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Erschienen in: Quality & Quantity 6/2018

22.04.2017

Building, coding and programming 3D models via a visual programming environment

verfasst von: Ana Mª Pinto-Llorente, Sonia Casillas-Martín, Marcos Cabezas-González, Francisco José García-Peñalvo

Erschienen in: Quality & Quantity | Ausgabe 6/2018

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Abstract

This paper presents the findings of a study conducted in the state-funded Infant, Primary and Secondary School Santísima Trinidad in Salamanca. The main objectives of the research were, to evaluate the use of the visual programming environment, Lego Education WeDo, in natural science and to know the benefits of the use of this tool to teach abstract concepts, solve problems and motivate students. In order to achieve these objectives, we used the case study method since we focused on individuals who represented the phenomenon of our interest, and explored and investigated in depth the phenomenon in its natural context bounded by time and space. In the research were involved a teacher and fifty-two students of 4th grade of primary education. The study found that the project developed was effective to help students to achieve the learning objectives of the unit, and also to begin building, coding and programming 3D models. The research showed the teacher’ fundamental role as a guide and students’ active role as builders, programmers, or presenters. There were evidences of the possibilities offered to acquire the skills of critical thinking, creative thinking, problem solving, reflection, collaboration, communication, and time management. Due to the positive results obtained in this study, it is recommended to incorporate computational thinking in primary education and in core content areas since it is fundamental in the current society.

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Literatur
Zurück zum Zitat Ackermann, E.: Perspective-taking and object construction: Two keys to learning. In: Kafai, J., Resnick, M. (eds.) Constructionism in Practice: Designing, Thinking, and Learning in a Digital World, pp. 25–37. Lawrence Erlbaun Publishers, Mahwah (1996) Ackermann, E.: Perspective-taking and object construction: Two keys to learning. In: Kafai, J., Resnick, M. (eds.) Constructionism in Practice: Designing, Thinking, and Learning in a Digital World, pp. 25–37. Lawrence Erlbaun Publishers, Mahwah (1996)
Zurück zum Zitat Ackermann, E.: Constructing knowledge and transforming the world. In: Tokoro, M., Steels, L. (eds.) A Learning Zone of One’s Own: Sharing Representations and Flow in Collaborative Learning Environments, pp. 15–37. IOS Press, Washington, DC (2004) Ackermann, E.: Constructing knowledge and transforming the world. In: Tokoro, M., Steels, L. (eds.) A Learning Zone of One’s Own: Sharing Representations and Flow in Collaborative Learning Environments, pp. 15–37. IOS Press, Washington, DC (2004)
Zurück zum Zitat Ackermann, E., Gauntlett, D., Weckstrom, C.: Defining Systematic Creativity: Explaining the Nature of Creativity and How the LEGO System of Play Relates to it. The LEGO Learning Institute, Billund (2009) Ackermann, E., Gauntlett, D., Weckstrom, C.: Defining Systematic Creativity: Explaining the Nature of Creativity and How the LEGO System of Play Relates to it. The LEGO Learning Institute, Billund (2009)
Zurück zum Zitat Atmatzidou, S., Demetriadis, S.: Evaluating the role of collaboration scripts as group guiding tools in activities of eduational robotics. In: Proceedings of 2012 IEEE 12th International Conference on Advanced Learning Technologies (ICALT), pp. 298–302 (2012) Atmatzidou, S., Demetriadis, S.: Evaluating the role of collaboration scripts as group guiding tools in activities of eduational robotics. In: Proceedings of 2012 IEEE 12th International Conference on Advanced Learning Technologies (ICALT), pp. 298–302 (2012)
Zurück zum Zitat Barak, M., Zadok, Y.: Robotics projects and learning concepts in science, technology and problem solving. Int. J. Technol. Des. Educ. 19, 289–307 (2009)CrossRef Barak, M., Zadok, Y.: Robotics projects and learning concepts in science, technology and problem solving. Int. J. Technol. Des. Educ. 19, 289–307 (2009)CrossRef
Zurück zum Zitat Basawapatna, A.R. et al.: Using scalable game design to teach computer science from middle school to graduate school. In: Proceedings of the 15th Annual ACM Conference on Innovation and Technology in Computer Science Education, pp. 26–30 (2010). doi:10.1145/1822090.1822154 Basawapatna, A.R. et al.: Using scalable game design to teach computer science from middle school to graduate school. In: Proceedings of the 15th Annual ACM Conference on Innovation and Technology in Computer Science Education, pp. 26–30 (2010). doi:10.​1145/​1822090.​1822154
Zurück zum Zitat Bundy, A.: Computational thinking is pervasive. J. Sci. Pract. Comput. 1, 67–69 (2007) Bundy, A.: Computational thinking is pervasive. J. Sci. Pract. Comput. 1, 67–69 (2007)
Zurück zum Zitat Butler-Kisber, L.: Editorial. Learn. Landsc. 6, 9–17 (2013) Butler-Kisber, L.: Editorial. Learn. Landsc. 6, 9–17 (2013)
Zurück zum Zitat Castledine, A., Chalmers, C.: LEGO robotics: an authentic problem solving tool? Des. Technol. Educ. 16, 19–27 (2011) Castledine, A., Chalmers, C.: LEGO robotics: an authentic problem solving tool? Des. Technol. Educ. 16, 19–27 (2011)
Zurück zum Zitat Cuny, J., Snyder, L. & Wing, J.M.: Demystifying computational thinking for noncomputer scientists. Work in progress (2010) Cuny, J., Snyder, L. & Wing, J.M.: Demystifying computational thinking for noncomputer scientists. Work in progress (2010)
Zurück zum Zitat Duffy, T.M., Cunningham, D.J.: Constructivism: implications for the design and delivery of instruction. In: Jonassen, D.H. (ed.) Handbook of Research for Educational Communications and Technology, pp. 170–198. Macmillan Library Reference, New York (1996) Duffy, T.M., Cunningham, D.J.: Constructivism: implications for the design and delivery of instruction. In: Jonassen, D.H. (ed.) Handbook of Research for Educational Communications and Technology, pp. 170–198. Macmillan Library Reference, New York (1996)
Zurück zum Zitat Elkin, M., Sullivan, A., Bers, M.U.: Implementing a robotics curriculum in an early childhood Mon- tessori classroom. J. Inf. Technol. Educ. Innov. Pract. 13, 153–169 (2014) Elkin, M., Sullivan, A., Bers, M.U.: Implementing a robotics curriculum in an early childhood Mon- tessori classroom. J. Inf. Technol. Educ. Innov. Pract. 13, 153–169 (2014)
Zurück zum Zitat Espino, E.E., González, C.S.: Estudio sobre diferencias de género en las competencias y las estrategias educativas para el desarrollo del pensamiento computacional. Revista de Educación a Distancia (2015). doi:10.6018/red/46/12 CrossRef Espino, E.E., González, C.S.: Estudio sobre diferencias de género en las competencias y las estrategias educativas para el desarrollo del pensamiento computacional. Revista de Educación a Distancia (2015). doi:10.​6018/​red/​46/​12 CrossRef
Zurück zum Zitat Flores, A.: Desarrollo del pensamiento computacional en la formación en matemática discreta. Lámpsakos 5, 28–33 (2011)CrossRef Flores, A.: Desarrollo del pensamiento computacional en la formación en matemática discreta. Lámpsakos 5, 28–33 (2011)CrossRef
Zurück zum Zitat García-Peñalvo, F.J.: What computational thinking is. J. Inf. Technol. Res. 9, v–viii (2016a) García-Peñalvo, F.J.: What computational thinking is. J. Inf. Technol. Res. 9, v–viii (2016a)
Zurück zum Zitat García-Peñalvo, F.J.: Proyecto TACCLE3-Coding. In: García-Peñalvo, F.J., Mendes, J.A. (eds.) XVIII Simposio Internacional de Informática Educativa, SIIE 2016, pp. 187–189. Ediciones Universidad de Salamanca, Salamanca (2016b) García-Peñalvo, F.J.: Proyecto TACCLE3-Coding. In: García-Peñalvo, F.J., Mendes, J.A. (eds.) XVIII Simposio Internacional de Informática Educativa, SIIE 2016, pp. 187–189. Ediciones Universidad de Salamanca, Salamanca (2016b)
Zurück zum Zitat García-Peñalvo, F.J.: Presentación del Proyecto TACCLE3 Coding. V Congreso español de informática. Workshop Educación en Informática Sub 18(EI<18), 14–16 (2016c) García-Peñalvo, F.J.: Presentación del Proyecto TACCLE3 Coding. V Congreso español de informática. Workshop Educación en Informática Sub 18(EI<18), 14–16 (2016c)
Zurück zum Zitat García-Peñalvo, F.J: A brief introduction to TACCLE 3—Coding European Project. In: XVIII International Symposium on Computers and Education—SIIE 2016, pp. 14–16 (2016d) García-Peñalvo, F.J: A brief introduction to TACCLE 3—Coding European Project. In: XVIII International Symposium on Computers and Education—SIIE 2016, pp. 14–16 (2016d)
Zurück zum Zitat García-Valcárcel, A.: Investigación educativa centrada en estudio de casos: evaluación y seguimiento de proyectos de aprendizaje colaborativo mediado por TIC en el ámbito escolar. In: García-Valcárcel, A. (coord.) Proyectos de trabajo colaborativo con TIC, pp. 31–41. Editorial Síntesis, Madrid (2015) García-Valcárcel, A.: Investigación educativa centrada en estudio de casos: evaluación y seguimiento de proyectos de aprendizaje colaborativo mediado por TIC en el ámbito escolar. In: García-Valcárcel, A. (coord.) Proyectos de trabajo colaborativo con TIC, pp. 31–41. Editorial Síntesis, Madrid (2015)
Zurück zum Zitat Ghitis, T., Alba, J.A.: Los robots llegan a las aulas. Revista Infancias imágenes 13, 143–147 (2014) Ghitis, T., Alba, J.A.: Los robots llegan a las aulas. Revista Infancias imágenes 13, 143–147 (2014)
Zurück zum Zitat Goikhman, A. et al.: Designing collaborations: could design probes contribute to better communication between collaborators? In: TEEM’16: Proceedings of the Fourth International Conference on Technological Ecosystems for Enhancing Multiculturality, pp. 1219–1222 (2016). doi:10.1145/3012430.3012431 Goikhman, A. et al.: Designing collaborations: could design probes contribute to better communication between collaborators? In: TEEM’16: Proceedings of the Fourth International Conference on Technological Ecosystems for Enhancing Multiculturality, pp. 1219–1222 (2016). doi:10.​1145/​3012430.​3012431
Zurück zum Zitat Hafner, C.A., et al.: Digital literacies and language learning. Lang. Learn. Technol. 19, 1–7 (2015) Hafner, C.A., et al.: Digital literacies and language learning. Lang. Learn. Technol. 19, 1–7 (2015)
Zurück zum Zitat Kazimoglu, C., Kiernan, M., Bacon, L., Mackinnon, L.: Understanding computational thinking before programming: developing guidelines for the design of games to learn introductory programming through game-play. Int. J. Game-Based Learn. (IJGBL) (2011). doi:10.4018/ijgbl.2011070103 CrossRef Kazimoglu, C., Kiernan, M., Bacon, L., Mackinnon, L.: Understanding computational thinking before programming: developing guidelines for the design of games to learn introductory programming through game-play. Int. J. Game-Based Learn. (IJGBL) (2011). doi:10.​4018/​ijgbl.​2011070103 CrossRef
Zurück zum Zitat Kolb, D.A.: Experiential Learning: Experience as the Source of Learning and Development. Prentice-Hall, New Jersey (1984) Kolb, D.A.: Experiential Learning: Experience as the Source of Learning and Development. Prentice-Hall, New Jersey (1984)
Zurück zum Zitat Lamoyi, L.B.: La robótica Lego Mindstorms: un recurso didáctico para fortalecer el pensamiento lógico matemático. Perspectiva docente. 47, 12–17 (2012) Lamoyi, L.B.: La robótica Lego Mindstorms: un recurso didáctico para fortalecer el pensamiento lógico matemático. Perspectiva docente. 47, 12–17 (2012)
Zurück zum Zitat Lee, I., et al.: Computational thinking for youth in practice. ACM Inroads 2, 32–37 (2011)CrossRef Lee, I., et al.: Computational thinking for youth in practice. ACM Inroads 2, 32–37 (2011)CrossRef
Zurück zum Zitat Liu, J., Wang, L.: Computational Thinking in Discrete Mathematics. In: IEEE Xplore Conference: 2nd International Workshop on Education Technology and Computer Science, pp. 413–416 (2010). doi:10.1109/ETCS.2010.200 Liu, J., Wang, L.: Computational Thinking in Discrete Mathematics. In: IEEE Xplore Conference: 2nd International Workshop on Education Technology and Computer Science, pp. 413–416 (2010). doi:10.​1109/​ETCS.​2010.​200
Zurück zum Zitat Llorens, F.: Dicen por ahí… que la nueva alfabetización pasa por la programación. Revista de Investigación en Docencia Universitaria de la Informática. 8, 11–14 (2015) Llorens, F.: Dicen por ahí… que la nueva alfabetización pasa por la programación. Revista de Investigación en Docencia Universitaria de la Informática. 8, 11–14 (2015)
Zurück zum Zitat Lu, J.J., Fletcher, G.H.L.: Thinking about computational thinking. In: SIGCSE’09: Proceedings of the 40th ACM Technical Symposium on Computer Science Education, pp. 260–264 (2009) Lu, J.J., Fletcher, G.H.L.: Thinking about computational thinking. In: SIGCSE’09: Proceedings of the 40th ACM Technical Symposium on Computer Science Education, pp. 260–264 (2009)
Zurück zum Zitat Mayerová, K.: Pilot activities: LEGO WeDo at primary school. In: Proceedings of 3rd International Workshop Teaching Robotics, Teaching with Robotics: Integrating Robotics in School Curriculum, pp. 32–39 (2012) Mayerová, K.: Pilot activities: LEGO WeDo at primary school. In: Proceedings of 3rd International Workshop Teaching Robotics, Teaching with Robotics: Integrating Robotics in School Curriculum, pp. 32–39 (2012)
Zurück zum Zitat Merriam, S.B.: Case Study Research in Education: a Qualitative Approach. Jossey Bass, San Francisco (1988) Merriam, S.B.: Case Study Research in Education: a Qualitative Approach. Jossey Bass, San Francisco (1988)
Zurück zum Zitat Merriam, S.B.: Qualitative Research and Case Study Applications in Education. Jossey-Bass Publishers, San Francisco (1998) Merriam, S.B.: Qualitative Research and Case Study Applications in Education. Jossey-Bass Publishers, San Francisco (1998)
Zurück zum Zitat Papert, S.: Mindstorms: Children, Computers and Powerful Ideas. Basic books, New York (1980) Papert, S.: Mindstorms: Children, Computers and Powerful Ideas. Basic books, New York (1980)
Zurück zum Zitat Pérez, G.: Investigación cualitativa: Retos, interrogantes y métodos. La Muralla, Madrid (1994) Pérez, G.: Investigación cualitativa: Retos, interrogantes y métodos. La Muralla, Madrid (1994)
Zurück zum Zitat Perkovic, L. et al.: A framework for computational thinking across the curriculum. In: Proceedings of the Fifteenth Annual Conference on Innovation and Technology in Computer Science Education, pp. 123–127 (2010) Perkovic, L. et al.: A framework for computational thinking across the curriculum. In: Proceedings of the Fifteenth Annual Conference on Innovation and Technology in Computer Science Education, pp. 123–127 (2010)
Zurück zum Zitat Pinto-Llorente, A.M., et al.: Students’ perceptions and attitudes towards asynchronous technological tools in blended-learning training to improve grammatical competence in english as a second language. Comput. Hum. Behav. (2016a). doi:10.1016/j.chb.2016.05.071 CrossRef Pinto-Llorente, A.M., et al.: Students’ perceptions and attitudes towards asynchronous technological tools in blended-learning training to improve grammatical competence in english as a second language. Comput. Hum. Behav. (2016a). doi:10.​1016/​j.​chb.​2016.​05.​071 CrossRef
Zurück zum Zitat Pinto-Llorente, A.M., Casillas-Martín, S., Cabezas-Martín, M., García-Peñalvo, F.J.: Developing computational thinking via the visual programming tool: Lego Education WeDo. In: TEEM’16: Proceedings of the Fourth International Conference on Technological Ecosystems for Enhancing Multiculturality, pp. 45–50 (2016b). doi:10.1145/3012430.3012495 Pinto-Llorente, A.M., Casillas-Martín, S., Cabezas-Martín, M., García-Peñalvo, F.J.: Developing computational thinking via the visual programming tool: Lego Education WeDo. In: TEEM’16: Proceedings of the Fourth International Conference on Technological Ecosystems for Enhancing Multiculturality, pp. 45–50 (2016b). doi:10.​1145/​3012430.​3012495
Zurück zum Zitat Qualls, J.A., Sherrell, L.B.: Why computational thinking should be integrated into the curriculum. J. Comput. Sci. Coll. 25, 66–71 (2010) Qualls, J.A., Sherrell, L.B.: Why computational thinking should be integrated into the curriculum. J. Comput. Sci. Coll. 25, 66–71 (2010)
Zurück zum Zitat Roschelle, J., Teasley, S.D.: The construction of shared knowledge in collaborative problem solving. In: O’Malley, C. (ed.) Computer-Supported Collaborative Learning, pp. 69–97. Springer, Berlin (1995)CrossRef Roschelle, J., Teasley, S.D.: The construction of shared knowledge in collaborative problem solving. In: O’Malley, C. (ed.) Computer-Supported Collaborative Learning, pp. 69–97. Springer, Berlin (1995)CrossRef
Zurück zum Zitat Sorbi, L. et al.: An innovative program to teach robotics at the primary school. In: Proceedings of the Conference-Workshop Bio-inspired Robotics, pp. 13–18 (2014) Sorbi, L. et al.: An innovative program to teach robotics at the primary school. In: Proceedings of the Conference-Workshop Bio-inspired Robotics, pp. 13–18 (2014)
Zurück zum Zitat Valverde, J., Fernández, M.R., Garrido, M.C.: El pensamiento computacional y las nuevas ecologías del aprendizaje. Revista de Educación a Distancia (2015). doi:10.6018/red/46/3 CrossRef Valverde, J., Fernández, M.R., Garrido, M.C.: El pensamiento computacional y las nuevas ecologías del aprendizaje. Revista de Educación a Distancia (2015). doi:10.​6018/​red/​46/​3 CrossRef
Zurück zum Zitat Vygotsky, L.S.: Mind in Society: The Development of Higher Psychological Processes. Harvard University Press, Cambridge, Massachusetts (1978) Vygotsky, L.S.: Mind in Society: The Development of Higher Psychological Processes. Harvard University Press, Cambridge, Massachusetts (1978)
Zurück zum Zitat Yin, R.K.: Case Study Research: Design and Methods. Sage Publications, Beverly Hills (1984) Yin, R.K.: Case Study Research: Design and Methods. Sage Publications, Beverly Hills (1984)
Zurück zum Zitat Yin, R.K.: Case Study Research: Design and Methods. Applied Social Research Series. Sage, London (1989) Yin, R.K.: Case Study Research: Design and Methods. Applied Social Research Series. Sage, London (1989)
Zurück zum Zitat Zapata-Ros, M.: Pensamiento computacional: una nueva alfabetización digital. Revista de Educación a Distancia (2015). doi:10.6018/red CrossRef Zapata-Ros, M.: Pensamiento computacional: una nueva alfabetización digital. Revista de Educación a Distancia (2015). doi:10.​6018/​red CrossRef
Metadaten
Titel
Building, coding and programming 3D models via a visual programming environment
verfasst von
Ana Mª Pinto-Llorente
Sonia Casillas-Martín
Marcos Cabezas-González
Francisco José García-Peñalvo
Publikationsdatum
22.04.2017
Verlag
Springer Netherlands
Erschienen in
Quality & Quantity / Ausgabe 6/2018
Print ISSN: 0033-5177
Elektronische ISSN: 1573-7845
DOI
https://doi.org/10.1007/s11135-017-0509-4

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