1 |
박영신 (2006). 교실에서의 실질적 과학 탐구를 위한 과학적 논증 기회에 대한 이론적 고찰. 한국지구과학회지, 27(4), 401-415.
과학기술학회마을
|
2 |
Erduran, S., Simon, S., & Osborne, J. (2004). TAPping into argumentation: Developments in the application of Toulmin's argument pattern for studying science discourse. Science Education, 88, 915-933.
DOI
ScienceOn
|
3 |
Welch, W. (Ed.). (1979). Twenty-five years of science curriculum development. (Vol. 7). Washington, DC: American Educational Research Association
|
4 |
Wertheimer, M. (1945). Productive thinking. New York: Harper & Row.
|
5 |
Weisberg, R. W. (2006). Creativity: Understanding innovation in problem solving, science, and the arts. John Wiley & Sons.
|
6 |
Simon, S., Erduran, S., & Osborne, J. F. (2006). Learning to teach argumentation: Research and development in the science classroom. International Journal of Science Education, 28(2-3), 235-260.
DOI
ScienceOn
|
7 |
Walton, D. N. (1990). What is reasoning? what is an argument? Journal of Philosophy, 87, 399-419.
DOI
ScienceOn
|
8 |
Wegener, A. (1975). The origin of lunar craters. The Moon, 14, 211-236.
DOI
|
9 |
Cros, D., Chastrette, M., & Fayol, M. (1987). Conceptions of second year university students of some fundamental notions of chemistry. International Journal of Science Education, 10, 331-336.
|
10 |
Dobry, D. (2005). Remembering a pioneer in cognitive studies. Teachers College - Columbia University: News. Retrieved March 30, 2006, from http://www.tc.columbia.edu/news/article.htm?id=5135&tid=36.
|
11 |
Thagard, P. (1998). Ulcers and bacteria I: Discover and acceptance. Studies in History and Philosophy of Biology and Biomedical Science, 29, 107-136.
|
12 |
Cohen, L., Manion, L., & Morrison, K. (2000). Historical research. a chapter in Research Methods in Education, fifth edition, (pp. 158-168). New York: Routledge Falmer.
|
13 |
Driver, R., Newton, P., & Osborne, J. (2000). Establishing the norms of scientific argumentation in classroom. Science Education, 84(3), 287-312.
DOI
ScienceOn
|
14 |
조현준, 양일호, 송윤미, 이효녕 (2008). 초등과학 영재의 논증활동에서 사용된 증거의 수준 분석. 한국과학교육학회지, 28(5), 495-505.
과학기술학회마을
|
15 |
Chen, S. (2006). Development of and instrument to assess views on nature of science and attitudes toward teaching science. Science Education, 90(5), 803-819.
DOI
ScienceOn
|
16 |
Newton, P., Driver, R., & Osborne, J. (1999). The place of argumentation in the pedagogy of school science. International Journal of Science Education, 21, 553-576.
DOI
ScienceOn
|
17 |
Paavola, S. (2004). Abduction as a logic and methodology of discovery: The importance of strategies. Foundations of Science, 9(3), 267-283.
DOI
|
18 |
Patton, M. Q. (2002). Qualitative research & evaluation methods, (3rd ed.). California: Sage Publication.
|
19 |
인터넷 중앙일보 (2008). 타이탄에 비 내린다고? 국내외 과학자들 논쟁. Retrieved Aug. 30, 2008, from http://itview.joins.com/article/itview/article.asp?total_id=3204618
|
20 |
위수민, 조현준, 김선홍, 이효녕 (2009). 학생 특성에 따른 소그룹 논증 수준 분석. 과학교육연구지, 33(1), 1-11.
|
21 |
National Research Council (2000). Inquiry and the national science education standards. Washington, DC: National Academy of Science Press.
|
22 |
조현준 (2009). 천문학자의 연구 과정과 추론 분석. 한국교원대학교 박사학위 논문.
|
23 |
이봉우, 김희경 (2004). 학생들의 인식조사를 통한 온라인 물리탐구토론의 특징. 한국과학교육학회지, 24(6), 1206-1215.
과학기술학회마을
|
24 |
Niaz, M., Aguilera, D., Maza, A., & Liednd, G. (2002). Arguments, contradictions, resistances, and conceptual change in students'understanding of atomic structure. Science Education, 86(4), 505-525.
DOI
ScienceOn
|
25 |
Osborne, J., Erduran, S., & Simon, S. (2004). Enhancing the quality of argumentation in school science. Journal of Research in Science Teaching, 41(10), 994-1020.
DOI
ScienceOn
|
26 |
Kuhn, D. (1993). Science as argument: Implications for teaching and learning scientific thinking. Science Education, 77(3), 319-337.
DOI
ScienceOn
|
27 |
Kuhn, D. (2005). Education for thinking. Harvard University Press.
|
28 |
Magnani, L. (2001). Abduction, Reason, and Science. NY: Kluwer Academic/Plenum Publishers.
|
29 |
이야진 (2009). 토성 위성 타이탄에 비가 내리나요? Retrieved June 30, 2009, from http://www.astronomy2009.kr/archive/gallery/scimag/01/pdf/20090202_210515.pdf
|
30 |
이효녕, 조현준, 손정주 (2009). 학교과학교육에서의 논증활동 활용에 대한 교사들의 인식. 한국과학교육학회지, 29(6), 666-679.
과학기술학회마을
|
31 |
Kruijff, G.-J. M. (2005). Peirces' late theory of abduction: A comprehensive account. Semiotica, 153, 431-454.
|
32 |
교육과학기술부 (2008). 교육인적자원부 고시 제 2006-75호 및 제2007-79호에 따른 중학교 교육과정 해설 III. 서울: 대한교과서 주식회사.
|
33 |
강석진, 김창민, 노태희 (2000). 소집단 토론 과정에서의 언어적 상호작용 분석. 한국과학교육학회지, 20(3), 353-363.
|
34 |
김영민 (2006). Kepler의 망막 상 이론 형성 과정에서의 과학적 문제 발견과 귀추적 사고. 한국과학교육학회지, 26(7), 835-842.
과학기술학회마을
|
35 |
김희경, 강태욱, 송진웅 (2003). 7차 교육과정에 따른 중학교 과학 교과서 물리단원 실험의 특징. 새물리, 47(6), 387-394.
|
36 |
양일호, 이효정, 이효녕, 조현준 (2009). 과학적 논증과정 평가를 위한 루브릭 개발. 한국과학교육학회지, 29(2), 203-220.
과학기술학회마을
|
37 |
이범홍, 이양락, 홍미영 (1999). 토의토론 학습과 중등학교 과학교육. 이홍수 편저. 교수-학습자료 개발: 연구보고 RR 97-II-6, (pp. 393-414). 한국교원대학교 부설 교과교육공동연구소.
|
38 |
이봉우 (2004). 온라인 물리탐구토론에 나타난 학생들의 상호작용 유형 분석. 한국과학교육학회지, 24(3), 638-645.
과학기술학회마을
|
39 |
Kelly, G., & Takao, A. (2002). Epistemic levels in argument: An analysis of university oceanography students'use of evidence in writing. Science Education, 86(3), 314 342.
DOI
ScienceOn
|
40 |
Kuhn, D. (1991). The skills of argument. Cambridge. Cambridge University Press.
|
41 |
Gruber, H. E. (1974). Darwin on Man: A psychological study of scientific creativity with Darwin's early and unpublished notebooks. New York: E. P. Dutton & Co., Inc.
|
42 |
Kim, C., & Cunningham, D. (2003). A syllogism for formulating hypotheses. Semiotica, 144, 303-317.
|
43 |
Jimemex-Aleixandre, M. P., Rodriguez, A. B., & Duschl, R. (2000). "Doing the lesson"or "doing science": Argument in high school genetics. Science Education, 84(6), 757-792.
DOI
ScienceOn
|
44 |
Josephson, J. R., & Josephson, S. G. (1994). Abductive inference: Computation, philosophy, technology. Cambridge: Cambridge University Press.
|
45 |
Hogan, K., & Maglienti, M. (2001). Comparing the epistemological underpinnings of students' and scientists'reasoning about conclusions. Journal of Research in Science Teaching, 38(6), 663-687.
DOI
ScienceOn
|
46 |
Yore, L. D., Pimm, D., & Tuan, H. (2007). The literacy component of mathematical and scientific literacy. International Journal of Science and Mathematics Education, 5, 559-589
DOI
ScienceOn
|
47 |
Zohar, A., & Nemet, F. (2002). Fostering students'knowledge and argumentation skills through dilemmas in human genetics. Journal of Research in Science Teaching, 39(1), 35-62.
DOI
ScienceOn
|
48 |
Erduran, S., Osborne, J., & Simon, S. (2005). The role of argumentation in developing scientific literacy. In K. Bosersma, M. Goedhart, O. De Jong, & H. Eijkelhof. (Eds.). Research and the quality of science education, (pp. 381-394). Dordrecht.
|
49 |
Gable, D. & Bunce, D. (1984). Research on problem solving in chemistry. In D. Gabel (Ed.), Handbook of Research on Science Teaching and Learning, (pp. 301-326). New York: Macmillan.
|