Asia-Pacific Forum on Science Learning and Teaching, Volume 19, Issue 2, Article 15 (Dec., 2018) |
Aktan, M. B. (2013). Pre-service Science Teachers' Views and Content Knowledge about Models and Modeling. Education and Science, 38(168), 398-410.
Akçay, S. (2016). Analysis of analogy use in secondary education science textbooks in Turkey. Educational Research and Reviews, 11(19), 1841-1851. doi: 10.5897/ERR2016.2984
Archer, L. A. C., & Ng, K. E. (2016). Using the scientific method to engage mathematical modeling: An investigation of pi. Journal of Education in Science, Environment and Health (JESEH), 2(1), 51-56.
Chapman, P., & Blemings, K. (2006). Improving Retention Rates in Biochemistry: A Quasi-Experiment. Radical Pedagogy, 8(1).
Chittleborough, G. D., & Treagust, D. F. (2009). Why Models are Advantageous to Learning Science. Educación Química, 20(1), 12-17. doi: 10.1016/S0187-893X(18)30003-X
ECTS Users' Guide (2015). Publications Office of the European Union. Retrieved 30 August, 2017, from https://ec.europa.eu/education/ects/users-guide/docs/ects-users-guide_en.pdf
Ford, A. (2009). Modeling the Environment (2nd ed.). Washington: Island Press.
Frigg, R., & Hartmann, S. (2012). Models in Science. Stanford Encyclopedia of Philosophy. Edw. N. Zalta (ed.). Retrieved 22 August, 2017, from https://plato.stanford.edu/entries/models-science/
Greca, I. M., & Moreira, M. A. (2001). Mental, physical, and mathematical models in the teaching and learning of physics. Science education, 86(1), 106-121. doi: 10.1002/sce.10013
Gregorio, J. B. (2015). Using Video Analysis, Microcomputer-Based Laboratories (MBL's) and Educational Simulations as Pedagogical Tools in Revolutionizing Inquiry Science Teaching and Learning. K12 STEM Education, 1(1), 43-64.
Hadar, I., & Hadar, E. (2007). An Iterative Methodology for Teaching Object Oriented Concepts. Informatics in Education, 6(1), 67-80.
Harrison, A. G., & De Jong , O. (2005). Exploring the use of multiple analogical models when teaching and learning chemical equilibrium. Journal of Research in Science Teaching, 42, 1135-1159.
Harrison , A. G., & Treagust, D. F. (1993). Teaching with Analogies: A Case Study in Grade-10 Optics. Journal of Research in Science Teaching, 30(10),1291-1307.
Harrison, A. G., & Treagust, D. F. (2000). A typology of school science models. International Journal of Science Education, 22(9), 1011 - 1026. doi: 10.1080/095006900416884
Hobbs, B. (2017). The Standard Model of particle physics is brilliant and completely flawed. Retrieved 24 September, 2017, from http://www.abc.net.au/news/science/2017-07-15/the-standard-model-of-particle-physics-explained/7670338
Jackson, J., Dukerich, L., & Hestenes, D. (2008). Modeling Instruction: An Effective Model for Science Education. Science educator, 17(1), 10-17.
Jonāne, L. (2015). Using Analogies in Teaching Physics: A Study on Latvian Teachers' Views and Experience. Journal of Teacher Education for Sustainability, 17(2), 53-73. doi: 10.1515/jtes-2015-0011
Kalapusha, L. (1970). Osnovni vymohy do demonstratsiinykh modelei z fizyky [Basic requirements for the demonstrational physical models]. Metodyka vykladannia fizyky [Methods of physics teaching], 5, 102-106 (in Ukrainian).
Kalapusha, L. (1982). Modeliuvannia u vyvchenni fizyky [Modeling in physics teaching]. Kyiv: Radianska shkola (in Ukrainian) .
Kertil, M., & Gurel, C. (2016). Mathematical modeling: A bridge to STEM education. International Journal of Education in Mathematics, Science and Technology, 4(1), 44-55. doi: 10.18404/ijemst.95761
Kiray, S. A. (2016). The pre-service science teachers' mental models for concept of atoms and learning difficulties. International Journal of Education in Mathematics, Science and Technology, 4(2), 147-162. doi: 10.18404/ijemst.85479
Korsun, I. (2017a). How e-learning demonstrates the formation of students' cognitive activity in the teaching of quantum physics. Information Technologies and Learning Tools, 61(5), 127-139. Retrieved 31 October, 2017, from https://journal.iitta.gov.ua/index.php/itlt/article/view/1701/1240
Korsun, I. (2017 b ). The use of interdisciplinary approach for the formation of learners' situational interest in Physics . Asia-Pacific Forum on Science Learning and Teaching, 18 (2), Article 5 (Dec., 2017). Retrieved 10 March, 2018, from http://www.eduhk.hk/apfslt/v18_issue2/korsun
Langdon, D., McKittrick, G., Beede, D., Khan, B., & Doms, M. (July 2011). STEM: Good Jobs Now and for the Future. U.S. Department of Commerce, Economics and Statistics Administration, 3(11).
Maxwell , J. C. (1925). Matter and motion. Reprinted: with notes and appendices by Sir Joseph Larmor. London: The Sheldon Press.
McPherson, G. R. (2001). Teaching & learning the scientific method. The American Biology Teacher, 63(4), 242-245.
Models and Modeling: An Introduction (2015). Ambitious Science Teaching. Retrieved 25 August, 2017, from http://ambitiousscienceteaching.org/wp-content/uploads/2014/09/Models-and-Modeling-An-Introduction1.pdf
Morgan, G. A., Gliner, J. A., & Harmon, R. J. (2000). Quasi-Experimental Designs. Journal of the American Academy of Child & Adolescent Psychiatry, 39(6), 794-796. doi:10.1097/00004583-200006000-00020
Muñoz, M., Lourdes, M., Rodríguez, J., & Gutiérrez de Mesa, J. (2013). Electrical Storm Simulation to Improve the Learning Physics Process. Informatics in Education, 12(2), 191-206.
Orgill M., Bussey T. J., & Bodner G. M. (2015), Biochemistry instructors' perceptions of analogies and their classroom use . Chemistry Education Research and Practice, 16(4), 731 - 746 . doi: 10.1039/C4RP00256C
Ortega, F.J.R., Alzate, O.E.T., & Bargalló, C.M. (2015). A model for teaching argumentation in science class. Educação e Pesquisa , 41(3), 629-643.
Rogers, C. (2012, May 21). Scientific modeling. Encyclopedia Britannica. Retrieved 24 August, 2017, from https://www.britannica.com/science/scientific-modeling
Rogers, F., Huddle, P. A., & White, M. D. (2000). Using a Teaching Model to Correct Known Misconceptions in Electrochemistry. Journal of Chemical Education, 77(1), 104-110. doi: 10.1021/ed077p104
Schwartz, R., & Skjold, B. (2012). Teaching about Scientific Models in a Science Content Course. Educación química, 23(4), 451-457.
Science, Technology, Engineering and Math: Education for Global Leadership. Retrieved 22 December, 2017, from https://www.ed.gov/stem
Shahan, V. M., & Jenkinson, J. (2016). The efficacy of interactive analogical models in the instruction of bond energy curves in undergraduate chemistry. Chemistry Education Research and Practice, 17(2), 417-428. doi: 10.1039/c5rp00194c
Shtoff, V. (1966). Modelirovanie i filosofiia [Modeling and philosophy]. Moscow: Nauka (in Russian).
The Focus on STEM Education. Retrieved 23 August, 2017, from https://www.atomsplacement.com/the-rise-of-stem-education/
The Modeling Method: A Synopsis. Retrieved 25 August, 2017, from https://modelinginstruction.org/sample-page/synopsis-of-modeling-instruction/
The Standart Model. Retrieved 19 December, 2017, from https://home.cern/about/physics/standard-model
Treagust, D. F., Chittleborough, G., & Mamiala, T. L. (2002). Students' understanding of the role of scientific models in learning science. International Journal of Science Education, 24(4),357-368.
Weinburgh, M., & Silva, C. (2011). Math, science, and models. Science and Children, 49(1), 58-62.
Weizsäcker, C. F. von (2006). The Structure of Physics. Editors: Görnitz, T., Lyre, H. (Eds.). Netherlands: Springer Netherlands.
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