Abstract
This paper describes an educational experience realized in the form of extracurricular workshops involving music technology students of the “V. Gambara” music high school in Brescia (Italy). By means of a participatory prototyping experience, the project aimed at fostering the students awareness and understanding of technological means and their utility . The Discovery of Interactive Spaces project focuses on motion tracking technologies in connection with sound and visual production, as means to provoke reflections on their cultural and societal impact on social utility and inclusion, and artistic expression. To this end, students proposed design concepts, and prototyped sonic interactive experiences. The Discovery of Interactive Spaces is framed within the broader themes of computational thinking and creativity, learning by design, and technology awareness. These themes represent the pillars of technological citizenship, which is considered crucial for the twenty-first century student.
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The European Political Strategy Centre is a research institute established in 2014 by the European Commission with the task of producing strategic analysis and policy advice.
The Partnership for twenty-first century Learning (P21) was founded in 2002 as a coalition bringing together the business community, education leaders, and policymakers with the aim to boost innovation in education. P21 is part of Battelle for Kids since 2018.
The Italian high school classes correspond approximately to 9-12 grades of the American K12 model.
The Stanza Logomotoria (https://www.youtube.com/watch?v=hd3rbsEaLks), Wizefloor (https://www.wizefloor.com/), Smallab (https://www.smallablearning.com/).
OpenPTrack (http://openptrack.org/arts/) and Electrical Walks by Christina Kubisch (https://binged.it/2TRuNmr).
For example, Gesang der Junglinge (K. Stockhausen, 1956), Ritratto di Cittá (L. Berio and B. Maderna, 1955), Thema. Omaggio a Joice (L. Berio, 1958), and Vox 5 (T. Wishart, 1979-86).
References
Barron, B., Darling-Hammond, L. (2008). Teaching for meaningful learning: A review of research on inquiry-based and cooperative learning. book excerpt. George Lucas Educational Foundation
Barrows, H. S. (1996). Problem-based learning in medicine and beyond: A brief overview. New directions for teaching and learning, 1996(68), 3–12.
Boaler, J. (1998). Open and closed mathematics: Student experiences and understandings. Journal for Research in Mathematics Education, 1998, 41–62.
Commission, E. (2019). Ten trends transforming education as we know it. https://ec.europa.eu/epsc/publications/other-publications/10-trends-transforming-education-we-know-it_en. Accessed 11 Dec 2019
Commission, E. (2019). Digital economy and society index (desi) 2019. https://ec.europa.eu/digital-single-market/en/news/digital-economy-and-society-index-desi-2019
Cuny, J., Snyder, L., Wing, J.M. (2010). Demystifying computational thinking for non-computer scientists. Unpublished manuscript in progress, referenced in http://www.cs.cmu.edu/CompThink/resources/TheLinkWing.pdf
Delle Monache, S., & Rocchesso, D. (2014). Bauhaus legacy in research through design: The case of basic sonic interaction design. International Journal of Design, 8(3), 139–154.
Delle Monache, S., & Rocchesso, D. (2019). Sketching sonic interactions. In M. Filimowicz (Ed.), Foundations in Sound Design for Embedded Media, A Multidisciplinary Approach (pp. 79–101). New York: Routledge.
Design, I. Connected worlds-interactive installation. http://design-io.com/projects/ConnectedWorlds/
Edelson, D.C. (2008). Engineering pedagogical reform: A case study of technology-supported inquiry. In Teaching scientific inquiry (pp. 164–181). Brill Sense
for Kids, B. (2019). Framework for 21st century learning definitions. http://battelleforkids.org/networks/p21/frameworks-resources. Accessed 11 Dec 2019.
Frankenfeld, P. J. (1992). Technological citizenship: A normative framework for risk studies. Science, Technology, & Human Values, 17(4), 459–484.
Gardner, D. P. (1983). A nation at risk: The imperative for educational reform: A report to the nation and the Secretary of Education. The Commission: United States Department of Education.
Gumtau, S., Newland, P., Creed, C., & Kunath, S. (2005). Mediate: A responsive environment designed for children with autism. Accessible Design in the Digital World Conference, 2005, 1–8.
Hugill, A. (2012). The digital musician. London: Routledge.
Keirl, S. (2006). Ethical technological literacy as democratic curriculum keystone. In Defining technological literacy (pp. 81–102). Springer.
Kereluik, K., Mishra, P., Fahnoe, C., & Terry, L. (2013). What knowledge is of most worth: Teacher knowledge for 21st century learning. Journal of digital learning in teacher education, 29(4), 127–140.
Koehler, M. J., & Mishra, P. (2005). Teachers learning technology by design. Journal of Computing in Teacher Education, 21(3), 94–102.
L’Heureux, J., Boisvert, D., Cohen, R., Sanghera, K. (2012). IT problem solving: An implementation of computational thinking in information technology. In Proceedings of the 13th annual conference on Information technology education (pp. 183–188). ACM.
Mandanici, M., Altieri, F., Rodà, A., & Canazza, S. (2018). Inclusive sound and music serious games in a large-scale responsive environment. British Journal of Educational Technology, 49(4), 620–635.
Mandanici, M., Rodà, A., Canazza, S. (2015). A conceptual framework for motion based music applications. In: 2015 IEEE 2nd VR Workshop on Sonic Interactions for Virtual Environments (SIVE), pp. 9–13. IEEE.
Mandanici, M., Rodà, A., & Canazza, S. (2017). Bodily interactions in motion-based music applications. Human Technology, 2017, 13.
Mandanici, M., Rodà, A., & Ricca, M. (2018). The task of walking straight as an interactive serious game for blind children. EAI Endorsed Transaction on Serious Games, 5(16), e4.
Margaryan, A., Bianco, M., & Littlejohn, A. (2015). Instructional quality of massive open online courses (MOOCs). Computers & Education, 80, 77–83.
Morreale, F., De Angeli, A., Masu, R., Rota, P., & Conci, N. (2014). Collaborative creativity: The music room. Personal and Ubiquitous Computing, 18(5), 1187–1199.
Papert, S. (1987). Microworlds: Transforming education. Artificial Intelligence and Education, 1, 79–94.
Paul, R. (2012). Google opens code for building interactive experiences in physical spaces. https://arstechnica.com/information-technology/2012/07/google-opens-code-for-building-interactive-experiences-in-physical-spaces/.
Poppe, R., van Delden, R., Moreno, A., & Reidsma, D. (2014). Interactive playgrounds for children. In Playful user interfaces (pp. 99–118). Springer.
Resnick, M., Maloney, J., Monroy-Hernández, A., Rusk, N., Eastmond, E., Brennan, K., et al. (2009). Scratch: Programming for all. Communication on ACM, 52(11), 60–67.
Thomas, J.W. (2000). A review of research on project-based learning. The Autodesk Foundation.
Vuorikari, R., Punie, Y., Gomez, S.C., & Van Den Brande, G., et al. (2016). Digcomp 2.0: The digital competence framework for citizens. update phase 1: The conceptual reference model. Technical report, Joint Research Centre (Seville site).
Wikipedia. (2019). Microsoft kinect. https://it.wikipedia.org/wiki/Microsoft_Kinect.
Wing, J. M. (2006). Computational thinking. Communications of the ACM, 49(3), 33–35.
Wright, M. (2005). Open sound control: An enabling technology for musical networking. Organised Sound, 10(3), 193–200.
Zanolla, S., Canazza, S., Rodà, A., Camurri, A., & Volpe, G. (2013). Entertaining listening by means of the stanza logo-motoria: An interactive multimodal environment. Entertainment Computing, 4(3), 213–220.
Acknowledgements
The authors thank all the students who participated to the project, for their effort and enthusiasm. Thanks also to the school staff who cooperated for the project realization. We also mention Stefano Alessandretti (Music Conservatory “L. Marenzio”, Brescia - Italy) and Riccardo Luise (Sound and Music Computing Group, University of Padua - Italy) who collaborated as experts in audio programming and motion tracking management respectively.
Funding
The project was supported by the National Operation Program (PON) within the framework of “Fondo Sociale Europeo (FSE)”, identification code 10.2.2A-FdRPOC-LO-2018-187.
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Mandanici, M., Di Filippo, R. & Delle Monache, S. The Discovery of Interactive Spaces: Learning by Design in High School Music Technology Classes. Tech Know Learn 26, 1131–1151 (2021). https://doi.org/10.1007/s10758-020-09464-4
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DOI: https://doi.org/10.1007/s10758-020-09464-4