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Original Articles

Real and virtual robotics in mathematics education at the school–university transition

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Pages 285-301 | Received 22 Sep 2010, Published online: 27 Sep 2011

References

  • European Commission, Europe needs more scientists: Report by the high level group on increasing human resources for science and technology in Europe. European Commission, Brussels, Belgium, 2004. Available at http://ec.europa.eu/research/conferences/2004/sciprof/pdf/final_en.pdf
  • A. Matthews and D. Pepper, Evaluation of participation in A-level mathematics, Interim Report, Qualifications and Curriculum Agency, London, 2006
  • Brown , M , Brown , P and Bibby , T . 2007 . I would rather die: Attitudes of 16 year-olds towards their future participation in mathematics . Br. Soc. Res. Learn. Math. , 27 ( 1 ) : 18 – 23 .
  • Solomon , Y . 2007 . Not belonging? What makes a functional learner identity in the undergraduate mathematics community of practice? . Stud. High. Educ. , 32 ( 1 ) : 79 – 96 .
  • European Parliament, Lisbon European Council 23 and 24 March 2000, Presidency Conclusions, European Parliament, Brussels, Belgium, 2000. Available at http://www.europarl.europa.eu/summits/lis1_en.htm
  • K. Zickuhr, Generations and their gadgets, Pew Research Center's Internet & American Life Project, Washington, 2011. Available at http://pewinternet.org/Reports/2011/Generations-and-gadgets.aspx
  • T. O’Reilly, What is Web 2.0? Design patterns and business models for the next generation of software, Sebastopol, CA, O’Reilly, Media, Inc. 2005. Available at http://www.oreillynet.com/pub/a/oreilly/tim/news/2005/09/30/what-is-web-20.html
  • D.M. Boyd and N.B. Ellison, Social networking sites: Definition, history and scholarship, J. Comput. Mediated Commun. 13(1) (2007), Article 11
  • Prensky , M . 2001 . Digital natives, digital immigrants . Horizon , 9 ( 5 ) : 1 – 6 .
  • Shneiderman , B . 1998 . Relate-create-donate: A teaching/learning philosophy for the cyber generation . Comput. Educ. , 31 : 25 – 39 .
  • Kirkwood , A and Price , L . 2005 . Learners and learning in the twenty-first century: What do we know about students’ attitudes towards and experiences of information and communication technologies that will help us design courses? . Stud. High. Educ. , 30 ( 3 ) : 257 – 274 .
  • Haapasalo , L . 2007 . Adapting mathematics education to the needs of ICT . Electron. J. Math. Technol. , 1 ( 1 ) : 1 – 10 .
  • B. Zimmermann, On the genesis of mathematics and mathematical thinking: A network of motives and activities drawn from the history of mathematics, in Towards Meaningful Mathematics and Science Education, Vol. 86, Bulletins of the Faculty of Education, L. Haapasalo and K. Sormunen eds., University of Joensuu, Joensuu, Finland, 2003, pp. 29–47
  • Papert , S . 1980 . Mindstorms: Children Computers and Powerful Ideas , New York : Basic Books .
  • Papert , S and Harel , I . 1991 . Constructionism , Norwood , NJ : Ablex .
  • Weaver , CL . 1991 . Young Children Learn Geometric Concepts Using LOGO with a Screen Turtle and a Floor Turtle , Springfield , VA : Eric Document Reproduction Service .
  • Eisenberg , M . 2003 . Mindstuff: Educational technology beyond the computer . Convergence , 9 ( 2 ) : 29 – 53 .
  • D. Catlin and M. Blamires, The e-Robot project: A longitudinal on-line research collaboration to investigate ERA principles, Proceedings of SIMPAR 2010, Darmstadt, Germany, 2010, pp. 411–420
  • J.P. Adams and S. Turner, Problem solving and creativity for undergraduate engineers: Process or product?, Proceedings of Engineering Education 2008 Conference, Loughborough, UK, 2008
  • Mosley , P and Kline , R . 2006 . Engaging students: A framework using LEGO robotics to teach problem solving . Inf. Technol. Learn. Perform. J. , 24 ( 1 ) : 39 – 45 .
  • E. Russell, R. Bhakta, and S. Joiner, The development of mathematical concepts through the use of LEGO NXT and LEGO NXTG, Proceedings of CETL-MSOR Conference 2009, The Open University, Milton Keynes, 7–8 September 2009, pp. 123–129
  • Haapasalo , L , Zimmermann , B and Rehlich , H . 2004 . A versatile tool to promote link between creative production and conceptual understanding . Teach. Math. , 7 : 61 – 70 .
  • S. Arnold, Dynamic integration of CAS and DGS: what does this mean?, Compass Learning Technologies, Kiama, NSW, Australia, 2009. Available at http://www.compasstech.com.au/ARNOLD/CASandDGS.html
  • Samuels , PC . 2010 . Motivating mathematics learning through an integrated technology enhanced learning environment . Int. J. Technol. Math. Educ. , 17 ( 4 ) : 197 – 203 .
  • Haapasalo , L and Samuels , PC . 2011 . Responding to the challenges of instrumental orchestration through physical and virtual robotics . Comput. Educ. , 57 ( 2 ) : 1484 – 1492 .
  • Sjøberg , S and Schreiner , C . 2005 . How do learners in different cultures relate to science and technology? Results and perspectives from the project ROSE . Asia Pac. Forum Sci. Learn. Teach. , 6 ( 2 ) : 1 – 16 .
  • Holton , D . 2001 . The Teaching and Learning of Mathematics at University Level, An ICMI Study , Dordrecht : Kluwer .
  • Lawson , DA , Croft , AC and Halpin , M . 2003 . Good Practice in the Provision of Mathematics Support Centres, , 2nd , Birmingham : LTSN Maths, Stats & OR Network .
  • Lawson , DA . 2003 . Changes in student entry competencies 1991-2001 . Teach. Math. Appl. , 22 ( 4 ) : 171 – 175 .
  • National Center for Education Statistics, The TIMSS videotape classroom study: Methods and findings from an exploratory research project on eighth-grade mathematics instruction in Germany, Japan, and the United States, Research and Development Report NCES 99-074, Department of Education, Office of Educational Research and Improvement, Washington, DC, USA, 1999
  • Samuels , PC and Williams , G . 2010 . Developing students’ self-efficacy through mathematical study skills resources . MSOR Connections , 10 ( 2 ) : 26 – 30 .
  • Challis , N , Robinson , M and Thomlinson , M . 2009 . More maths grads project – the HE curriculum theme … ‘employability’ skills in mathematical courses . MSOR Connections , 9 ( 3 ) : 38 – 41 .
  • Palicsar , AS . 1998 . Socio-constructivist perspectives on teaching and learning . Annu. Rev. Psychol. , 49 : 345 – 375 .
  • Barrows , HS and Tamblyn , RM . 1980 . Problem-based Learning: An Approach to Medical Education , New York : Springer .
  • D. Birchfield, H. Thornburg, M.C. Megowan-Romanowicz, S. Hatton, B. Mechtley, I. Dolgov and W. Burleson, Embodiment, multimodality, and composition: Convergent themes across HCI and education for mixed-reality learning environments, Adv. Human-Comput. Interact. (2008), Article ID 874563. Available at http://www.hindawi.com/journals/ahci/2008/874563/
  • FIRST, For inspiration and recognition of science and technology, 2009, Annual Report, FIRST, Manchester, NH, 2010. Available at: http://usfirst.org/uploadedFiles/Who/Annual_Report-Financials/2010_Annual_Report.pdf
  • Jonassen , DH . 2000 . Computers as Mindtools for Schools , Upper Saddle River , NJ : Prentice Hall .
  • J.L. Kolodner, D. Crismond, J. Gray, J. Holbrook, and S. Puntambekar, Learning by design from theory to practice, Proceedings of Third International Conference of the Learning Sciences, Atlanta, GA, 16–19 December 1998, pp. 16–22
  • Smeets , E . 2005 . Does ICT contribute to powerful learning environments in primary education? . Comput. Educ. , 44 ( 3 ) : 343 – 355 .
  • M. Yerushalmy and B. Shternberg, Epistemological and cognitive aspects of time: A tool perspective, J. Res. Math. Educ. Monogr. 13(CD-ROM Special Issue) 2005, R. Nemirovsky and D. Carraher, eds., National Council of Teachers of Mathematics
  • I. Nourbakhsh, E. Hamner, T. Lauwers, D. Bernstein, and C. Disalvo, A roadmap for technology literacy and a vehicle for getting there: Educational robotics and the TeRK project, Proceedings of the 15th International Symposium on Robot and Human Interactive Communication, IEEE, Hatfield, 6–8 September 2006, pp. 391–397
  • Liu , EZ-F . 2010 . Early adolescents’ perceptions of educational robots and learning of robotics . Br. J. Educ. Technol. , 41 ( 3 ) : E44 – E47 .
  • M. Matarić, N. Koenig, and D. Feil-Seifer, Materials for Enabling Hands-on Robotics and STEM Education, Proceedings of AAAI Spring Symposium on Robots and Robot Venues: Resources for AI Education, AAAI Press, Stanford, CA, 2007
  • A. Melchior, F. Cohen, T. Cutter, and T. Leavitt, More than robots: An evaluation of the FIRST robotics competition participant and institutional impacts, FIRST, Manchester, NH, 2005
  • Barker , BS and Ansorge , J . 2007 . Robotics as means to increase achievement scores in an informal learning environment . J. Res. Technol. Educ. , 39 ( 3 ) : 229 – 243 .
  • P. Ko, The effect of a middle school robotics class on standardized math test scores, Theses and Dissertations-Curriculum and Instruction, Paper 13, Department of Curriculum and Instruction, Texas State University, San Marcos, TX, 2010
  • G. Alenyà, S. Hernández, J. Andrade-Cetto, A. Sanfeliu, and C.Torras, Humanoid robotics and human-centered initiatives at IRI, XXX Jornadas de automática, Universidad de Valladolid, Valladolid, Espanya, 2009, pp. 1–8
  • J. Wolf, P. Hall, P. Robinson, and P. Culverhouse, Bioloid based humanoid soccer robot design, Proceedings of the Second Workshop on Humanoid Soccer Robots, 2007 IEEE-RAS International Conference on Humanoid Robots, IEEE, Pittsburgh, PA, USA, 2007
  • M. Hohenwarter and K. Jones, Ways of Linking Geometry and Algebra: The Case of GeoGebra, in Proceedings of the British Society for Research into Learning Mathematics, D. Küchemann ed., Vol. 27, Issue 3, BSRLM, University of Northampton, UK, 2007, pp. 126–131
  • G. Ancsin, M. Hohenwarter, and Z. Kovács, GeoGebra goes mobile, Electron. J. Math. Technol. Available at http://www.geogebra.org/trac/attachment/wiki/GeoGebraMobile/2010-09-22-eJMT-GeoGebraMobile.pdf
  • Hohenwarter , M and Lavicza , Z . 2009 . The strength of the community: How GeoGebra can inspire technology integration in mathematics teaching . MSOR Connections , 9 ( 2 ) : 3 – 5 .
  • Lu , Y-W . 2008 . English and Taiwanese upper secondary teachers’ approaches to the use of GeoGebra . Acta Scientiae , 10 ( 2 ) : 38 – 56 .
  • Bonanno , P . 2010 . “ A process-oriented model for technology-enhanced learning ” . In Technology Enhanced Learning: Quality of Teaching and Educational Reform, Communications in Computer and Information Science Series , Edited by: Lytras , M.D. , De Pablos , P.O. , Avison , D. , Sipior , J. , Jin , Q. , Leal , W. , Uden , L. , Thomas , M. , Cervai , S. and Horner , D. Vol. 73 , 525 – 533 . Berlin, Heidelberg : Springer-Verlag .

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