Program nauczania fizyki oparty na samodzielnych poszukiwaniach jako przykład tego rodzaju nauczania w izraelskiej szkole średnie
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Słowa kluczowe

inquiry learning
physics inquiry

Jak cytować

Sigron, M. (2017). Program nauczania fizyki oparty na samodzielnych poszukiwaniach jako przykład tego rodzaju nauczania w izraelskiej szkole średnie. Studia Edukacyjne, (45), 387–402. https://doi.org/10.14746/se.2017.45.25

Abstrakt

Teaching of the Sciences recently emphasizes more than in the past the importance of the student’s experience in inquiry, in different places in the world in general and in Israel in particular. This article describes the process of scientific inquiry and the change of the perception of the role, both of the student and of the traditional teacher, in the performance of the inquiry process. The article presents different initiatives that integrate the learning of inquiry in the teaching of physics in the high school in Israel. These initiatives show that the inquiry laboratories have the potential to promote meaningful learning among the students, to increase the depth of their understanding of the scientific concepts and the understanding of the nature of science. The article focuses on ‘Inquiry Physics’ program for students and presents the goals, the target audience, the time framework, and the structure of this program. The program aims to assemble the different initiatives under one framework and to provide them with an appropriate place in the teaching of physics. The learning method of inquiry is now fledgling in the State of Israel and mainly in the knowledge realm of physics. Therefore, exposure to this program may contribute to the body of knowledge on the characteristics of learning and teaching through inquiry in general and on the teaching of physics in particular.

https://doi.org/10.14746/se.2017.45.25
PDF (English)

Bibliografia

Arika Tz., Krakover Z., Steering Committee, Draft Letter to the Subject Committee before the Discussion on the Research Physics Program, 2016.

Baron J.B., Performance assessment: Blurring the edges among assessment, curriculum, and instruction, [in:] Assessment in the Service of Instruction: This Year in School Science 1990,

Eds. A.B. Champagne, B.E. Lovitts, B.J. Calinger, American Association for the Advancement of Science, Washington, DC 1990.

Ben David A., The process of scientific inquiry in the classroom: From theory to practice, Eureka, 2012, 33. (Hebrew)

Birenboim M., Alternatives in the Assessment of Achievements, Ramot Press, Tel Aviv 1997. (Hebrew)

Birenboim M., Assessment for learning and characteristics of a school professional community and class culture that empower it, [in:] Assessment, Jewish Education, and History of Education: A Collection in the Memory of Professor Aryeh Levi, ZL, Ed. Y. Keshti, Ramot, Tel Aviv 2009.

Chinn C.A., Malhotra B.A., Epistemologically authentic inquiry in schools: A theoretical framework for evaluating inquiry tasks, Science Education, 2002, 86(2).

Dewey J., Logic: The Theory of Inquiry, Holt, Rinehart and Winston, New York 1938.

Domin D.S., A review of laboratory instruction styles, Journal of Chemical Education, 1999, 76.

Dreyfus E., Strategies Appropriate for Teaching in the Laboratory – Waves in the Teaching of the Sciences: Booklet for Biology Teachers, 1995, 142.

Etkina E., Van Heuvelen A., Investigative Science Learning Environment – A science process approach to learning physics, [in:] PER-based Reforms in Calculus-Based Physics, Eds. E.F. Redish, P. Cooney, American Association of Physics Teachers, College Park, MD 2007.

Etkina E., Van Heuvelen A., Mills D., Role of experiments in physics – A process approach, The Physics Teacher, 2002, 40.

Feinstein N.W., Allen S., Jenkins E., Outside the pipeline: Reimagining science education for nonscientists, Science, 2013, 340.

Gott R., Duggan S., Investigative Work in the Science Curriculum, Open University Press, Buckingham 1995.

Harlen W., Enhancing inquiry through formative assessment. San Francisco: Exploratorium 2003, http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.128.5260&rep=rep1&type=pdf;

Hativa N., Processes of Teaching in the Classroom, Academic Press for the Development of the Teaching Faculty, Tel Aviv 2003. (Hebrew)

Hofstein A., Shor R., Kipnis M., Levy Nachum T., Learning through inquiry in the chemistry laboratory, [in:] Learning through Inquiry, Ed. A. Zohar, Magnes Press, Jerusalem 2007. (Hebrew)

Kapach Z., From Laboratory Teaching in the Cookbook Approach to Laboratory Teaching in the Inquiry-Based Approach in the Studies of Physics in the High School: Professional Development of Teachers, Ph.D. Dissertation, Weizmann Institute of Science, Rechovot 2015. (Hebrew);

Krajcik J., Blumenfeld P., Marx R.W., Soloway E., Instructional, curricular, and technological supports for inquiry in science classrooms, [in:] Inquiring into Inquiry Learning and Teaching in Science, Eds. J. Minstrell, E.H. Van Zee, American Association for the Advancement of Science, Washington, DC 2000.

Martin-Hansen L., Defining inquiry: Exploring the many types of inquiry in the science classroom, The Science Teacher, 2002, 69(2).

National Research Council, National Science Education Standards, National Academy Press, Washington, DC 1996.

Pedagogical Secretary, The Assimilation of Inquiry in the Educational System in Israel, The Ministry of Education, Jerusalem 2008, (Hebrew), http://cms.education.gov.il/EducationCMS/Units/Mazkirut_Pedagogit/OfekPedagogi/Lemida_Cheker/

Roberts R., Procedural understanding in biology: “Thinking behind the doing”, Journal of Biological Education, 2001, 35(3).

Rozenfeld S., Flik A., Learning through Projects (Teacher Guide), Department for Teaching Sciences, Weizmann Institute for Science, Rechovot 2002. (Hebrew)

Sadler R., Formative assessment and the design of instructional systems, Instructional Science, 1989, 18.

Schwab J.J., The teaching of science as inquiry, [in:] The Teaching of Science, Eds. J.J. Schwab, P.E. Brandweine, Harvard University Press, Cambridge, Mass 1962.

Supervisor Coordinator, Letter to School Principals on the Dissemination of the ‘Inquiry Physics’ Program, Ministry of Education 2016.

Zohar A., Inquiry learning, high thinking skills, and meta-cognition, [in:] Learning through Inquiry: A Continuous Challenge, Ed. A. Zohar, Magnes Press, Jerusalem 2007. (Hebrew)

Zohar A., Nemet F., Fostering students’ knowledge and argumentation skills through dilemmas in human genetics, Journal of Research in Science Teaching, 2002, 39.