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Redman, Erin – Journal of Teacher Education for Sustainability, 2013
Teacher education for sustainability is a central part of integrating sustainability into classrooms and schools. However, educating for sustainability is not limited to increased content knowledge; rather it encompasses different forms of knowledge that embrace the normative, dynamic and action-oriented nature of sustainability. Curriculum for a…
Descriptors: Sustainability, Elementary Secondary Education, Case Studies, Curriculum Development
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Sandi-Urena, Santiago; Cooper, Melanie M.; Gatlin, Todd A. – Chemistry Education Research and Practice, 2011
Research in general chemistry laboratory instruction has rarely focused on the impact of the learning environment on the graduate teaching assistants (GTAs). We decided to investigate the effect that facilitating a well established cooperative problem-based chemistry laboratory has on GTAs' epistemological and metacognitive development, and how…
Descriptors: Science Instruction, Graduate Students, Educational Environment, Cooperative Learning
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Musante, Susan – BioScience, 2011
Students at Calvin College in Grand Rapids, Michigan, can now take an innovative biology course in which an integrated, interdisciplinary, problem-based approach is used--one that the scientific community itself is promoting. The first course in a four-semester sequence, Biology 123--The Living World: Concepts and Connections--explores real-world…
Descriptors: World Problems, Biology, Teaching Methods, Sustainable Development
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Casla, Alberto Vicario; Zubiaga, Isabel Smith – Biochemistry and Molecular Biology Education, 2010
Students often have an oversimplified view of biological facts, which may hinder subsequent understanding when conceptual complexity gives rise to cognitive conflicts. To avoid this situation here, we present a PBL approach for the analysis of Ehlers-Danlos syndrome (EDS), which integrates a variety of topics in cell biology, genetics, and…
Descriptors: Problem Based Learning, Genetics, Cytology, Molecular Biology
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Ford, Danielle J.; Fifield, Steve; Madsen, John; Qian, Xiaoyu – Journal of Science Teacher Education, 2013
We describe the Science Semester, a semester-long course block that integrates three science courses and a science education methods course for elementary teacher education majors, and examine prospective elementary teachers' developing conceptions about inquiry, science teaching efficacy, and reflections on learning through inquiry. The…
Descriptors: Inquiry, Interdisciplinary Approach, Preservice Teacher Education, Elementary School Curriculum
Brown, Scott W.; Lawless, Kimberly A.; Boyer, Mark A. – Interdisciplinary Journal of Problem-based Learning, 2013
Problem-based learning (PBL) is an instructional design approach for promoting student learning, understanding and knowledge development in context rich settings. Previous PBL research has primarily focused on face-to-face learning environments, but current technologies afford PBL designers the opportunities to create online, virtual, PBL…
Descriptors: Problem Based Learning, Instructional Design, Blended Learning, Simulated Environment
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Marle, Peter D.; Decker, Lisa; Taylor, Victoria; Fitzpatrick, Kathleen; Khaliqi, David; Owens, Janel E.; Henry, Renee M. – Journal of Chemical Education, 2014
This paper discusses a K-12/university collaboration in which students participated in a four-day scenario-based summer STEM (science, technology, engineering, and mathematics) camp aimed at making difficult scientific concepts salient. This scenario, Jumpstart STEM-CSI: Chocolate Science Investigation (JSCSI), used open- and guided-inquiry…
Descriptors: Secondary School Science, Science Instruction, Learner Engagement, High School Students
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Ruiz-Gallardo, Jose-Reyes; Castano, Santiago; Gomez-Alday, Juan J.; Valdes, Arturo – Teaching and Teacher Education: An International Journal of Research and Studies, 2011
This study examines student workload after a change in teaching style from lecture to Problem Based Learning and Cooperative Learning, and its relationship with student outcomes. Results show that the change clearly overloads students if it is not adequately planned and monitored. Marks, drop-outs and attendance were markedly better with the new…
Descriptors: Problem Based Learning, Cooperative Learning, Natural Sciences, Teacher Education Programs
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Keebaugh, Alaine; Darrow, Lyndsey; Tan, David; Jamerson, Heather – International Journal of Teaching and Learning in Higher Education, 2009
Previous research has highlighted the effectiveness of Problem-Based Learning (PBL) in multiple disciplinary settings, including medicine, teacher education, business, allied health, and the social sciences. Yet interdisciplinary educators have very little information about how to implement PBL in classrooms where multiple disciplines are…
Descriptors: Research Methodology, Interdisciplinary Approach, Social Sciences, Problem Based Learning
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Short, Michael; Short, Anne; Vankempen, Rachel; Seymour, Michael; Burnatowska-Hledin, Maria – Biochemistry and Molecular Biology Education, 2010
Practical instruction of proteomics concepts was provided using high-performance liquid chromatography coupled with a mass selective detection system (HPLC-MS) for the analysis of simulated protein digests. The samples were prepared from selected dipeptides in order to facilitate the mass spectral identification. As part of the prelaboratory…
Descriptors: Biochemistry, Spectroscopy, Teaching Methods, Science Instruction
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Krnel, Dusan; Druzina, Branko; McCloughlin, Thomas – Journal of Biological Education, 2011
This paper presents one of the ways in which the ideas of active learning, problem solving, using history of science, probing students' ideas and other approaches can be implemented to bring about meaningful learning. The example is taken from the plant chemistry and is suitable for the lower secondary level. In this paper we wanted to show how,…
Descriptors: Chemistry, Active Learning, Metacognition, Teaching Methods
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Liu, Min; Horton, Lucas; Olmanson, Justin; Toprac, Paul – Educational Technology Research and Development, 2011
This study examines middle school students' learning and motivation as they engaged in a new media enriched problem-based learning (PBL) environment for middle school science. Using a mixed-method design with both quantitative and qualitative data, we investigated the effect of a new media environment on sixth graders' science learning, their…
Descriptors: Student Attitudes, Problem Based Learning, Student Motivation, Scores
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Knisley, Jeff; Behravesh, Esfandiar – CBE - Life Sciences Education, 2010
Because quantitative biology requires skills and concepts from a disparate collection of different disciplines, the scientists of the near future will increasingly need to rely on collaborations to produce results. Correspondingly, students in disciplines impacted by quantitative biology will need to be taught how to create and engage in such…
Descriptors: Biomedicine, Biology, Interdisciplinary Approach, Curriculum Development
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Foutz, Tim; Navarro, Maria; Hill, Roger B.; Thompson, Sidney A.; Miller, Kathy; Riddleberger, Deborah – Journal of STEM Education: Innovations and Research, 2011
An outcome of a 1998 forum sponsored by the National Research Council was a recognition that topics related to food production and agriculture are excellent mechanisms for integrating science topics taught in the K-12 education system and for providing many avenues for inquiry based and project based learning. The engineering design process is…
Descriptors: Food Service, High Schools, Student Projects, Elementary Secondary Education
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Sandi-Urena, Santiago; Cooper, Melanie M.; Gatlin, Todd A.; Bhattacharyya, Gautam – Chemistry Education Research and Practice, 2011
Most educators and scientists would agree that science laboratory instruction has the potential of developing science practices fundamental to achieving scientific literacy. However, there is scant evidence to support that this potential is realized, particularly in tertiary level education. This paper reports qualitative results from a sequential…
Descriptors: Chemistry, Science Laboratories, Metacognition, Scientific Literacy
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