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RESEARCH REPORT

Students’ Conceptions of Ionisation Energy: A Cross‐cultural Study

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Pages 263-283 | Published online: 28 Nov 2007

References

  • Ausubel , D. 1968 . Educational psychology: A cognitive view , New York, Holt : Rinehart & Winston .
  • Birk , J. P. and Kurtz , M. J. 1999 . Effect of experience on retention and elimination of misconceptions about molecular structure and bonding . Journal of Chemical Education , 76 (1) : 124 – 128 .
  • Boo , H. K. 1998 . Students’ understanding of chemical bonds and the energetics of chemical reactions . Journal of Research in Science Teaching , 35 (5) : 569 – 581 .
  • Cann , P. 2000 . Ionization energies, parallel spins, and the stability of half‐filled shells . Journal of Chemical Education , 77 (8) : 1056 – 1061 .
  • Carr , M. 1984 . Model confusion in chemistry . Research in Science Education , 14 : 97 – 103 .
  • Coll , R. K. and Treagust , D. F. 2002 . Learners’ use of analogy and alternative conceptions for chemical bonding: A cross‐age study . Australian Science Teachers’ Journal , 48 (1) : 24 – 32 .
  • Coll , R. K. and Treagust , D. F. 2003 . Learners’ mental models of metallic bonding: A cross‐age study . Science Education , 87 (5) : 685 – 707 .
  • de Posada , J. M. 1997 . Conceptions of high school students concerning the internal structure of metals and their electric conduction: Structure and evolution . Science Education , 81 (4) : 445 – 467 .
  • Driver , R. , Leach , J. , Millar , R. and Scott , P. 1996 . Young people’s images of science , Buckingham, , UK : Open University Press .
  • Goh , N. K. , Khoo , L. E. and Chia , L. S. 1993 . Some misconceptions in chemistry: A cross‐cultural comparison and implications for teaching . Australian Science Teachers Journal , 39 (3) : 65 – 68 .
  • Goodwin , A. 2000 . The teaching of chemistry: Who is the learner? . Chemistry Research: Research and Practice , 1 (1) : 51 – 60 . Retrieved February 22, 2006, from http://www.uoi.gr/cerp/2000_January/pdf/11goodwinf.pdf
  • Johnson , P. 2000 . Children’s understanding of substances, part 1: Recognising chemical change . International Journal of Science Education , 22 (7) : 719 – 737 .
  • Johnstone , A. H. 1999 . The nature of chemistry . Education in Chemistry , 36 (2) : 45 – 47 .
  • Johnstone , A. H. 2000 . Teaching of chemistry—Logical or psychological? . Chemistry Education: Research and Practice , 1 (1) : 9 – 15 . Retrieved January 20, 2006, from http://www.uoi.gr/cerp/2000_January/pdf/056johnstonef.pdf
  • Kozma , R. , Chin , E. , Russell , J. and Marx , N. 2000 . The roles of representations and tools in the chemistry laboratory and their implications for chemistry learning . The Journal of the Learning Sciences , 9 (2) : 105 – 143 .
  • Krnel , D. , Glazar , S. S. and Watson , R. 2003 . The development of the concept of “matter”: A cross‐age study of how children classify materials . Science Education , 87 (5) : 621 – 637 .
  • Lin , H. S. , Cheng , H. J. and Lawrenz , F. 2000 . The assessment of students’ and teachers’ understanding of gas laws . Journal of Chemical Education , 77 (2) : 235 – 237 .
  • Nakhleh , M. B. and Krajcik , J. S. 1994 . Influence of levels of information as presented by different technologies on students’ understanding of acid, base and pH concepts . Journal of Research in Science Teaching , 31 (10) : 1077 – 1096 .
  • Nakhleh , M. B. and Samarapungavan , A. 1999 . Elementary school children’s beliefs about matter . Journal of Research in Science Teaching , 36 (7) : 777 – 805 .
  • Novak , J. D. 1976 . Learning process and teaching methods . Science Education , 60 (4) : 493 – 512 .
  • Novak , J. D. 2002 . Meaningful learning: The essential factor for conceptual change in limited or inappropriate propositional hierarchies leading to empowerment of learners . Science Education , 86 (4) : 548 – 571 .
  • Osborne , R. J. , Bell , B. F. and Gilbert , J. K. 1983 . Science teaching and children’s views of the world . European Journal of Science Education , 5 (1) : 1 – 14 .
  • Peterson , R. F. , Treagust , D. F. and Garnett , P. 1989 . Development and application of a diagnostic instrument to evaluate grade‐11 and ‐12 students’ concepts of covalent bonding and structure following a course of instruction . Journal of Research in Science Teaching , 26 (4) : 301 – 314 .
  • Ross , B. and Munby , H. 1991 . Concept mapping and misconceptions: A study of high‐school students’ understandings of acids and bases . International Journal of Science Education , 13 (1) : 11 – 23 .
  • Sanger , M. J. 2000 . Using particulate drawings to determine and improve students’ conceptions of pure substances and mixtures . Journal of Chemical Education , 77 (6) : 762 – 766 .
  • Sanger , M. J. and Greenbowe , T. J. 1999 . An analysis of college chemistry textbooks as sources of misconceptions and errors in electrochemistry . Journal of Chemical Education , 76 (6) : 853 – 860 .
  • Schank , P. and Kozma , R. 2002 . Learning chemistry through the use of a representation‐based knowledge building environment . Journal of Computers in Mathematics and Science Teaching , 21 (3) : 253 – 279 .
  • Snir , J. , Smith , C. L. and Raz , G. 2003 . Linking phenomena with competing underlying models: A software tool for introducing students to the particulate model of matter . Science Education , 87 (6) : 794 – 830 .
  • Solomonidou , C. and Stavridou , H. 2000 . From inert object to chemical substance: Students’ initial conceptions and conceptual development during an introductory experimental chemistry sequence . Science Education , 84 (3) : 382 – 400 .
  • Soudani , M. , Sivade , A. , Cros , D. and Medimagh , M. S. 2000 . Transferring knowledge from the classroom to the real world: redox concepts . School Science Review , 82 (298) : 65 – 72 .
  • Taber , K. S. 1997 . Student understanding of ionic bonding: Molecular versus electrostatic framework? . School Science Review , 78 (285) : 85 – 95 .
  • Taber , K. S. 1998a . The sharing‐out of nuclear attraction: Or “I can’t think about physics in chemistry” . International Journal of Science Education , 20 (8) : 1001 – 1014 .
  • Taber , K. S. 1998b . An alternative conceptual framework from chemistry education . International Journal of Science Education , 20 (5) : 597 – 608 .
  • Taber , K. S. 1999a . Ideas about ionisation energy: A diagnostic instrument . School Science Review , 81 (295) : 97 – 104 .
  • Taber , K. S. 1999b . Alternative frameworks in chemistry . Education in Chemistry , 36 (5) : 135 – 137 .
  • Taber , K. S. 2000 . Chemistry lessons for universities?: A review of constructivist ideas . University Chemistry Education , 4 (2) : 63 – 72 .
  • Taber , K. S. 2001 . Building the structural conception of chemistry: Some considerations from educational research . Chemistry Education: Research and Practice , 2 (2) : 123 – 158 . Retrieved April 26, 2006, from http://www.uoi.gr/cerp/2001_May/pdf/09Taber.pdf
  • Taber , K. S. 2003a . Mediating mental models of metals: Acknowledging the priority of the learner’s prior learning . Science Education , 87 (5) : 732 – 758 .
  • Taber , K. S. 2003b . Understanding ionisation energy: Physical, chemical and alternative conceptions . Chemistry Education Research and Practice , 4 (2) : 149 – 169 . Retrieved February 17, 2006, from http://www.uoi.gr/cerp/2003_May/pdf/05Taber.pdf
  • Taber , K. S. 2005 . Learning quanta: Barriers to stimulating transitions in student understanding of orbital ideas . Science Education , 89 (1) : 94 – 116 .
  • Taber , K. S. and Tan , K. C. D. 2007 . Exploring learners’ conceptual resources: Singapore A level students’ explanations in the topic of ionisation energy . International Journal of Science and Mathematics Education , 5 (3) : 375 – 392 .
  • Taber , K. S. and Watts , M. 1996 . The secret life of the chemical bond: Students’ anthropomorphic and animistic references to bonding . International Journal of Science Education , 18 (5) : 557 – 568 .
  • Tan , K. C. D. 2005 . Pre‐service teachers’ conceptions of basic inorganic qualitative analysis . Canadian Journal of Science, Mathematics and Technology Education , 5 (1) : 7 – 20 .
  • Tan , K. C. D. , Goh , N. K. , Chia , L. S. and Taber , K. S. 2005 . Development of a two‐tier multiple choice diagnostic instrument to determine a‐level students’ understanding of ionisation energy , Singapore, , Singapore : National Institute of Education .
  • Tan , K. C. D. , Goh , N. K. , Chia , L. S. and Treagust , D. F. 2002 . Development and application of a two‐tier multiple choice diagnostic instrument to assess high school students’ understanding of inorganic chemistry qualitative analysis . Journal of Research in Science Teaching , 39 (4) : 283 – 301 .
  • Tan , K. C. D. , Taber , K. S. , Goh , N. K. and Chia , L. S. 2005 . The ionisation energy diagnostic instrument: A two‐tier multiple‐choice instrument to determine high school students’ understanding of ionisation energy . Chemistry Education: Research and Practice , 6 (4) : 180 – 197 . Retrieved February 17, 2006, from http://www.rsc.org/images/Tanpaper_tcm18-41069.pdf
  • Tan , K. C. D. and Treagust , D. F. 1999 . Evaluating students’ understanding of chemical bonding . School Science Review , 81 (294) : 75 – 83 .
  • Treagust , D. F. 1995 . “ Diagnostic assessment of students’ science knowledge ” . In Learning science in the schools: Research reforming practice , Edited by: Glynn , S. M. and Duit , R. 327 – 346 . Mahwah, NJ : Lawrence Erlbaum Associates .
  • Tsaparlis , G. 2000 . Chemistry and science education versus education: A top‐down and bottom‐up relation . Chemistry Education: Research and Practice , 1 (1) : 5 – 7 . Retrieved February 16, 2006, from http://www.uoi.gr/cerp/2000_January/pdf/04cerapin3.pdf
  • Van Driel , J. H. 2002 . Students’ corpuscular conceptions in the context of chemical equilibrium and chemical kinetics . Chemistry Education: Research and Practice , 3 (2) : 201 – 213 . Retrieved February 24, 2006, from http://www.uoi.gr/cerp/2002_May/pdf/10VanDriel.pdf
  • Wandersee , J. H. , Mintzes , J. J. and Novak , J. D. 1994 . “ Research on alternative conceptions in science ” . In Handbook of research on science teaching and learning , Edited by: Gabel , D. L. 177 – 210 . New York : Macmillan .
  • Wu , H.‐K. , Krajcik , J. S. and Soloway , E. 2001 . Promoting understanding of chemical representations: Students’ use of a visualization tool in the classroom . Journal of Research in Science Teaching , 38 (7) : 821 – 842 .

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