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Articles

Student conceptions about energy in biological contexts

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References

  • Berg, B. L. 2001. Qualitative Research Methods for the Social Sciences. 4th ed. Needham Heights, MA: Pearson Education Company.
  • Boyes, E., and M. Stanisstreet. 1990. “Pupils’ Ideas Concerning Energy Sources.” International Journal of Science Education 12 (5): 513–529.10.1080/0950069900120505
  • Bransford, J. D., A. L. Brown, and R. R. Cocking. 2000. How People Learn: Brain, Mind, Experience and School. Washington, DC: National Academy Press.
  • Burger, J. 2001. Schülervorstellungen Zu Energie Im Biologischen Kontext - Ermittlungen, Analysen Und Schlussfolgerungen [Student Conceptions concerning Energy in Biological Contexts – Research, Analysis and Conclusions]. Bielefeld: University of Bielefeld, Dissertation.
  • Chabalengula, V., M. Sanders, and F. Mumba. 2011. “Diagnosing Students’ Understanding of Energy and its Related Concepts in Biological Contexts.” International Journal of Science and Mathematics Education 10 (2): 241–266.
  • Chen, B., A. Eisenkraft, D. Fortus, J. S. Krajcik, K. Neumann, J. Nordine, and A. Scheff. 2014. Teaching and Learning of Energy in K-12 Education. New York: Springer.10.1007/978-3-319-05017-1
  • (DfE) Department for Education. 2013. Science Programmes of Study: Key Stage 3 – National Curriculum in England. https://www.gov.uk/government/uploads/system/uploads/attachment_data/file/335174/SECONDARY_national_curriculum_-_Science_220714.pdf
  • Fleiss, J. L., B. Levin, and M. C. Paik. 2004. “The Measurement of Interrater Agreement.” Chap. 18 in Statistical Methods for Rates and Proportions, 3rd ed. edited by J. L. Fleiss, B. Levin, and M. C. Paik, 598–626. Hoboken, NJ: Wiley.
  • Harms, U. 2016. “Ohne Energie Gehts Nichts! [Nothing Works without Energy!]” Unterricht Biologie 411 (40): 2–11.
  • Jennison, M., and M. J. Reiss. 1991. “Does Anyone Know What Energy is?” Journal of Biological Education 25 (9): 173–176.10.1080/00219266.1991.9655202
  • Jin, H., and C. W. Anderson. 2012. “A Learning Progression for Energy in Socio-Ecological Systems.” Journal of Research in Science Teaching 49 (9): 1149–1180.10.1002/tea.v49.9
  • Lakoff, G., and M. Johnson. 1980. Metaphors We Live by. Chicago: The University of Chicago.
  • Lancor, R. 2015. “An Analysis of Metaphors Used by Students to Describe Energy in an Interdisciplinary General Science Course.” International Journal of Science Education: 1-27. doi:10.1080/09500693.2015.1025309.
  • Lin, C.-Y., and R. Hu. 2003. “Students’ Understanding of Energy Flow and Matter Cycling in the Context of the Food Chain, Photosynthesis, and Respiration.” International Journal of Science Education 25 (12): 1529–1544.10.1080/0950069032000052045
  • Mayring, P. 2014. Qualitative Content Analysis Theoretical Foundation, Basic Procedures and Software Solution. Klagenfurt: SSOAR.
  • Megalakaki, O., and Thibaut, J. 2016. “Development and Differentiation of Force and Energy Concepts for Animate and Inanimate Objects in Children and Adolescents.” Research in Science Education 46 (4): 457–480. doi:10.1007/s11165-015-9467-9
  • Neumann, K., T. Viering, W. J. Boone, and H. E. Fischer. 2013. “Towards a Learning Progression of Energy.” Journal of Research in Science Teaching 50 (2): 162–188.10.1002/tea.v50.2
  • Nordine, J. 2016. Teaching Energy across the Sciences, K-12. Arlington, VA: National Science Teachers Association (NSTA).
  • Nordine, J., J. Krajcik, and D. Fortus. 2011. “Transforming Energy Instruction in Middle School to Support Integrated Understanding and Future Learning.” Science Education 95 (4): 670–699.10.1002/sce.20423
  • Novak, J. D. 2005. “Results and Implications of a 12-year Longitudinal Study of Science Concept Learning.” Research in Science Education 35 (1): 23–40.10.1007/s11165-004-3431-4
  • (NRC) National Research Council. 2012. A Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas. Committee on a Conceptual Framework for New K-12 Science Education Standards. Board on Science Education, Division of Behavioral and Social Sciences and Education. Washington, DC: The National Academies Press.
  • Opitz, S., U. Harms, K. Neumann, K. Kowalzik, and A. Frank. 2015. “Students’ Energy Concepts at the Transition between Primary and Secondary School.” Research in Science Education 45 (5): 691–715. doi:10.1007/s11165-014-9444-8.
  • Opitz, S., Neumann, K., Bernholt, and U. Harms (2016). “How Do Students Understand Energy in Biology, Chemistry, and Physics? Development and Validation of an Assessment Instrument.” Chap. 3 in Students’ Progressing Understanding of the Energy Concept: An Analysis of Learning in Biological and Cross-Disciplinary Contexts, Doctoral Dissertation, 66–92. Germany: University of Kiel. http://macau.uni-kiel.de/receive/dissertation_diss_00019005.
  • Park, M., and X. Liu. 2016. “Assessing Understanding of the Energy Concept in Different Science Disciplines.” Science Education 100 (3): 483–516. doi:10.1002/sce.21211.
  • Reece, J. B., L. A. Urry, M. L. Cain, S. A. Wasserman, P. Minorsky, R. B. Jackson, and N. A. Campbell. 2011. Campbell Biology. Boston, MA: Benjamin Cummings/Pearson.