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New Learning in Science and Technology

A competency perspective

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New Learning

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References

  • Abraham, M.R., Grzybowski, E.B., Renner, J.W., & Marek, E.A. (1992). Understandings and misunderstandings of eighth graders of five chemistry concepts found in textbooks. Journal of Research in Science Teaching, 29, 105–120.

    Google Scholar 

  • Ali, K. (1990). Instructiestrategieën voor het activeren van preconcepties. Tilburg: Katholieke Universiteit Brabant.

    Google Scholar 

  • Argyris, C., & Schön, D.A. (1978). Organizational learning: A theory of action perspective. Reading, MA: Addison-Wesley.

    Google Scholar 

  • Attigui, A, Nasson, E., & Boughers, O. (1995). Logical Reasoning Workshops. In: J.M.M. van der Sanden, & F. J. J. van Bussel (Eds.), Atrium in Europe. The development of learning abilities in youth training (pp. 74–79). Bielefeld: W. Bertelsmann Verlag.

    Google Scholar 

  • Biemans, H.J.A. (1997). Fostering activation of prior knowledge and conceptual change. Arnhem. H.J.A. Biemans.

    Google Scholar 

  • Boekaerts, M. (1996). Self-regulated learning goes to vocational school: Intervention programs in Dutch schools. Paper presented at the symposium “New perspectives on learning and instruction go to schools”, XXVI International Congress of Psychology, Montreal, Canada.

    Google Scholar 

  • Boekaerts, M. (1998). Boosting students’ capacity to promote their own learning: a goal theory perspective. In: M. Vauras (Ed.), Research Dialogue in Learning and Instruction (pp. 13–22), Vol. 1. No. 1.

    Google Scholar 

  • Boekaerts, M. & Simons, P.R.J. (1993). Leren en instructie: Psychologie van de leerling en het leerproces. Assen: Dekker & Van de Vegt.

    Google Scholar 

  • Brand-Gruwel, S., Van der Sanden, J., Teurlings, C., Thijssen, A., & Vermetten, Y. (in press). Het effect van procesgericht natuurkunde-onderwijs. Tijdschrift voor Didactiek der ß-wetenschappen.

    Google Scholar 

  • Brown, A.L. (1992). Design experiments: Theoretical and methodological challenges in creating complex interventions in classroom settings. Journal of the learning sciences, 2, 141–178.

    Article  Google Scholar 

  • Brown, D.E. (1992). Using examples and analogies to remediate misconceptions in physics: Factors influencing conceptual change. Journal of Research in Science Teaching, 29, 17–34.

    Google Scholar 

  • Byrnes, J.P. (1996). Cognitive development and learning in instructional contexts. Boston: Allyn and Bacon.

    Google Scholar 

  • Canada, K., & Pringle, R. (1995). The role of gender in college classroom interactions: a social context approach. Sociology of Education, 68, 161–186.

    Google Scholar 

  • Carey, S. (1985). Conceptual change in childhood. Cambridge, MA: MIT Press.

    Google Scholar 

  • Carey, S. (1986). Cognitive science and science education. American Psychologist, 41(10), 1123–1130.

    Article  Google Scholar 

  • Chinnappan, M., & Lawson, M.J. (1996). The effects of training in the use of executive strategies in geometry. Learning and Instruction, 6(1), 1–17.

    Article  Google Scholar 

  • Clement, J. (1982). Students’ preconceptions in introductory mechanics. American Journal of Physics, 52, 66–71.

    Google Scholar 

  • Clement, J. (1993). Using bridging analogies and anchoring intuitions to deal with students’ preconceptions in physics. Journal of Research in Science Teaching, 30(10), 1241–1257.

    Google Scholar 

  • Commissie Toekomst Natuur-en Technische Wetenschappen (1997). Wetenschap en Techniek. Welvaart en Welzijn. Een verkenning van de oorzaken en gevolgen van de sterke doling van het aantal studenten in de natuur-en technische wetenschappen. Amsterdam: Koninklijke Nederlandse Akademie van Wetenschappen.

    Google Scholar 

  • De Klerk Wolters, F. (1989). The attitude of pupils towards technology. Eindhoven: Eindhoven University of Technology.

    Google Scholar 

  • De Raad, B. (1996). Personality traits in learning and education. European Journal of Personality, 10, 185–200.

    Google Scholar 

  • De Vries, M. (1988). Techniek in het natuurkunde-onderwijs. Eindhoven: Technische Universiteit Eindhoven.

    Google Scholar 

  • Dijkstra, S. (1997). Theoretical foundations of Instructional Design: Introduction and overview. In: R.D. Tennyson, F. Schott, N. Seel, & S. Dijkstra (Eds.), Instructional Design: International perspectives. Volume 1: Theory, research, and models (pp. 19–24). Mahwah, New Jersey: Lawrence Erlbaum.

    Google Scholar 

  • diSessa, A (1985). Learning about knowing. In: E.L. Klein (Ed.), Children and computers. New directions for child development (pp. 97–124). San Francisco: Jossey-Bass.

    Google Scholar 

  • Dochy, F.J.R.C. (1992). Assessment of prior knowledge as a determinant for future learning. Heerlen: Open Universiteit.

    Google Scholar 

  • Doomekamp, G. (1997). Probleemoplossen binnen het vak techniek. Een studie naar effectieve domeinspecifleke ontwerprichtlijnen voor onderwijsleerpakketten. Enschede: Universiteit Twente.

    Google Scholar 

  • Driver, R., & Easley, J. (1978). Pupils and paradigms: a review of literature related to concept development in adolescent science students. Studies in Science Education, 5, 61–84.

    Google Scholar 

  • Driver, R., Asoko, H., Leach, J., Mortimer, E., & Scott, P. (1994). Constructing scientific knowledge in the classroom. Educational Researcher, 23, 5–12.

    Google Scholar 

  • Dudley Herron, J. (1996). The chemistry classroom. Formulas for successful teaching. Washington, DC: American Chemical Society.

    Google Scholar 

  • Eraut, M. (1994). Developing professional knowledge and competence. London: The Falmer Press.

    Google Scholar 

  • Ferguson-Hessler, M.G.M., & De Jong, T. (1993). Het leren van exacte vakken. In: W. Tomic, & P. Span (Red.). Onderwijspsychologie. Beïnvloeding, verloop en resultaten van leerprocessen (pp. 331–351). Utrecht: Lemma.

    Google Scholar 

  • Gagné, R.M., & Briggs, L.J. (1979). Principles of instructional design. New York: Holt, Rinehart & Winston.

    Google Scholar 

  • Gauvain, M. (1998). Social context, mathematics, and cognitive development: a promising research direction. Learning and Instruction, 8(6), 561–566.

    Google Scholar 

  • Glynn, S.M., Yeany, R.H., & Britton, B.K. (Eds.) (1991). The psychology of learning science. Hillsdale, New Jersey: Lawrence Erlbaum.

    Google Scholar 

  • Greeno, J.G., Collins, A.M., & Resnick, L.B. (1996). Cognition and learning. In: D.C. Berliner, & R.C. Calfee (Eds.), Handbook of educational psychology (pp. 15–46). New York: Simon & Schuster MacMillan.

    Google Scholar 

  • Hattie, J., Biggs, J., & Purdie, N. (1996). Effects of learning skills interventions on student learning: A metaanalysis. Review of Educational Research, 66(2), 99–136.

    Google Scholar 

  • Havita, N., & Lesgold, A. (1996). Situational effects in classroom technology implementations: Unfulfilled expectations and unexpected outcomes. In: S.T. Kerr (ed.), Technology and the Future of Schooling (pp. 131–171) Chicago, Illinois: National Society for the Study of Education.

    Google Scholar 

  • Hoek, D., Terwel, J., & van den Eeden, P. (1997). Effects of training in the use of social and cognitive strategies: An intervention study in secondary mathematics in cooperative groups. Educational Research and Evaluation, 3, 364–389.

    Google Scholar 

  • Hoek, D., Van den Eeden, P., & Terwel, J. (1999). The effects of integrated social and cognitive strategy instruction on the mathematics achievement in secondary education. Learning and Instruction, 9, 427–448.

    Article  Google Scholar 

  • Hofer, B.K., & Pintrich, P.R. (1997). The development of epistemological theories: Beliefs about knowledge and knowing and their relation to learning. Review of Educational Research, 67, 88–140.

    Google Scholar 

  • Huber, G.L., & Sorrentino, R.M. (1996). Uncertainty in interpersonal and intergroup relations. An individual-difference perspective. In: R.M. Sorrentino, & E.T. Higgins (Eds.). Handbook of Motivation and Cognition, Volume 3: The Interpersonal Context (pp. 591–619). New York: Guilford.

    Google Scholar 

  • Kelly, G.A. (1955). The psychology of personal constructs. New York: Norton.

    Google Scholar 

  • Kramers-Pals, H. (1994). Leren oplossen van verklaringsproblemen in het scheikunde-onderwijs. Enschede: Technische Universiteit.

    Google Scholar 

  • Lave, J., & Wenger, E. (1991). Situated learning: Legitimate peripheral participation. Cambridge: Cambridge University Press.

    Google Scholar 

  • Leechor, C. (1988). How high and low achieving students differentially benefit from working together in co-operative small groups. Stanford: Stanford University, School of Education (ph. dissertation).

    Google Scholar 

  • Lintsen, H. W. (Ed.) (1998). Techniek in Nederland in de twintigste eeuw. Deel 1. Stichting Historie der Techniek/Walburg pers.

    Google Scholar 

  • Mayer, R.E., & Wittrock, M.C. (1996). Problem-solving transfer. In: D.C. Berliner, & R.C. Calfee (Eds.), Handbook of educational psychology (pp. 47–62). New York: Simon & Schuster MacMillan

    Google Scholar 

  • Merrill, M.D. (1983). Component Display Theory. In: C.M. Reigeluth (Ed.), Instructional-design theories and models: An overview of their current status (pp. 279–334). London: Erlbaum.

    Google Scholar 

  • Mettis, C.T.C.W., & Pilot, A. (1980,). Over het leren oplossen van natuurwetenschappelijke problemen. Enschede: Universiteit Twente.

    Google Scholar 

  • Montague, W.E. (1988). Promoting cognitive processing and learning by designing the learning environment. In: D.H. Jonassen (Ed.), Instructional designs for microcomputer courseware (chapter 4, pp. 125–149). Hillsdale, NJ: Erlbaum.

    Google Scholar 

  • Ng, E., & Bereiter, C. (1992). Three levels of goal-orientation in learning. The Journal of the Learning Sciences, 1, 243–273.

    Google Scholar 

  • Nussbaum, J., & Novick, S. (1982). Alternative frameworks, conceptual conflict, and accommodation: Towards a principled teaching strategy. Instructional Science, 11, 183–200.

    Article  Google Scholar 

  • Pfundt, H., & Duit, R. (1991). Bibliography: Students’ alternative frameworks and science education (3rd edition). Kiel, West Germany: IPN.

    Google Scholar 

  • Pfundt, H., & Duit, R. (1994). Students’ alternative frameworks and science education (4th edition). Kiel: University of Kiel.

    Google Scholar 

  • Pintrich, P.R., Marx, R.W., & Boyle, R.A. (1993). Beyond cold conceptual change: The role of motivational beliefs and classroom contextual factors in the process of conceptual change. Review of Educational Research, 63, 167–199.

    Google Scholar 

  • Posner, G., Strike, K., Hewson, P., & Gertzog, W. (1982). Accommodation of a scientific conception: Toward a theory of conceptual change. Science Education, 66, 211–227.

    Google Scholar 

  • Prawat, R.S. (1989). Promoting access to knowledge, strategy, and disposition in students: A research synthesis. Review of Educational Research, 59, 1–41.

    Google Scholar 

  • Prosser, M., Walker, P., & Millar, R. (1996). Differences in students’ perceptions of learning physics. Physics Education, 31, 43–48.

    Article  Google Scholar 

  • Reigeluth, C.M. (1987). Lesson blueprints based on the Elaboration Theory of Instruction. In: C.M. Reigeluth (Ed.), Instructional theories in action. Lessons illustrating selected theories and models (pp. 245–288). Hillsdale, New Jersey: Lawrence Erlbaum.

    Google Scholar 

  • Roelofs, E. & Terwel, J. (1999). Constructivism and authentic pedagogy: State of the art and recent developments in the Dutch national curriculum in secondary education. Journal of Curriculum Studies, 31(2), 201–227.

    Google Scholar 

  • Salomon, G. (1998). Novel constructivist learning environments and novel technologies: Some issues to be concerned with. In: M. Vauras (Ed.), Research Dialogue in Learning and Instruction (pp. 3–12), Vol. 1. No. 1.

    Google Scholar 

  • Schliemann, A.D., Carraher, D.W., & Ceci, S.J. (1997). Everyday cognition. In: J.W. Berry, Y.H. Poortinga, & J. Pandey (Eds.), Handbook of cross-cultural psychology (vol. 2, pp. 177–216). Boston: Allyn & Bacon.

    Google Scholar 

  • Schoenfeld, AH. (1985). Mathematical problem solving. New York: Academic Press.

    Google Scholar 

  • Schommer, M. (1990). Effects of beliefs about the nature of knowledge on comprehension. Journal of Educational Psychology, 82, 498–504.

    Article  Google Scholar 

  • Schommer, M. (1994). An emerging conceptualization of epistemological beliefs and their role in learning. In: R. Gamer, & P.A. Alexander (Eds.), Beliefs about text and instruction with text (pp. 25–40). Hillsdale, New Jersey: Erlbaum.

    Google Scholar 

  • Selka, R., & Conrad, P. (1987). Leittexte-ein Weg zu selbständigem Lernen. Berlin: BIBB.

    Google Scholar 

  • Shayer, M., & Adey, P. (1997). Large scale, long term effects of a cognitive intervention in the science curriculum on academic achievement in mathematics and English. Paper presented at the 7th European Conference for Research on Learning and Instruction in Athens (august 26–30).

    Google Scholar 

  • Slaats, A, Lodewijks, J.G.L.C., & Van der Sanden, J.M.M. (1999). Learning styles in secondary vocational education: disciplinary differences. Learning and Instruction, 9, 475–492.

    Article  Google Scholar 

  • Slaats, A, Van der Sanden, J.M.M., & Lodewijks, J.G.L.C. (submitted). De samenhang tussen leerconcepties en verwerkingsstrategieën bij leerlingen in het middelbaar beroepsonderwijs.

    Google Scholar 

  • Sorrentino, R.M., Short, J.C., & Raynor, J.O. (1984). Uncertainty orientation: Implications for affective and cognitive views of achievement behavior. Journal of Personality and Social Psychology, 47, 1505–1518.

    Google Scholar 

  • Slodolsky, S.S., Salk, S., & Glaessner, B. (1991). Student views about learning math and social studies. American Educational Research Journal, 28, 89–116.

    Google Scholar 

  • Storey, R.D. (1992). Textbook errors and misconceptions in biology: Cell physiology. American Biology Teacher, 54, 44–47.

    Google Scholar 

  • Strike, K.A, & Posner, G.J. (1985). A conceptual change view of learning and understanding. In: L.H.T. West, & AL. Pines (Eds.), Cognitive structure and conceptual change (pp. 211–231). Orlando: Academic Press.

    Google Scholar 

  • Strike, K.A., Posner, G.J. (1992). A revisionist theory of conceptual change. In: R. Duschl, & R. Hamilton (Eds.), Philosophy of science, cognitive psychology, and educational theory and practice (pp. 147–176). Albany, NY: Suny

    Google Scholar 

  • Taconis, R. (1995). Understanding Based Problem Solving. Towards qualification-oriented teaching and learning in physics education. Eindhoven: Technische Universiteit Eindhoven.

    Google Scholar 

  • Taconis, R., & Ferguson Hessler, M.G.M. (1994). Het belang van probleemoplossen voor het onderwijs in de technische en exacte vakken Tijdschrift voor Didactiek der ß-wetenschappen 12, 172–194.

    Google Scholar 

  • Terwel, J. (1997). Grenzen aan de groep? Een onderwijspedagogisch perspectief op leren in contexten [Social contexts for learning]. Amsterdam: Vrije Universiteit (Inaugural lecture Free University Amsterdam).

    Google Scholar 

  • Terwel, J. (1999). Constructivism and its implications for curriculum theory and practice. Journal of Curriculum Studies, 31(2), 195–200.

    Google Scholar 

  • Terwel, J., Gillies, R., Van den Eeden, P. & Hoek, D. (1999). Opening the black box: Processes in cooperative learning from a longitudinal multilevel perspective. Paper presented at the Annual Meeting of the American Educational Research Association (AERA). Canada, Montreal, 1999, April 19–23.

    Google Scholar 

  • Teurlings, C.C.J., & Van den Berg J. (1995). The Leittext PLUS method. In: J.M.M. van der Sanden, & F.J.J. van Bussel (Eds.), Atrium in Europe. The development of learning abilities in youth training (pp. 66–73). Bielefeld: W. Bertelsmann Verlag.

    Google Scholar 

  • Teurlings, C.C.J., Van der Sanden, J.M.M., Simons, P.R.J.., & Lodewijks, J.G.L.C. (submitted). Effects of a process-oriented learning environment based on cognitive apprenticeship: a study on learning to use a word processor.

    Google Scholar 

  • Tobias, S. (1976). Achievement-treatment interactions. Review of Educational Research, 46, 61–74.

    Google Scholar 

  • Van den Akker, J.J.H. (1996). Het Studiehuis: ook een leeromgeving voor docenten? Amsterdam: Vrije Universiteit.

    Google Scholar 

  • Van den Eeden, P., & Terwel, J. (1994). Evaluation of a mathematics curriculum: differential effects. Studies in Educational Evaluation, 20, 457–475.

    Google Scholar 

  • Van der Krogt, F.J. (1995). Leren in netverken: Veelzijdig organiseren van leernetwerken met het oog op humaniteit en arbeidsrelevantie. Utrecht: Lemma.

    Google Scholar 

  • Van der Sanden, J.M.M. (1986). Het leren van technische vaardigheden. Individuele verschillen bij het uitvoeren van praktijkopdrachten in het lager technisch onderwijs. Den Haag: SVO.

    Google Scholar 

  • Van der Sanden, J.M.M. (1994). Learning and instruction of motor skills. In: T. Husén & T. Neville Postlethwaite (Eds.), The International Encyclopedia of Education (pp. 3950–3953). Oxford: Pergamon Press.

    Google Scholar 

  • Van der Sanden, J.M.M. (1997). Duurzame ontwikkeling van leervermogen. Leren leren in het technische domein. Intreerede. Eindhoven: Technische Universiteit Eindhoven.

    Google Scholar 

  • Van der Sanden, J.M.M., & Van Bussel, F.J.J (Eds.) (1995). Atrium in Europe. The development of learning abilities in youth training. Bielefeld: W. Bertelsmann Verlag.

    Google Scholar 

  • Van der Sanden, J.M.M., & Teurlings, C.C.J. (1998). Developing competence during practice periods: the learners’ perspective. Poster presented at the European COST Conference on promotion of flexibility, transferability and mobility in vocational education and training. University of Newcastle, November, 1998

    Google Scholar 

  • Van Merriënboer, J.J.G. (1997). Training complex cognitive skills. A four-component instructional design model for technical training. Engiewood Cliffs, NJ: Educational Technology Publications.

    Google Scholar 

  • Van Oers, B. (1998). From context to contextualizing. Learning and Instruction, 8, 473–488.

    Google Scholar 

  • Van Rossum, E.J., & Schenk, S.M. (1984). The relationship between learning conception, study strategy and learning outcome. British Journal of Educational Psychology, 54, 73–83.

    Google Scholar 

  • Vermunt, J. (1992). Leerstijlen en sturen van leerprocessen in het hoger onderwijs. Naar procesgerichte instructie in zelfstandig denken. Amsterdam: Swets & Zeitlinger.

    Google Scholar 

  • Vermunt, J.D. (1998). The regulation of constructive learning processes. British Journal of Educational Psychology, 68, 149–171.

    Google Scholar 

  • Vosniadou, S. (1991). Conceptual development in astronomy. In: S.M. Glynn, R.H. Yeany, & B.K. Britton. (Eds.). The psychology of learning science (pp. 149–177). Hillsdale, New Jersey: Lawrence Erlbaum.

    Google Scholar 

  • Vosniadou, S. (1994). Capturing and modeling the process of conceptual change. Learning and instruction, 4, 45–69.

    Google Scholar 

  • Vosniadou, S. (1996). Towards a revised cognitive psychology for new advances in learning and instruction. Learning and Instruction, 6, 95–109.

    Article  Google Scholar 

  • Vosniadou, S., & Brewer, W.F. (1992). Mental models of the earth: A study of conceptual change in childhood. Cognitive Psychology, 24, 535–585.

    Article  Google Scholar 

  • Vosniadou, S., & Brewer, W.F. (1994). Mental models of the day/night cycle. Cognitive Science, 18, 123–183.

    Article  Google Scholar 

  • Vosniadou, S, & Loannides, C. (in press). From conceptual development to science education: A psychological point of view. The International Journal of Science Education.

    Google Scholar 

  • Webb, N. (1984). Sex differences in interaction and achievement in cooperative small groups. Journal of Educational Psychology, 75, 33–44.

    Google Scholar 

  • Webb, N.M., & Farivar, S. (1994). Promoting helping behavior in co-operative small groups in middle school mathematics. American Educational Research Journal, 31, 369–395.

    Google Scholar 

  • Wigfield, A., Eccles, J.S., & Pintrich, P. (1996). Development between the ages of 11 and 25. In: D.C. Berliner, & R.C. Calfee (Eds.), Handbook of educational psychology (pp. 148–185). New York: Simon & Schuster MacMillan.

    Google Scholar 

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van der Sanden, J., Terwel, J., Vosniadou, S. (2000). New Learning in Science and Technology. In: Simons, RJ., van der Linden, J., Duffy, T. (eds) New Learning. Springer, Dordrecht. https://doi.org/10.1007/0-306-47614-2_7

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