Asia-Pacific Forum on Science Learning and Teaching, Volume 19, Issue 1, Article 4 (Jun., 2018)
Bowo SUGIHARTO, Aloysius Duran COREBIMA, Herawati SUSILO and IBROHIM
A comparison of types of knowledge of cognition of pre-service biology teachers

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References

Aberšek, M. K., Dolenc, K., & Kovačič, D. (2015). Elementary and natural science teachers’ online reading metacognition. Journal of Baltic Science Education, 14(1), 121–131.

Airiasian, P. W., Cruikshank, K. A., Mayer, R. E., Pintrich, P. R., Raths, J., & Wittrock, M. C. (2001). A taxonomy for learning, teaching and assessing: A revision of Bloom’s taxonomy of educational outcomes: Abridged Edition. (L. W. Anderson & D. R. Krathwohl, Eds.). New York: Longman.

Azevedo, R., & Aleven, V. (2013). International handbook of metacognition and learning technologies. New York: Springer Science & Business Media.

Backer, L. De, Keer, H. Van, & Valcke, M. (2011). Exploring the potential impact of reciprocal peer tutoring on higher education students’ metacognitive knowledge and regulation. Instructional Science, 40(3), 559–588.

Byun, H., Lee, J., & Cerreto, F. A. (2013). Relative effects of three questioning strategies in ill-structured, small group problem solving. Instructional Science, 42(2), 229–250. https://doi.org/10.1007/s11251-013-9278-1

Cho, K., & Cho, M.-H. (2013). Training of self-regulated learning skills on a social network system. Social Psychology of Education, 16(4), 617–634. https://doi.org/10.1007/s11218-013-9229-3

Cikrikci, Ö., & Odaci, H. (2016). The determinants of life satisfaction among adolescents: The role of metacognitive awareness and self-efficacy. Social Indicators Research, 125(3), 977–990. https://doi.org/10.1007/s11205-015-0861-5

Conner, L. N. (2007). Cueing metacognition to improve researching and essay writing in a final year high school biology class. Research in Science Education, 37(1), 1–16.

Corebima, A. D. (2009). Metacognitive skill measurement integrated in achievement test. State University of Malang. Retrieved from http://recsam.edu.my/cosmed/cosmed09/AbstractsFullPapers2009/Abstract/Science Parallel PDF/Full Paper/01.pdf

Dabarera, C., Renandya, W. A., & Zhang, L. J. (2014). The impact of metacognitive scaffolding and monitoring on reading comprehension. System, 42, 462–473.

Dejonckheere, P. J. N., Van de Keere, K., Tallir, I., & Vervaet, S. (2013). Primary school science: implementation of domain-general strategies into teaching didactics. The Australian Educational Researcher, 40(5), 583–614. https://doi.org/10.1007/s13384-013-0119-7

Demoulin, C., & Kolinsky, R. (2015). Does learning to read shape verbal working memory? Psychonomic Bulletin & Review, (23), 703–722. https://doi.org/10.3758/s13423-015-0956-7

Duffy, G. G., Miller, S., Parsons, S., & Meloth, M. (2009). Teachers as metacognitive professionals. Handbook of Metacognition in Education, 240.

Flavell, J. H. (1979). Metacognition and cognitive monitoring: A new area of cognitive-developmental inquiry. American Psychologist, 34(10), 906–911.

Garrison, D. R. (2003). Cognitive presence for effective asynchronous online learning: The role of reflective inquiry, self-direction and metacognition. The University of Calgary, 4, 47–58.

Gassner, L. (2009). Developing metacognitive awareness-a modified model of a PBL-tutorial. Malmo University.

Hacker, D. J., Dunlosky, J., & Graesser, A. C. (2009). Handbook of metacognition in education. Routledge.

Hidayat, A. (2014). Pilihan uji normalitas univariate - Uji statistik. Retrieved October 18, 2016, from http://www.statistikian.com/2014/08/pilihan-uji-normalitas-univariate.html

Hsu, Y. S., Iannone, P., She, H. C., Hadwin, A. F., & Yore, L. D. (2016). Epilogue for the IJSME special issue: Metacognition for science and mathematics learning in technology-infused learning environments. International Journal of Science and Mathematics Education, 14(2), 335–344. https://doi.org/10.1007/s10763-016-9726-x

Hulsbos, F. A., Evers, A. T., & Kessels, J. W. M. (2016). Learn to lead: Mapping workplace learning of school leaders. Vocations and Learning, 9(1), 21–42. https://doi.org/10.1007/s12186-015-9140-5

Jacobse, A. E., & Harskamp, E. G. (2012). Towards efficient measurement of metacognition in mathematical problem solving. Metacognition and Learning, 7(2), 133–149.

Javid, S., Alavi, H. R., & Pour, M. F. (2013). The relationship between religious commitment with meta-cognitive skills and philosophical mindedness of the graduate students of Kerman City Universities in the academic year 2011–2012. Journal of Religion and Health, 54(3), 943–953. https://doi.org/10.1007/s10943-013-9808-9

Kiesewetter, J., Ebersbach, R., Tsalas, N., Holzer, M., Schmidmaier, R., & Fischer, M. R. (2016). Knowledge is not enough to solve the problems – The role of diagnostic knowledge in clinical reasoning activities. BMC Medical Education, 16(1), 303. https://doi.org/10.1186/s12909-016-0821-z

Krathwohl, D. R. (2002). A revision of Bloom’s taxonomy: An overview. Theory into Practice, 41(4), 212–218.

Larkin, S. (2009). Metacognition in young children. Oxon: Routledge.

Lee, C. B., & Koh, N. K. (2016). Children’s monetary decision making: The role of metacognition in everyday problem solving, 415–424. https://doi.org/10.1007/978-981-10-0360-8_28

Ma, A., & Baranovich, P. D. (2015). Promoting self-regulation in vocabulary learning among Chinese EFL learners : A needs analysis, 24(1), 137–146. https://doi.org/10.1007/s40299-013-0166-x

Marzano, R. (1998). Metacognition. Retrieved March, 2, 2002. Retrieved from http://www.acedemic.pg.ccmd.us-wpeirce/MCCCTR/metac-htm

McMahon, C. M., Henderson, H. A., Newell, L., Jaime, M., & Mundy, P. (2016). Metacognitive awareness of facial affect in higher-functioning children and adolescents with autism spectrum disorder. Journal of Autism and Developmental Disorders, 46(3), 882–898. https://doi.org/10.1007/s10803-015-2630-3

Metcalfe, J. E., & Shimamura, A. P. (1994). Metacognition: Knowing about knowing. Massachusetts: The MIT Press.

Michalsky, T. (2012). Shaping self-regulation in science teachers’ professional growth: Inquiry skills. Science Education, 96(6), 1106–1133. https://doi.org/10.1002/sce.21029

Mohtadi, M. T., Hajami, A., & Allali, H. (2014). Pedagogical agent for metacognitive scaffolding in interactive learning environments. In IEEE (pp. 652–656). IEEE.

Palennari, M. (2016). Exploring the correlation between metacognition and cognitive retention of student using some biology teaching strategies. Journal of Baltic Science Education, 15(5), 617–629.

Pillow, B. H., & Pearson, R. M. (2014). Children’s and adults’ judgments of the controllability of cognitive activities. Metacognition and Learning, 10(2), 231–244. https://doi.org/10.1007/s11409-014-9122-2

Rittle-Johnson, B., Schneider, M., & Star, J. R. (2015). Not a one-way street: Bidirectional relations between procedural and conceptual knowledge of mathematics. Educational Psychology Review, 27(4), 587–597. https://doi.org/10.1007/s10648-015-9302-x

Schraw, G. (1998). Promoting general metacognitive awareness. Instructional Science, 26(1–2), 113–125. https://doi.org/10.1023/A:1003044231033

Schraw, G., Crippen, K. J., & Hartley, K. (2006). Promoting self-regulation in science education: Metacognition as part of a broader perspective on learning. Research in Science Education, 36(1–2), 111–139. https://doi.org/10.1007/s11165-005-3917-8

Schraw, G., & Dennison, R. S. (1994a). Assessing metacognitive awareness. Contemporary Educational Psychology, 19(4), 460–475.

Schraw, G., & Dennison, R. S. (1994b). The effect of reader purpose on interest and recall. Journal of Literacy Research, 26(1), 1–18.

Sperling, R. A., Howard, B. C., Miller, L. A., & Murphy, C. (2002). Measures of children’s knowledge and regulation of cognition. Contemporary Educational Psychology, 27(1), 51–79.

Stadtler, M., Scharrer, L., Macedo-Rouet, M., Rouet, J. F., & Bromme, R. (2016). Improving vocational students’ consideration of source information when deciding about science controversies. Reading and Writing, 29(4), 705–729. https://doi.org/10.1007/s11145-016-9623-2

Tanner, K. D. (2012). Promoting student metacognition. CBE-Life Sciences Education, 11(2), 113–120.

Tock, J. L., & Moxley, J. H. (2016). A comprehensive reanalysis of the metacognitive self-regulation scale from the MSLQ. Metacognition and Learning, 1–33. https://doi.org/10.1007/s11409-016-9161-y

van de Kamp, M.-T., Admiraal, W., & Rijlaarsdam, G. (2016). Becoming original: effects of strategy instruction. Instructional Science, (44), 543–566. https://doi.org/10.1007/s11251-016-9384-y

Veenman, M. V. J. (2011). Alternative assessment of strategy use with self-report instruments: a discussion. Metacognition and Learning, 6(2), 205–211. https://doi.org/10.1007/s11409-011-9080-x

Werner, K. (2016). Metaphilosophy of mind: How do minds investigate minds? Refutation of the theocentric view. Integrative Psychological and Behavioral Science, (i), 31–44. https://doi.org/10.1007/s12124-016-9362-6

Yore, L. D., & Treagust, D. F. (2006). Current realities and future possibilities: Language and science literacy—empowering research and informing instruction. International Journal of Science Education, 28(2–3), 291–314.

Young, A., & Fry, J. (2012). Metacognitive awareness and academic achievement in college students. Journal of the Scholarship of Teaching and Learning, 8(2), 1–10.

Zoupidis, A., Pnevmatikos, D., Spyrtou, A., & Kariotoglou, P. (2016). The impact of procedural and epistemological knowledge on conceptual understanding: the case of density and floating–sinking phenomena. Instructional Science, 1–20. https://doi.org/10.1007/s11251-016-9375-z

 


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