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Original Articles

Problem-based learning in teaching chemistry: enthalpy changes in systems

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References

  • Acar, B., and L. Tarhan. 2007. “Effect of Cooperative Learning Strategies on Students’ Understanding of Concepts in Electrochemistry.” International Journal of Science and Mathematics Education 5 (2): 349–373.
  • Acar, B., and L. Tarhan. 2008. “Effects of Cooperative Learning on Students’ Understanding of Metallic Bonding.” Research in Science Education 38 (4): 401–420.
  • Albanese, M. A., and S. Mitchell. 1993. “Problem-Based Learning: A Review of Literature on Its Outcomes and Implementation Issues.” Academic Medicine 68 (1): 52–81.10.1097/00001888-199301000-00012
  • Andersson, B. 1990. “Pupils’ Conceptions of Matter and Its Transformations (Age 12–16).” Studies in Science Education 18: 53–85.10.1080/03057269008559981
  • Ayyildiz, Y. 2012. “Kimya Dersi Kimyasal Reaksiyonlar ve Enerji Ünitesiyle İlgili Yapılandırmacı Yaklaşıma Dayalı Bir Aktif Öğrenme Materyalinin Geliştirilmesi, Uygulanması ve Değerlendirilmesi [Development, Application and Evaluation of an Active Learning Material Based on Constructivist Approach in the Subject of Chemical Reactions and Energy in the High School Chemistry].” PhD diss., University of Dokuz Eylul, Izmir, Turkey.
  • Ayyildiz, Y., and L. Tarhan. 2015. “Development of the Self-Directed Learning Skills Scale.” International Journal of Lifelong Education 34 (6): 663–679.
  • Azer, S. A. 2003. “Assessment in a Problem-Based Learning Course: Twelve Tips for Constructing Multiple Choice Questions That Test Students’ Cognitive Skills.” Biochemistry and Molecular Biology Education 31 (6): 428–434.10.1002/(ISSN)1539-3429
  • Bain, K., A. Moon, M. R. Mack, and M. H. Towns. 2014. “A Review of Research on the Teaching and Learning of Thermodynamics at the University Level.” Chemistry Education Research and Practice 15 (3): 320–335.10.1039/C4RP00011K
  • Barker, V. 1995. “A Longitudinal Study of 16–18 Year Old Students’ Understanding of Basic Chemical Ideas.” PhD diss., University of York, York, UK.
  • Barker, Vanessa. 2000. “Beyond Appearances: Students’ Misconceptions about Basic Chemical Ideas.” A Report Prepared for the Royal Society of Chemistry 2: 9–75.
  • Barker, V., and R. Millar. 2000. “Students’ Reasoning about Basic Chemical Thermodynamics and Chemical Bonding: What Changes Occur during a Context-Based Post-16 Chemistry Course?” International Journal of Science Education 22 (11): 1171–1200.10.1080/09500690050166742
  • Barrows, H. S. 1992. The Tutorial Process. Springfield: Southern Illinois University School of Medicine.
  • Barrows, H. S., and R. M. Tamblyn. 1980. Problem-Based Learning: An Approach to Medical Education. New York: Springer.
  • Belt, S. T., E. H. Evans, T. McCreedy, T. L. Overton, and S. Summerfield. 2002. “A Problem Based Learning Approach to Analytical and Applied Chemistry.” University Chemistry Education 6 (2): 65–72.
  • Ben-Zvi, Ruth, Bat-Sheva Eylon, and Judith Silberstein. 1982. “Students Vs. Chemistry: A Study of Student Conceptions of Structure and Process.” Paper presented at the Annual Conference of the National Association for Research in Science Teaching, Fontana, WI.
  • Ben-Zvi, R., B. Eylon, and J. Silberstein. 1987. “Students’ Visualization of a Chemical Reaction.” Education in Chemistry 24 (4): 117–120.
  • Bernstein, P., J. Tipping, K. Bercovitz, and H. A. Skinner. 1995. “Shifting Students and Faculty to a PBL Curriculum: Attitudes Changed and Lessons Learned.” Academic Medicine 70 (3): 245–247.10.1097/00001888-199503000-00019
  • Boo, H. K. 1998. “Students’ Understanding of Chemical Bonds and the Energetic of Chemical Reactions.” Journal of Research in Science Teaching 35: 569–581.10.1002/(ISSN)1098-2736
  • Boo, H. K., and J. R. Watson. 2001. “Progression in High School Students’ (Aged 16–18) Conceptualizations about Chemical Reactions in Solution.” Science Education 85 (5): 568–585.10.1002/(ISSN)1098-237X
  • Bridges, E. M. 1992. Problem Based Learning for Administrators. Eugene, OR: ERIC Clearinghouse.
  • Brook, A., and R. Driver 1984. Aspects of Secondary Students’ Understanding of Energy. Leeds: Centre for Studies in Science and Mathematics Education The University of Leeds.
  • Carson, E. M., and J. R. Watson. 1999. “Undergraduate Students’ Understanding of Enthalpy Change.” University Chemistry Education 3 (2): 46–51.
  • Celik, H. 2016. “An Examination of Cross Sectional Change in Student’s Metaphorical Perceptions towards Heat, Temperature and Energy Concepts.” International Journal of Education in Mathematics, Science and Technology 4 (3): 229–245.10.18404/ijemst.86044
  • Chan, T. W., C.-W. Hue, C.-Y. Chou, and O. J. L. Tzeng. 2001. “Four Spaces of Network Learning Models.” Computers & Education 37 (2): 141–161.10.1016/S0360-1315(01)00044-6
  • Clough, E. E., and R. Driver. 1985. “Secondary Students' Conceptions of the Conduction of Heat: Bringing Together Scientific and Personal Views.” Physics Education 20 (4): 176–182.10.1088/0031-9120/20/4/309
  • Cohen, I., and R. Ben-Zvi. 1982. “Chemical Energy: A Learning Package.” Journal of Chemical Education 59 (8): 655–658.
  • Cooper, M. M., and M. W. Klymkowsky. 2013. “The Trouble with Chemical Energy: Why Understanding Bond Energies Requires an Interdisciplinary Systems Approach.” CBE-Life Sciences Education 12 (2): 306–312.10.1187/cbe.12-10-0170
  • Delafuente, J. C., T. O. Munyer, D. M. Angaran, and P. L. Doering. 1994. “A Problem Solving Active-Learning Course in Pharmacotherapy.” The American Journal of Pharmaceutical Education 58: 61–63.
  • De Vos, W., B. Van Berkel, and A. H. Verdonk. 1994. “A Coherent Conceptual Structure of the Chemistry Curriculum.” Journal of Chemical Education 71 (9): 743–746.10.1021/ed071p743
  • De Vos, W., and A. H. Verdonk. 1986. “A New Road to Reactions, Part 3: Teaching the Heat Effects of Reactions.” Journal of Chemical Education 63 (11): 972–974.10.1021/ed063p972
  • Dods, R. F. 1996. “A Problem-Based Learning Design for Teaching Biochemistry.” Journal of Chemical Education 73 (3): 225.10.1021/ed073p225
  • Doğan, D., N. Aydoğan, Ö. Işıkgil, and B. Demirci. 2007. “Kimya öğretmen adayları ve lise öğrencilerinin Le-chatelier prensibini kavramsal sorularla anlama düzeyleri ve yanılgılarının araştırılması [Chemistry Prospective Teachers’ and High School Students’ Levels of Understanding Le Chatelier’s Principle with Conceptual Questions and İnvestigation of their Misconceptions].” İnönü Üniversitesi Eğitim Fakültesi Dergisi 7 (13): 17–32.
  • Donham, R. S., F. I. Schmieg, and D. E. Allen. 2001. “The Large and the Small of It: A Case Study of Introductory Biology Courses.” In The Power of Problem-Based Learning: A Practical How To’ for Teaching Undergraduate Courses in Any Discipline, edited by B. J. Duch, S. E. Groh, and D. E. Allen, 179–192. Sterling, VA: Stylus Publications.
  • Doymus, K. 2008. “Teaching Chemical Equilibrium with the Jigsaw Technique.” Research in Science Education 38 (2): 249–260.10.1007/s11165-007-9047-8
  • Erickson, G. L. 1979. “Children’s Conceptions of Heat and Temperature.” Science Education 63 (2): 221–230.10.1002/(ISSN)1098-237X
  • Erickson, G. L. 1980. “Children’s Viewpoints of Heat: A Second Look.” Science Education 64 (3): 323–336.10.1002/(ISSN)1098-237X
  • Evensen, D. H., and C. E. Hmelo-Silver. 2000. Problem-Based Learning: A Research Perspective on Learning Interactions. Hillsdale, NJ: Erlbaum.
  • Finegold, M., and R. Trumper. 1989. “Categorizing Pupils’ Explanatory Frameworks in Energy as a Means to the Development of a Teaching Approach.” Research in Science Education 19 (1): 97–110.10.1007/BF02356850
  • Gabel, D. L., K. V. Samuel, and D. Hunn. 1987. “Understanding the Particulate Nature of Matter.” Journal of Chemical Education 64 (8): 695–697.10.1021/ed064p695
  • Garnett, P. J., P. J. Garnett, and M. W. Hackling. 1995. “Students’ Alternative Conceptions in Chemistry: A Review of Research and Implications for Teaching and Learning.” Studies in Science Education 25: 69–95.10.1080/03057269508560050
  • Golestaneh, K. 1998. “Teaching Chemistry through Observation–The Exploding Can Demonstration: A Dramatic Demonstration of an Exothermic Reaction.” Journal of College Science Teaching 27 (5): 356.
  • Greenbowe, T., and D. Meltzer. 2003. “Student Learning of Thermochemical Concepts in the Context of Solution Calorimetry.” International Journal of Science Education 25 (7): 779–800.10.1080/09500690305032
  • Greeno, J. G., A. M. Collins, and L. B. Resnick. 1996. “Cognition and Learning.” In Handbook of Educational Psychology, edited by D. C. Berliner and R. C. Calfee, 15–46. New York: MacMillan.
  • Gürses, A., M. Açıkyıldız, Ç. Doğar, and M. Sözbilir. 2007. “An Investigation into the Effectiveness of Problem-Based Learning in a Physical Chemistry Laboratory Course.” Research in Science & Technological Education 25 (1): 99–113.10.1080/02635140601053641
  • Gussarsky, E., and M. Gorodetsky. 1990. “On the Concept ‘Chemical Equilibrium’: The Associative Framework.” Journal of Research in Science Teaching 27 (3): 197–204.10.1002/(ISSN)1098-2736
  • Hameed, H., M. W. Hackling, and P. J. Garnett. 1993. “Facilitating Conceptual Change in Chemical Equilibrium Using a CAI Strategy.” International Journal of Science Education 15 (2): 221–230.10.1080/0950069930150209
  • Hand, B., and D. F. Treagust. 1991. “Student Achievement and Science Curriculum Development Using a Constructive Framework.” School Science and Mathematics 91 (4): 172–176.10.1111/ssm.1991.91.issue-4
  • Harrison, A. G., D. J. Grayson, and D. F. Treagust. 1999. “Investigating a Grade 11 Student’s Evolving Conceptions of Heat and Temperature.” Journal of Research in Science Teaching 36 (1): 55–87.10.1002/(ISSN)1098-2736
  • Hesse, J. J., and C. W. Anderson. 1992. “Students’ Conceptions of Chemical Change.” Journal of Research in Science Teaching 29 (3): 277–299.10.1002/(ISSN)1098-2736
  • Johnstone, A. H., J. J. MacDonald, and G. Webb. 1977. “Misconceptions in School Thermodynamics.” Physics Education 12 (4): 248.10.1088/0031-9120/12/4/011
  • Kesidou, S., and R. Duit. 1993. “Students’ Conceptions of the Second Law of Thermodynamics – An Interpretive Study.” Journal of Research in Science Teaching 30 (1): 85–106.10.1002/(ISSN)1098-2736
  • Kirschner, P. A., and J. J. van Merriënboer. 2013. “Do Learners Really Know Best? Urban Legends in Education.” Educational Psychologist 48 (3): 169–183.10.1080/00461520.2013.804395
  • Kruger, C. 1990. “Some Primary Teachers’ İdeas about Energy.” Physics Education 25: 86–91.10.1088/0031-9120/25/2/002
  • Lohman, M. C., and M. Finkelstein. 2000. “Designing Groups in Problem-Based Learning to Promote Problem-Solving Skill and Self-Directedness.” Instructional Science 28 (4): 291–307.10.1023/A:1003927228005
  • Lonning, R. A. 1993. “Effect of Cooperative Learning Strategies on Student Verbal Interactions and Achievement during Conceptual Change Instruction in 10th Grade General Science.” Journal of Research in Science Teaching 30 (9): 1087–1101.10.1002/(ISSN)1098-2736
  • Mackenzie, A. M., A. H. Johnstone, and R. I. F. Brown. 2003. “Learning from Problem Based Learning.” University Chemistry Education 7: 13–26.
  • Mannıon, G. 2003. “Children’s Participation in School Grounds Developments: Creating a Place for Education That Promotes Children's Social Inclusion.” International Journal of Inclusive Education 7 (2): 175–192.10.1080/13603110304784
  • McParland, M., L. M. Noble, and G. Livingston. 2004. “The Effectiveness of Problem-Based Learning Compared to Traditional Teaching in Undergraduate Psychiatry.” Medical Education 38 (8): 859–867.10.1111/med.2004.38.issue-8
  • Miller, S. K. 2003. “A Comparison of Student Outcomes following Problem-Based Learning Instruction versus Traditional Lecture Learning in a Graduate Pharmacology Course.” Journal of the American Academy of Nurse Practitioners 15 (12): 550–556.10.1111/jaan.2003.15.issue-12
  • Niaz, M. 2000. “A Framework to Understand Students’ Differentiation between Heat Energy and Temperature and İts Educational Implications.” Interchange 31 (1): 1–20.10.1023/A:1007665712824
  • Niaz, M. 2006. “Can the Study of Thermochemistry Facilitate Students’ Differentiation between Heat Energy and Temperature?” Journal of Science Education and Technology 15 (3–4): 269–276.10.1007/s10956-006-9013-7
  • Nilsson, T., and H. Niedderer. 2014. “Undergraduate Students’ Conceptions of Enthalpy, Enthalpy Change and Related Concepts.” Chemistry Education Research and Practice 15 (3): 336–353.10.1039/C2RP20135F
  • Paik, S. H., B. K. Cho, and Y. M. Go. 2007. “Korean 4-to 11-Year-Old Student Conceptions of Heat and Temperature.” Journal of Research in Science Teaching 44 (2): 284–302.10.1002/(ISSN)1098-2736
  • Prince, M. 2004. “Does Active Learning Work? A Review of the Research.” Journal of Engineering Education-Washington- 93: 223–232.10.1002/jee.2004.93.issue-3
  • Qin, Z., D. W. Johnson, and R. T. Johnson. 1995. “Cooperative versus Competitive Efforts and Problem Solving.” Review of Educational Research 65 (2): 129–143.10.3102/00346543065002129
  • Ram, P. 1999. “Problem-Based Learning in Undergraduate Education: A Sophomore Chemistry Laboratory.” Journal of Chemical Education 76 (8): 1122–1126.10.1021/ed076p1122
  • Ribeiro, G. T. C. 1992. “Entropy and the Second Principle of Thermodynamics-Fourth Year Undergraduates’ Ideas.” Research in Assessment 9: 23–36.
  • Rideout, E., V. England-Oxford, B. Brown, F. Fothergill-Bourbonnais, C. Ingram, G. Benson, M. Ross, and A. Coates. 2002. “A Comparison of Problem-Based and Conventional Curricula in Nursing Education.” Advances in Health Sciences Education 7 (1): 3–17.10.1023/A:1014534712178
  • Ross, K. A. 1993. “There is No Energy in Food and Fuels, but They Do Have Fuel Value.” School Science Review 75 (271): 39–47.
  • Savery, J. R., and T. M. Duffy. 1995. “Problem Based Learning: An İnstructional Model and İts Constructivist Framework.” Educational Technology 35 (5): 31–38.
  • Schmidt, H. G., and J. Moust. 2000. “Towards a Taxonomy of Problems Used in Problem-Based Learning Curricula.” Journal on Excellence in College Teaching 11 (2/3): 57–72.
  • Selepe, C., and J. Bradley. 1997. “Student-Teacher’s Conceptual Difficulties in Chemical Thermodynamics.” In SAARMSE Fifth Annual Meeting, edited M. Sanders, 316–321. Johannesburg: University of the Witwatersrand.
  • Senocak, E., Y. Taskesenligil, and M. Sozbilir. 2007. “A Study on Teaching Gases to Prospective Primary Science Teachers through Problem-Based Learning.” Research in Science Education 37 (3): 279–290.10.1007/s11165-006-9026-5
  • Siegel, S., and N. J. Castellan. 1988. Nonparametric Statistics for the Behavioral Sciences. New York: McGraw-HiU Book Company.
  • Sisovic, D., and S. Bojovic. 2000. “Approaching the Concepts of Acids and Bases by Cooperative Learning.” Chemistry Education Research and Practice 1 (2): 263–275.10.1039/A9RP90027F
  • Soderberg, P., and F. Price. 2003. “An Examination of Problem-Based Teaching and Learning in Population Genetics and Evolution Using EVOLVE, a Computer Simulation.” International Journal of Science Education 25 (1): 35–55.10.1080/09500690110095285
  • Solomon, J. 1985. “Teaching the Conservation of Energy.” Physics Education 20 (4): 165–170.10.1088/0031-9120/20/4/307
  • Sozbilir, Mustafa. 2001. “A Study on Undergraduates’ Understandings of Key Chemical Ideas in Thermodynamics.” PhD diss., University of York, York, UK.
  • Sözbilir, M., and J. M. Bennett. 2007. “A Study of Turkish Chemistry Undergraduates’ Understanding of Entropy.” Journal of Chemical Education 84 (7): 1204–1208.
  • Tarhan, L., and B. Acar. 2007. “Problem-Based Learning in an Eleventh Grade Chemistry Class: ‘Factors Affecting Cell Potential’.” Research in Science and Technological Education 25 (3): 351–369.
  • Tarhan, L., H. Ayar-Kayali, R. Ozturk-Urek, and B. Acar. 2008. “Problem-Based Learning in 9th Grade Chemistry Class: ‘Intermolecular Forces’.” Research in Science Education 38 (3): 285–300.
  • Tarhan, L., and Y. Ayyildiz. 2015. “The Views of Undergraduates about Problem-Based Learning Applications in a Biochemistry Course.” Journal of Biological Education 49 (2): 116–126.
  • Thomas, P. L., and R. W. Schwenz. 1998. “College Physical Chemistry Students’ Conceptions of Equilibrium and Fundamental Thermodynamics.” Journal of Research in Science Teaching 35 (10): 1151–1160.10.1002/(ISSN)1098-2736
  • Vernon, D. T., and R. L. Blake. 1993. “Does Problem-Based Learning Work? A Meta-Analysis of Evaluative Research.” Academic Medicine 68 (7): 550–563.10.1097/00001888-199307000-00015
  • Wang, L., W. Wang, and R. Wei. 2014. “What Knowledge and Ability Should High School Students Have for Understanding Energy in Chemical Reactions? An Analysis of Chemistry Curriculum Standards in Seven Countries and Regions.” In Teaching and Learning of Energy in K – 12 Education, 87–102. London: Springer International Publishing.10.1007/978-3-319-05017-1
  • Webb, N. M., J. D. Troper, and R. Fall. 1995. “Constructive Activity and Learning in Collaborative Small Groups.” Journal of Educational Psychology 87 (3): 406.10.1037/0022-0663.87.3.406
  • White, T. 2001. Investing in People: Higher Education in Ireland from 1960 to 2000. Dublin: Institute of Public Administration.
  • Williams, B. A. 2001. “Introductory Physics: A Problem-Based Model.” In A Practical “How to” for Teaching Undergraduate Courses in Any Discipline: The Power of Problem-Based Learning, edited by B. J. Duch, S. E. Groh and D. E. Allen, 251–271. Sterling, VA: Stylus Publishing.
  • Woods, D. 1985. “Problem-Based Learning and Problem-Solving.” In Problem-Based Learning in Education for the Professions, edited by D. Boud, 19–42. Sydney: HERDSA.
  • Yeo, S., and M. Zadnik. 2001. “Introductory Thermal Concept Evaluation: Assessing Students’ Understanding.” The Physics Teacher 39 (8): 496–504.10.1119/1.1424603
  • Yuzhi, W. 2003. “Using Problem Based Learning in Teaching Analytical Chemistry.” The China Papers 2: 28–33.

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