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Hicks, Randall W.; Bevsek, Holly M. – Journal of Chemical Education, 2012
A series of qualitative analysis (QA) laboratory experiments utilizing a problem-based learning (PBL) module has been designed and implemented. The module guided students through the experiments under the guise of cleaning up a potentially contaminated water site as employees of an environmental chemistry laboratory. The main goal was the…
Descriptors: Chemistry, Science Instruction, Problem Based Learning, Laboratory Experiments
Potvin, Patrice; Mercier, Julien; Charland, Patrick; Riopel, Martin – Research in Science Education, 2012
This research investigates the effect of classroom explicitation of initial conceptions (CEIC) on conceptual change in the context of learning electricity. Eight hundred and seventy five thirteen year-olds were tested in laboratory conditions to see if CEIC is or is not a productive step toward conceptual change. All students experienced a…
Descriptors: Experimental Groups, Misconceptions, Concept Formation, Laboratories
Raker, Jeffrey R.; Towns, Marcy H. – Chemistry Education Research and Practice, 2012
Understanding of the nature of science is key to the development of new curricular materials that mirror the practice of science. Three problem types (project level, synthetic planning, and day-to-day) in synthetic organic chemistry emerged during a thematic content analysis of the research experiences of eight practising synthetic organic…
Descriptors: Organic Chemistry, Scientific Research, College Science, Science Instruction
Meyer, Allison Antink – Science Teacher, 2012
Science teachers are often content to leave creativity to the arts and humanities classes. Fostering creativity in science, if attempted at all, is a challenge often relegated to the gifted classroom. But not just the privileged few have the capacity to be creative. Simply restructuring existing lessons can help promote creativity in all science…
Descriptors: Thinking Skills, Creativity, Science Teachers, Humanities
Lant, Christopher; Pérez-Lapeña, Blanca; Xiong, Weidong; Kraft, Steven; Kowalchuk, Rhonda; Blair, Michael – Journal of Geoscience Education, 2016
Guided by the Next Generation Science Standards and elements of problem-based learning, four human-environment systems simulations are described in brief--carbon, energy, water, and watershed--and a fifth simulation on nitrogen is described in more depth. These science, technology, engineering, and math (STEM) education simulations illustrate…
Descriptors: Energy, Water Quality, Conservation (Environment), Soil Science
Chung, Pansy; Yeh, Ron Chuen; Chen, Yi-Cheng – International Journal of Technology and Design Education, 2016
In order to respond to the ever-changing global economic environment, the technological and vocational education system in Taiwan needs to be dramatically reformed to the changing needs of the domestic industrial structure. Integrating practical talents with practical industrial experiences and competences can help avoid discrepancy and close the…
Descriptors: Problem Based Learning, Learning Strategies, Vocational Education, Technology Education
Virtanen, Jaana; Rasi, Päivi – Interdisciplinary Journal of Problem-based Learning, 2016
In this article we present and discuss the process of developing and implementing a PBL-based course entitled Moving Images in Teaching and Learning that was held at the University of Lapland, Finland. In the course of the project, this fairly traditional face-to-face course was redesigned into a blended PBL course by integrating Web 2.0…
Descriptors: Technology Integration, Web 2.0 Technologies, Conventional Instruction, Problem Based Learning
Vivian, Rebecca; Falkner, Katrina; Falkner, Nickolas; Tarmazdi, Hamid – ACM Transactions on Computing Education, 2016
Although teamwork has been identified as an essential skill for Computer Science (CS) graduates, these skills are identified as lacking by industry employers, which suggests a need for more proactive measures to teach and assess teamwork. In one CS course, students worked in teams to create a wiki solution to problem-based questions. Through a…
Descriptors: Cooperative Learning, Collaborative Writing, Web 2.0 Technologies, Computer Science Education
Jones, Steve – Psychology Teaching Review, 2013
This paper describes the introduction of Problem-Based Learning (PBL) into a final-year option module in psychology. The background and rationale for the changes introduced are discussed and the experience of PBL is considered from the point of view of tutor and students. The introduction of PBL considerably increased student attainment in the…
Descriptors: Problem Based Learning, Psychology, College Seniors, Academic Achievement
El-Khalili, Nuha H. – International Journal of Information and Communication Technology Education, 2013
Many studies have reported the utilization of Problem-Based Learning (PBL) in teaching Software Engineering courses. However, these studies have different views of the effectiveness of PBL. This paper presents the design of an Advanced Software Engineering course for undergraduate Software Engineering students that uses PBL to teach them Agile…
Descriptors: Problem Based Learning, Teaching Methods, Computer Software, Undergraduate Students
Stegeager, Nikolaj; Thomassen, Anja Overgaard; Laursen, Erik – Journal of Problem Based Learning in Higher Education, 2013
This article presents the PBL model applied at Aalborg University in order to discuss research findings with regard to the educational effectiveness of the PBL model in securing an efficient transfer of learning from university driven continuing education to the context of the workplace. In recent years Aalborg University has seen a progressive…
Descriptors: Problem Based Learning, Continuing Education, Foreign Countries, Program Effectiveness
Murray-Harvey, Rosalind; Pourshafie, Tahereh; Reyes, Wilma Santos – Journal of Problem Based Learning in Higher Education, 2013
Group work, an essential component of learning and teaching in problem-based learning (PBL), is compromised if students' experiences of PBL are colored by dissatisfaction with the process or outcomes. For the potential benefits of PBL to be realized PBL group work must be genuinely collaborative to address students' personal and professional…
Descriptors: Cooperation, Preservice Teachers, Problem Based Learning, Teaching Methods
Coffin, Prarthana – Journal of Problem Based Learning in Higher Education, 2013
Staff development is a crucial element for educational intervention. Recognizing the importance of staff development, this study aims to pin-point suitable methodologies in developing a Problem-Based Learning (PBL) academic staff development program for a higher education institute where PBL has become an intervention alternative. The study aims…
Descriptors: Program Development, Problem Based Learning, Specialists, Workshops
Branson, John; Thomson, Diane – Learning & Leading with Technology, 2013
The U.S. military has long understood the value of immersive simulations in education. Before the Navy entrusts a ship to a crew, crew members must first practice and demonstrate their competency in a fully immersive, simulated environment. Why not teach students in the same way? K-12 educators in Pennsylvania, USA, recently did just that when…
Descriptors: Experiential Learning, Teaching Methods, Armed Forces, Cooperative Programs
Klopp, Eric; Stark, Robin; Kopp, Veronika; Fischer, Martin R. – Journal of Education and Learning, 2013
The acquisition of diagnostic competence is seen as a major goal during the course of study in medicine. One innovative method to foster this goal is problem-based learning with erroneous worked examples provided in a computer learning environment. The present study explores the relationship of attitudinal, emotional and cognitive factors for…
Descriptors: Foreign Countries, Medical Students, Psychological Patterns, Problem Based Learning

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