References References Barbour, J. B. (2001). The discovery of dynamics : a study from a Machian point of view of the discovery and the structure of dynamical theories. Oxford: Oxford U.P. Bounds, C. L., & Nicholls, G. M. (1988). Nuffield physics for the average pupil: an evaluation of a CSE course and some implications for GCSE. School Science Review, 69(248), 477-482. Brown, D. E. (1994). Facilitating Conceptual Change Using Analogies and Explanatory Models. International Journal of Science Education, 16(2), 201-214. Bulte, A., Klaassen, K., Westbroek, H., Stolk, M., Prins, G., Genseberger, R., et al. (2002). Modules for a new chemistry curriculum, research on a meaningful relation between contexts and concepts. Paper presented at the Second International IPN-YSEG Symposium, Kiel, Germany. Bulte, A., Westbroek, H. B., Rens, E. M. M. v., & Pilot, A. (2004). Involving students in meaningful chemistry education by adapting authentic practices. Paper presented at the 17th Symposium on Chemical Education, Dortmund. Clement, J. (1982). Students' Preconceptions in Introductory Mechanics. American Journal of Physics, 50, 66-71. Clement, J. (1993). Dealing with Students' Preconceptions in Mechanics. Paper presented at the Third Misconceptions Seminar. Clement, J., Brown, D. E., & Zietsman, A. (1989). Not all preconceptions are misconceptions: finding 'anchoring conceptions' for grounding instruction on students' intuitions. International Journal of Science Education, 11(special issue), 554-565. Cobb, P., Confrey, J., diSessa, A. A., Lehrer, R., & Schauble, L. (2003). Design Experiments in Educational Research. Educational Researcher, 32(1), 9-13. Davidson, D. (1995). Laws and Cause. Dialectica, 49(2-4), 263-279. Davidson, D. (2001). Essays on actions and events (2nd ed.). Oxford: Clarendon Press. Dekkers, P. J. J. M. (1997). Making productive use of student conceptions in physics education. (Developing the concept of force through practical work). Amsterdam: VU Huisdrukkerij. Dekkers, P. J. J. M., & Thijs, G. D. (1998). Making Productive Use of Students' Initial Conceptions in Developing the Concept of Force. Science Education, 82(1), 3151. Design-Based_Research_Collective. (2002). Design-Based Research: An Emerging Paradigm for Educational Inquiry. Educational Researcher, 32(1), 5-8. diSessa, A. A. (1988). Knowledge in Pieces. In G. Forman & P. B. Pufall (Eds.), Constructivism in the Computerage (pp. 49-70). Hillsdale: Erlbaum. diSessa, A. A. (1993). Toward an Epistemology of Physics. Cognition and Instruction, 10(2&3), 105-225. 286 References Driver, R., Leach, J., Millar, R., & Scott, P. (1996). Young people's images of science. Buckingham: Open University Press. French, A. P. (1986). Setting New Directions in Physics Teaching: PSSC 30 Years Later. Physics Today(September), 30-34. Friedman, M. (1983). Foundations of space-time theories: relativistic physics and philosophy of science. Princeton: Princeton University Press. Genderen, D. v. (1989). Mechanica- onderwijs in beweging. Een onderzoek naar veranderingen in de didactiek van de mechanica in het voortgezet onderwijs. Utrecht University, Utrecht. Genseberger, R. (1997). Interesse-georiënteerd Natuur- en Scheikundeonderwijs: Een studie naar onderwijsontwikkeling op de Open Schoolgemeenschap Bijlmer. Utrecht University, Utrecht. Grosslight, L., & et al. (1991). Understanding Models and Their Use in Science: Conceptions of Middle and High School Students and Experts. Journal of Research in Science Teaching, 28(9), 799-822. Grotzer, T. A. (2003). Learning to Understand the Forms of Causality Implicit in Scientifically Accepted Explanations. Studies in Science Education, 39, 1-74. Gunstone, R., & Watts, M. (1985). Force and Motion. In R. Driver, E. Guesne & A. Tiberghien (Eds.), Children's Ideas in Science (pp. 85-104). Milton Keynes, Philadelphia: Open University Press. Hake, R. R. (1986). Promoting Student Crossover to the Newtonian World. American Journal of Physics, 55(10), 878-884. Halloun, I. A., & Hestenes, D. (1985). Common Sense Concepts about Motion. American Journal of Physics, 53(11), 1056-1065. Hammer, D., & Elby, A. (2003). Tapping Epistemological Resources for Learning Physiscs. The Journal of the Learning Sciences, 12(1), 53-90. Hestenes, D. (1987). Toward a Modeling Theory of Physics Instruction. American Journal of Physics, 55(5), 440-454. Hestenes, D. (1992). Modeling games in the Newtonian World. American Journal of Physics, 60(8), 732-748. Hestenes, D., & Wells, M. (1992). A Mechanics Baseline Test. Physics Teacher, 30(3), 159-166. Hestenes, D., Wells, M. and Swackhamer, G. (1992). Force Concept Inventory. The Physics Teacher, 30, 141-158. Hewson, P. W. (1985). Epistemological Commitments in the Learning of Science: Examples from Dynamics. European Journal of Science Education, 7(2), 163172. 287 References 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(1), 88-140. Holton, G., Rutherford, F. J., & Watson, F. G. (1970). Project Physics. New York, Toronto: Holt, Rinehart and Winston. Jammer, M. (1957). Concepts of Force: A study in the Foundations of Dynamics. Cambridge, Massachusetts: Harvard U.P. Joyce, B. R., & Showers, B. (1988). Student achievement through staff development. New York [etc.]: Longman. Klaassen, C. W. J. M. (1995). A problem-posing approach to teaching the topic of radioactivity. CD-β Press, Utrecht. Klaassen, C. W. J. M., & Lijnse, P. L. (1996). Interpreting Students' and Teachers' Discourse in Science Classes: An Underestimated Problem? Journal of Research in Science Teaching, 33(2), 115-134. Klaassen, K. (2001). Verklaren in natuurwetenschappelijk onderwijs. Personal communication Klaassen, K. (2003). Science education and constitutive elements of our modes of understanding. Paper presented at the ESERA, Noordwijkerhout. Knippels, M.-C., Waarlo, A. J., & Boersma, K. (2001). Betekenisvol geneticaonderwijs. Niche. Kortland, K. (2001). A Problem Posing Approach to Teaching Decision Making about the Waste Issue. Utrecht University, Utrecht. Kortland, K., Langras, R., Bergen, H. v., Over, P., Wijbenga, J., & Verhagen, P. (1998). Newton; Natuurkunde voor de tweede fase; VWO informatieboek 1a. Zutphen: Uitgeverij Thieme. Kuhn, T. S. (1962). The Structure of Scientific Revolutions (2 ed. Vol. 2). Chicago: The University of Chicago Press. Laplace, P.-S. (1995). Philosophical Essay on Probabilities (A. I. Dale, Trans.). New York: Springer-Verlag. Leach, J., & Scott, P. (2002). Designing and Evaluating Science Teaching Sequences: An Approach Drawing upon the Concept of Learning Demand and a Social Constructivist Perspective on Learning. Studies in Science Education, 38, 115142. Leach, J., & Scott, P. (2003). Individual and Sociocultural Views of Learning in Science Education. Science & Education, 12(1), 91-113. Lemke, J. L. (1990). Talking Science: Language, Learning, and Values (1 ed.). Norwood, New Jersey: Ablex Publishing Corporation. Lijnse, P. (2003). Developmental research: its aims, methods and outcomes. Paper presented at the 6th ESERA PhD summerschool, Ljubljana. 288 References Lijnse, P., & Klaassen, K. (2004). Didactical structures as an outcome of research on teaching-learning sequences? International Journal of Science Education, 26(5), 537-554. Lijnse, P. L. (1995). 'Developmental research' as a way to an empirically based 'didactical structure' of science. Science Education, 79(2), 189-199. Lijnse, P. L. (1997). Curriculum Development in Physics Education. In A. Tiberghien, E. L. Jossem & J. Barojas (Eds.), Connecting Research in Physics Education: International Commission on Physics Education. Matthews, M. (1994). Science Teaching: The Role of History and Philosophy of Science. London: Routledge. McCloskey, M. (1983). Intuitive Physics. Scientific American, 248, 122-130. McCloskey, M. (1983). Naive Theories of Motion. In D. Gentner & A. L. Stevens (Eds.), Mental Models (pp. 299-324). London: Lawrence Erlbaum Associates. McDermott, L. C. (1996). Physics by Inquiry (Vol. 1). New York: John Wiley & Sons. McDermott, L. C., Shaffer, P. S., & Group, T. P. E. (1998). Tutorials in Introductory Physics. New Jersey: Prentice Hall. Meyling, H. (1997). How to Change Students' Conceptions of the Epistemology of Science. Science & Education(6), 397-416. Middelink, J. W., Engelhard, F. J., Brunt, J. G., Hillege, A. G. M., Jong, R. W. d., Moors, J. H., et al. (1998). Systematische Natuurkunde; kernboek N1. Baarn: NijghVersluys. Nagel, E. (1979). The structure of science: problems in the logic of scientific explanation. Indianapolis: Hacket Publishing Company. Newburgh, R. (2001). Why isn't the law of gravitation called Newton's fourth law? Physics Education, 36(3), 202-206. Osborne, J., & Collins, S. (2000). Pupils' and parents' views of the school science curriculum. School Science Review, 82, 23-31. Posner, G. J., Strike, K. A., Hewson, P. W., & Gertzog, W. A. (1982). Accommodation of a Scientific Conception: Toward a Theory of Conceptual Change. Science Education, 66(2), 211-227. Quine, W. V. (1966). The ways of paradox and other essays. New York: Random House. Raghavan, K., & Glaser, R. (1995). Model-Based Analysis and Reasoning in Science: The MARS Curriculum. Science Education, 79(1), 37-61. Ramberg, B. (1999). The significance of charity. In L. E. Hahn (Ed.), The philosophy of Donald Davidson (pp. 601-618). Chicago: Open Court. Verhoeff, R. P. (2003). Towards systems thinking in cell biology education. Utrecht University, Utrecht. 289 References Vollebregt, M. J. (1998). A problem posing approach to teaching an initial particle model. Utrecht: CD-β Press. Welch, W. W. (1973). Review of the Research and Evaluation Program of Harvard Project Physics. Journal of Research in Science Teaching, 10(4), 365-378. Wells, M., Hestenes, D., & Swackhamer, G. (1995). A Modeling Method for High School Physics Instruction. American Journal of Physics, 63(7), 606-619. Westbroek, H. (2005). Characteristics of Meaningful Chemistry Education: The case of water quality. Utrecht University, Utrecht. Wierstra, R. F. A. (1990). Teaching Physics Between the Daily Life World of Pupils and the World of Theoretical Concepts. Utrecht University, Utrecht. Yerrick, R. K., Pedersen, J. E., & Arnason, J. (1998). "We're Just Spectators": A Case Study of Science Teaching, Epistemology, and Classroom Management. Science Education, 82(6), 619-648. 290
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