388/ioi.2019.04.
Texto completoÖÇAL, MEHMET FATIH, TUĞRUL KAR, GÜRSEL GÜLER y ALI SABRI İPEK. "Comparison of prospective mathematics teachers’ problem posing abilities in paper-pencil test and on dynamic geometry environment in terms of creativity". Journal of Research in Mathematics Education 9, n.º 3 (24 de octubre de 2020): 243. http://dx.doi.org/10.17583/redimat.2020.3879.
Texto completoTelaumbanua, Yakin Niat. "ANALISIS PEMBELAJARAN DENGAN MENGGUNAKAN SOFTWARE GEOGEBRA DALAM PEMBELAJARAN MATEMATIKA". J-PiMat : Jurnal Pendidikan Matematika 2, n.º 1 (6 de mayo de 2020): 131–38. http://dx.doi.org/10.31932/j-pimat.v2i1.683.
Texto completoMoncada Andino, Clara Regina. "Construcción de superficies no convencionales con GeoGebra 3D". Revista do Instituto GeoGebra Internacional de São Paulo. ISSN 2237-9657 9, n.º 1 (19 de abril de 2020): 90–100. http://dx.doi.org/10.23925/2237-9657.2020.v9i1p90-100.
Texto completoTesis sobre el tema "Geogebra"
Larsson, Catarina. "IKT-vertyget GeoGebra. : Hur GeoGebra utvecklar elevers förståelse för andragradsfunktioner". Thesis, Linnéuniversitetet, Institutionen för matematikdidaktik (MD), 2013. http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-30142.
Texto completoThe purpose of this study was to examine whether students develop an understanding of quadratic functions using ICT tool GeoGebra. The study was conducted as a singular case study of six high school students who studying course 2c. The students worked in pairs on a task to see what happens to the graph when changing value and sign of the variables in the expression y = - a (x + b)2 – c. Method used in the analysis of material was a combination of Ainsworths (2006) theoretical framework viewing function of the mathematical process ability to support learning and Duval (2006 ) framework of transformations and representations within and between registers. The study concluded that there are both advantages and disadvantages of using GeoGebra. The disadvantage is that the program invites you to trial and error, while the benefits are that students analyse and reflect during the activity in GeoGebra. The students did both conventions and treatments with help from GeoGebra.
Mäkiö, H. (Hannu). "Geogebra derivaattakurssin työvälineenä". Master's thesis, University of Oulu, 2015. http://urn.fi/URN:NBN:fi:oulu-201506061824.
Texto completoBastos, Leonardo de Mattos [UNESP]. "Números complexos e geogebra". Universidade Estadual Paulista (UNESP), 2013. http://hdl.handle.net/11449/92411.
Texto completoEste trabalho está inserido no contexto do Programa de Mestrado Pro ssional de Matemática em Rede Nacional - PROFMAT e traz uma resenha de uma teoria a ser ensinada no Ensino Básico, geralmente na terceira série do Ensino Médio, a saber, a teoria dos números complexos. Além disso, enfoca a necessidade de diversi cadas abordagens didáticas, especialmente com uso de novas Tecnologias de Informação e Comunicação, para superar algumas di culdades com o ensino que, muitas vezes, decorrem de uma apresentação excessivamente formal do tema. A proposta de algumas atividades em ambiente computacional elaboradas com suporte do software livre (GUI) Geogebra está inclusa
This work is in the context of Professional Program Master of Mathematics in National Network - PROFMAT and brings an overview of the theory to be taught in Primary School, usually in the third grade of High School. It also focuses on the need for diverse didactic approaches, especially with the use of new Information and Communication Technologies, to overcome some di culties with the teaching of complex numbers, which arise many times stem from an overly formal presentation of the topic. The proposal of activities in some computing environment developed with support of free software (GUI) Geogebra is included
Bastos, Leonardo de Mattos. "Números complexos e geogebra /". Rio Claro, 2013. http://hdl.handle.net/11449/92411.
Texto completoBanca: Marta Cilene Gadotti
Banca: Ligia Lais Fêmina
O PROFMAT - Programa de Mestrado Profissional em Matemática em Rede Nacional é coordenado pela Sociedade Brasileira de Matemática e realizado por uma rede de Instituições de Ensino Superior.
Resumo: Este trabalho está inserido no contexto do Programa de Mestrado Pro ssional de Matemática em Rede Nacional - PROFMAT e traz uma resenha de uma teoria a ser ensinada no Ensino Básico, geralmente na terceira série do Ensino Médio, a saber, a teoria dos números complexos. Além disso, enfoca a necessidade de diversi cadas abordagens didáticas, especialmente com uso de novas Tecnologias de Informação e Comunicação, para superar algumas di culdades com o ensino que, muitas vezes, decorrem de uma apresentação excessivamente formal do tema. A proposta de algumas atividades em ambiente computacional elaboradas com suporte do software livre (GUI) Geogebra está inclusa
Abstract: This work is in the context of Professional Program Master of Mathematics in National Network - PROFMAT and brings an overview of the theory to be taught in Primary School, usually in the third grade of High School. It also focuses on the need for diverse didactic approaches, especially with the use of new Information and Communication Technologies, to overcome some di culties with the teaching of complex numbers, which arise many times stem from an overly formal presentation of the topic. The proposal of activities in some computing environment developed with support of free software (GUI) Geogebra is included
Mestre
Olsson, Jan. "GeoGebra, Enhancing Creative Mathematical Reasoning". Doctoral thesis, Umeå universitet, Institutionen för tillämpad utbildningsvetenskap, 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:umu:diva-133050.
Texto completoDet övergripande syftet med avhandlingen har varit att nå insikter i hur man kan designa en didaktisk situation inklusive en dynamisk programvara (GeoGebra) för att stödja elevernas lärande genom matematisk problemlösning och kreativt resonemang. En bärande idé har varit att elever som själva konstruerar lösningsmetoder till problembaserade uppgifter lär sig matematik bättre än elever som får en metod att följa. Resultaten visar att GeoGebra är ett stöd vid konstruerandet av lösningsmetoder och att elever då också resonerar kreativt. Det vill säga, de skapar en för dem en ny resonemangssekvens som innehåller en lösningsmetod som stöds av argument förankrade i matematik. Idén med att elever på egen hand konstruerar lösningen på uppgifter har även belysts genom att jämföra med elever som löser uppgifter där de får vägledning till lösningsmetoden. Resultaten visar att elever som får en lösningsmetod inte resonerar kreativt, de utnyttjar inte GeoGebras potential att stödja ett undersökande arbetssätt, och de lär sig mindre av den matematik som ingår i uppgifterna. Denna avhandling består av 4 artiklar och en kappa. De fyra artiklarna är: I. Granberg, C., & Olsson, J. (2015). ICT-supported problem solving and collaborative creative reasoning: Exploring linear functions using dynamic mathematics software. The Journal of Mathematical Behavior, 37, 48-62. II. Olsson, J. (2017). The Contribution of Reasoning to the Utilization of Feedback from Software When Solving Mathematical Problems. International Journal of Science and Mathematics Education, 1-21. III. Olsson, J. Relations between task design and students’ utilization of GeoGebra. Mathematical Thinking and Learning. (Under review) IV. Olsson, J., & Granberg, C. Dynamic software, problem solving with or without guidelines, and learning outcome. Technology, Knowledge and Learning. (Under review) Artikel 2 och 3 är jag ensam författare till. Det innebär att jag designat studien, planerat och genomfört datainsamling, analyserat data och formulerat slutsatser, samt skrivit texten och korresponderat med tidskrifter. Artikel 1 och 4 har jag skrivit i samarbete med Carina Granberg. Vi bedömer att arbetet med artikel 1 fördelats lika. Allt skrivarbete har fortgått genom åtskilliga granskningar av varandras utkast och diskussioner om slutgiltiga formuleringar. I arbetet med artikel 4 har jag haft huvudansvaret för designen av studien och planering för datainsamlingen. Skrivarbetet har genomförts på samma sätt som i arbetet med artikel 1.
Motta, Ulisses Fernandes. "Geometria plana - um curso no GeoGebra". Universidade Federal de Goiás, 2015. http://repositorio.bc.ufg.br/tede/handle/tede/4838.
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This study is about a proposal of using the GeoGebra software in the geometry course to rst year high school students. The reason for the choice of this software is due to its didactic characteristics which make the studied concepts more accessible to the students. The software was applied, as a suggestion, in the study of angles, triangles, polygons and circumferences mentioning some historical facts and relating the subjects, as far as possible, to other knowledge areas. Parallel to the writing of this work, many of the suggested proposals were worked in class and the nal results were satisfactory. We hope that the reading of this material produces among teachers the will to create new ideas for the use of this and other softwares in class as well as placing the math teaching in a more current perspective through the use of technological tools which are familiar to the students everyday activities.
Este trabalho é uma proposta de uso do software GeoGebra no curso de geometria plana para alunos de 1o ano do ensino médio. A escolha deste software se deu pelas suas características didáticas, que tornam a compreensão dos conceitos trabalhados mais acessíveis aos alunos. O software foi aplicado, como sugestão, no estudo dos ângulos, triângulos, polígonos e circunferência, citando alguns fatos históricos e relacionando os assuntos, quando possível, com outras áreas do conhecimento. Paralelamente à escrita deste trabalho, muitas das propostas sugeridas foram trabalhadas em sala de aula, e os resultados obtidos foram satisfatórios. Espero que a leitura deste material suscite nos professores o desejo de criação de novas ideias para uso deste software e de outros em suas aulas, inserindo o ensino da matemática em uma perspectiva mais atual, utilizando ferramentas tecnológicas que são comuns ao cotidiano dos alunos.
Xavier, Rafael Gomes. "Geometria espacial – um curso com Geogebra". Universidade Federal de Goiás, 2016. http://repositorio.bc.ufg.br/tede/handle/tede/6696.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPES
This paper is a proposal for use of GeoGebra software in geometry course Space for second year high school students. The choice of this software was given by their didactic characteristics that make the understanding of the concepts developed more accessible to students. The software was applied, as suggested in the study of polyhedra, prisms, pyramids, cylinders, cones and spheres. I hope that reading this raise in teachers stuff the desire to create new ideas for using this software and others in their classes, entering the teaching of mathematics in a more current perspective, using technological tools They are common to the daily lives of students.
Este trabalho é uma proposta de uso do software GeoGebra no curso de geometria espacial para alunos de 2º ano do ensino médio. A escolha deste software se deu pelas suas características didáticas, que tornam a compreensão dos conceitos trabalhados mais acessíveis aos alunos. O software foi aplicado, como sugestão, no estudo de poliedros, prismas, pirâmides, cilindros, cones e esferas. Espero que a leitura deste material suscite nos professores o desejo de criação de novas ideias para uso deste software e de outros em suas aulas, inserindo o ensino da matemática em uma perspectiva mais atual, utilizando ferramentas tecnológicas que são comuns ao cotidiano dos alunos.
Marcondes, Talita Melsone. "Geometrias hiperbólicas com uso do geogebra". Universidade Tecnológica Federal do Paraná, 2014. http://repositorio.utfpr.edu.br/jspui/handle/1/852.
Texto completoEste trabalho possui o objetivo de trazer para o contexto do ensino regular (Ensino Médio) as geometrias não-euclidianas que, apesar de estarem contempladas nas Diretrizes Curriculares da Educação Básica, ainda são deixadas de lado pela maioria dos professores. Foram realizadas duas abordagens. Inicialmente é proposta uma abordagem histórica para fornecer a motivação ao estudo das geometrias não-euclidianas. Por fim é proposta uma abordagem utilizando o GeoGebra, um software educacional de geometria, para estudar conceitos básicos da geometria hiperbólica, tais como reta, segmento, ângulo e polígonos.
This work has the purpose of bringing to the context of regular education (Secondary) non- Euclidean geometries, despite being covered in the Basic Education Curriculum Guidelines, are still left aside by most teachers. Two approaches were performed. Initially a historical approach is proposed to provide motivation to the study of non-Euclidean geometries. Finally an approach is proposed using GeoGebra, an educational geometry software to study basic concepts of hyperbolic geometry, such as a line, segment, angle and polygons.
La, Monaca Liliana. "Calcolo numerico ed esplorazioni con geogebra". Master's thesis, Alma Mater Studiorum - Università di Bologna, 2015. http://amslaurea.unibo.it/8771/.
Texto completoBöhm, Josef. "Linking Geometry, Algebra and Calculus with GeoGebra". Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2012. http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-79488.
Texto completoLibros sobre el tema "Geogebra"
Kaenders, Rainer y Reinhard Schmidt, eds. Mit GeoGebra mehr Mathematik verstehen. Wiesbaden: Springer Fachmedien Wiesbaden, 2014. http://dx.doi.org/10.1007/978-3-658-04222-6.
Texto completoKaenders, Rainer y Reinhard Schmidt, eds. Mit GeoGebra mehr Mathematik verstehen. Wiesbaden: Vieweg+Teubner, 2011. http://dx.doi.org/10.1007/978-3-8348-8340-7.
Texto completoVenema, Gerard. Exploring advanced euclidean geometry with GeoGebra. United States]: Mathematical Association of America, 2013.
Buscar texto completoModel-centered learning: Pathways to mathematical understanding using GeoGebra. Rotterdam: Sense Publishers, 2011.
Buscar texto completoReinhard, Schmidt, ed. Mit GeoGebra mehr Mathematik verstehen: Beispiele fu r die Fo rderung eines tieferen Mathematikversta ndnisses aus dem GeoGebra Institut Ko ln/Bonn. Wiesbaden: Vieweg+Teubner Verlag / Springer Fachmedien Wiesbaden GmbH, Wiesbaden, 2011.
Buscar texto completoCosta, Viviana Angélica, ed. Memorias del IV Día GeoGebra Argentina y IX Día GeoGebra Iberoamericano. Facultad de Ingeniería (UNLP), 2021. http://dx.doi.org/10.35537/10915/121426.
Texto completoCapítulos de libros sobre el tema "Geogebra"
Ruppert, Markus, Andreas Bauer, Markus Hohenwarter y Karsten Meyer. "GeoGebra". En Technologien im Mathematikunterricht, 1–37. Wiesbaden: Springer Fachmedien Wiesbaden, 2013. http://dx.doi.org/10.1007/978-3-658-03008-7_1.
Texto completoBurke, Maurice y Paul Kennedy. "Geogebra". En Model-Centered Learning, 57–72. Rotterdam: SensePublishers, 2011. http://dx.doi.org/10.1007/978-94-6091-618-2_5.
Texto completoHelmberg, Gilbert. "GeoGebra". En 77-mal Mathematik für zwischendurch, 295–96. Berlin, Heidelberg: Springer Berlin Heidelberg, 2020. http://dx.doi.org/10.1007/978-3-662-61766-3_75.
Texto completoErb, Roger. "Relativitätstheorie mit GeoGebra". En Für alles eine App, 303–7. Berlin, Heidelberg: Springer Berlin Heidelberg, 2022. http://dx.doi.org/10.1007/978-3-662-63901-6_48.
Texto completoSaliklis, Edmond. "GeoGebra for Arches". En Architectural Structures, 143–57. New York: Routledge, 2022. http://dx.doi.org/10.4324/9781003180913-8.
Texto completoSaliklis, Edmond. "GeoGebra for Trusses". En Architectural Structures, 77–95. New York: Routledge, 2022. http://dx.doi.org/10.4324/9781003180913-5.
Texto completoSaliklis, Edmond. "GeoGebra for Beams". En Architectural Structures, 40–55. New York: Routledge, 2022. http://dx.doi.org/10.4324/9781003180913-3.
Texto completoBarot, Michael. "Beispiel eines CGS: GeoGebra". En Einführung in die hyperbolische Geometrie, 13–15. Wiesbaden: Springer Fachmedien Wiesbaden, 2019. http://dx.doi.org/10.1007/978-3-658-25813-9_3.
Texto completoNovak, Dani, Linda Fahlberg-Stojanovska y Anthony Di Renzo. "Building Simulators with Geogebra". En Model-Centered Learning, 73–89. Rotterdam: SensePublishers, 2011. http://dx.doi.org/10.1007/978-94-6091-618-2_6.
Texto completoAllen, Diem M. "Geogebra in the Classroom". En Pedagogy and Content in Middle and High School Mathematics, 47–48. Rotterdam: SensePublishers, 2017. http://dx.doi.org/10.1007/978-94-6351-137-7_13.
Texto completoActas de conferencias sobre el tema "Geogebra"
Iwama, Fumiya, Yuji Shinoda y Tadashi Takahashi. "Mathematical Proving Using GeoGebra". En ICIET 2020: 2020 8th International Conference on Information and Education Technology. New York, NY, USA: ACM, 2020. http://dx.doi.org/10.1145/3395245.3396450.
Texto completoCaligaris, Marta Graciela, María Elena Schivo, María Rosa Romiti y Matías Sebastián Menchise. "ANALYTIC GEOMETRY WITH GEOGEBRA". En International Conference on Education and New Learning Technologies. IATED, 2016. http://dx.doi.org/10.21125/edulearn.2016.1606.
Texto completoSolvang, Lorena y Jesper Haglund. "GEOGEBRA IN PHYSICS EDUCATION". En 10th International Conference on Education and New Learning Technologies. IATED, 2018. http://dx.doi.org/10.21125/edulearn.2018.2315.
Texto completoLepellere, Maria Antonietta. "Teach Multivariable Functions Through Applications and GeoGebra". En Seventh International Conference on Higher Education Advances. Valencia: Universitat Politècnica de València, 2021. http://dx.doi.org/10.4995/head21.2021.13116.
Texto completoKostić, Valentina y Tanja Sekulić. "Teaching Quadratic Functions in Classroom and Online Using Mathematical Software Tools". En 9th International Scientific Conference Technics and Informatics in Education. University of Kragujevac, Faculty of Technical Sciences Čačak, 2022. http://dx.doi.org/10.46793/tie22.315k.
Texto completoOliveira, Margarida, Suzana Nápoles y José Soeiro. "FORMS AND FORMULAS WITH GEOGEBRA". En 10th annual International Conference of Education, Research and Innovation. IATED, 2017. http://dx.doi.org/10.21125/iceri.2017.0646.
Texto completoVoštinár, Patrik. "GEOGEBRA APPLETS FOR GRAPH THEORY". En International Conference on Education and New Learning Technologies. IATED, 2017. http://dx.doi.org/10.21125/edulearn.2017.0918.
Texto completoDrábeková, Janka. "Several GeoGebra Solutions for Microeconomics". En International Scientific Days 2018. Wolters Kluwer ČR, Prague, 2018. http://dx.doi.org/10.15414/isd2018.s9.01.
Texto completoSuweken, Gede. "STEM Oriented Mathematics Learning with GeoGebra". En Proceedings of the 3rd International Conference on Innovative Research Across Disciplines (ICIRAD 2019). Paris, France: Atlantis Press, 2020. http://dx.doi.org/10.2991/assehr.k.200115.042.
Texto completoKontrová, Lýdia y Daniela Šusteková. "TEACHING WITH GEOGEBRA VERSUS TRADITIONAL METHOD". En 12th International Conference on Education and New Learning Technologies. IATED, 2020. http://dx.doi.org/10.21125/edulearn.2020.1432.
Texto completoInformes sobre el tema "Geogebra"
Pylypenko, Olha S., Tetiana H. Kramarenko y Ivan O. Muzyka. Application of GeoGebra in Stereometry teaching. [б. в.], julio de 2020. http://dx.doi.org/10.31812/123456789/3898.
Texto completoДереза, Ірина Сергіївна y Олена Анатоліївна Іванова. Використання GeoGebra у процесі навчання теми «Похідна та її застосування». Видавничий центр ДВНЗ «Криворізький національний університет», mayo de 2018. http://dx.doi.org/10.31812/0564/2221.
Texto completoКрамаренко, Т. Г. y О. С. Банада. Використання системи динамічної математики GeoGebra в розробці STEM-проектів. [б. в.], mayo de 2018. http://dx.doi.org/10.31812/0564/2302.
Texto completoПилипенко, О. С. y Т. Г. Крамаренко. GeoGebra як засіб розвитку STEM-компетентностей учнів у навчанні математики. КДПУ, 2020. http://dx.doi.org/10.31812/123456789/4542.
Texto completoРашевська, Наталя Василівна, Сергій Олексійович Семеріков y Катерина Іванівна Словак. Інтеграція системи динамічної геометрії GeoGebra в систему дистанційного навчання Moodle. КНУБА, 2013. http://dx.doi.org/10.31812/0564/978.
Texto completoKramarenko, T. H., O. S. Pylypenko y O. Yu Serdiuk. Digital technologies in specialized mathematics education: application of GeoGebra in Stereometry teaching. [б. в.], 2021. http://dx.doi.org/10.31812/123456789/4534.
Texto completoПилипенко, О. С. Використання мобільного додатку 3D calculator GeoGebra з доповненою реальністю у навчанні математики. КЗВО «ДАНО» ДОР», 2020. http://dx.doi.org/10.31812/123456789/4543.
Texto completoOsypova, Nataliia V. y Volodimir I. Tatochenko. Improving the learning environment for future mathematics teachers with the use application of the dynamic mathematics system GeoGebra AR. [б. в.], julio de 2021. http://dx.doi.org/10.31812/123456789/4628.
Texto completoDrushlyak, Marina G., Olena V. Semenikhina, Volodymyr V. Proshkin, Serhii Ya Kharchenko y Tetyana D. Lukashova. Methodology of formation of modeling skills based on a constructive approach (on the example of GeoGebra). [б. в.], junio de 2021. http://dx.doi.org/10.31812/123456789/4450.
Texto completoКрамаренко, Т. Г. Використання мультимедійної дошки у процесі навчання геометричним перетворенням на площині. Математика в сучасній школі, 2013. http://dx.doi.org/10.31812/0564/577.
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