The paper reviews the first attempts to study the educational and psychological usefulness of robotics: (1) the social and cooperative dimensions involved in the robot-building activities; (2) the reasoning strategies implied in building and programming robots; (3) the influences of robotics on mathematical and scientific achievement; (4) the use of robotics in modification of social skills of autistic children.
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References
1.
BarfurthM. A. (1995) Understanding the collaborative learning process in a technology rich environment: the case of children's disagreements. In SchnaseL.CunniusE. L. (Eds.), Proceedings of CSCL95: computer support for collaborative learning. Mahwah, NJ: Erlbaum. Pp. 8–13.
2.
CaciB.D'AmicoA.CardaciM. (2002) Costruire e Programmare Robots. Resoconto di un'Esperienza Pilota. Tecnologie Didattiche, 27(3), 36–40.
3.
ClarkA. (1997) Being there: putting body, brain, and world together again. Cambridge, MA: MIT Press.
4.
CocchiarelloA.MancaS.SartiL. (2002) La Fabbrica dei Robot. Tecnologie Didattiche, 27(3), 56–66.
5.
DautenhahnK. (2000) Design issues on interactive environments for children with autism. Proceedings: International Conference on Disability, Virtual Reality and Associated Technologies, ICDVRAT 2000, 23–25 September, Alghero, Sardinia, Italy. Pp. 153–161.
6.
DenisB.HubertS. (2001) Collaborative learning in an educational robotics environment. Computers in Human Behavior, 17(5-6), 465–480.
7.
JärvinenE. M. (1998) The LEGO/Logo learning environment in technology education: an experiment in a Finnish context. Journal of Technology Education, 9(2), 47–59.
8.
LundH. H. (1999) Robot soccer in education. Advanced Robotics Journal, 13, 737–752.
9.
MartinF. (1994) Circuits to control: learning engineering by designing LEGO robots. Unpublished doctoral dissertation, Massachusetts Institute of Technology, Boston.
10.
MichaudF.Théberge-TurmelC. (2002) Mobile robotic toys and autism. In DautenhahnK.BondA.CanameroL.EdmondsB. (Eds.), Socially intelligent agents: creating relationships with computers and robots. London: Kluwer Academic. Pp. 125–132.
11.
NewellA.SimonH. (1963) GPS: a program that simulates human thought. In FeigenbaumE.FeldmanJ. (Eds.), Computer and thought. New York: McGraw-Hill. Pp. 279–293.
12.
PapertS. (1986) Constructionism: a new opportunity for elementary science education: proposal to the National Science Foundation. MIT Media Laboratory, Cambridge, MA.
13.
ResnickM.MartinF.SargentR.SilvermanB. (1996) Programmable bricks: toys to think with. IBM Systems Journal, 35, 443–452.
14.
VygotskyL. S. (1986) Thought and language. Cambridge, MA: MIT Press.