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Zalles, Daniel R.; Manitakos, James – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2016
Studying Topography, Orographic Rainfall, and Ecosystems with Geospatial Information Technology (STORE), a 4.5-year National Science Foundation funded project, explored the strategies that stimulate teacher commitment to the project's driving innovation: having students use geospatial information technology (GIT) to learn about weather, climate,…
Descriptors: Geographic Information Systems, Technology Uses in Education, Technology Integration, Faculty Development
Cervato, Cinzia; Gallus, William; Flory, Dave; Moss, Elizabeth; Slade, Michael; Kawaler, Steve; Marengo, Massimo; Woo, Keith; Krumhardt, Barbara; Clough, Mike; Campbell, Alexis; Acerbo, Martin – Journal of College Science Teaching, 2015
Lab components of undergraduate science courses typically have students complete highly directed cookbook-like laboratory activities. These experiences rarely engage students in a meaningful manner and do not accurately convey what the work of science entails. With funding from the Howard Hughes Medical Institute (HHMI), we have created more…
Descriptors: Communities of Practice, Undergraduate Students, Student Research, Student Experience
Barsoum, Mark J.; Sellers, Patrick J.; Campbell, A. Malcolm; Heyer, Laurie J.; Paradise, Christopher J. – CBE - Life Sciences Education, 2013
We redesigned the undergraduate introductory biology course by writing a new textbook ("Integrating Concepts in Biology" ["ICB"]) that follows first principles of learning. Our approach emphasizes primary data interpretation and the utility of mathematics in biology, while de-emphasizing memorization. This redesign divides biology into five big…
Descriptors: Biology, Science Instruction, Data Interpretation, Textbooks
Rowland, Susan L.; Smith, Christopher A.; Gillam, Elizabeth M. A.; Wright, Tony – Biochemistry and Molecular Biology Education, 2011
A strong, recent movement in tertiary education is the development of conceptual, or "big idea" teaching. The emphasis in course design is now on promoting key understandings, core competencies, and an understanding of connections between different fields. In biochemistry teaching, this radical shift from the content-based tradition is…
Descriptors: Scientific Research, Biochemistry, Concept Teaching, Scientific Concepts
Goldey, Ellen S.; Abercrombie, Clarence L.; Ivy, Tracie M.; Kusher, Dave I.; Moeller, John F.; Rayner, Doug A.; Smith, Charles F.; Spivey, Natalie W. – CBE - Life Sciences Education, 2012
We transformed our first-year curriculum in biology with a new course, Biological Inquiry, in which greater than 50% of all incoming, first-year students enroll. The course replaced a traditional, content-driven course that relied on outdated approaches to teaching and learning. We diversified pedagogical practices by adopting guided inquiry in…
Descriptors: Majors (Students), Teaching Methods, Biology, Undergraduate Study
Bodzin, Alec; Peffer, Tamara; Kulo, Violet – Journal of Technology and Teacher Education, 2012
Teaching and learning about geospatial aspects of energy resource issues requires that science teachers apply effective science pedagogical approaches to implement geospatial technologies into classroom instruction. To address this need, we designed educative curriculum materials as an integral part of a comprehensive middle school energy…
Descriptors: Curriculum Development, Energy, Educational Change, Science Teachers
Caudill, Lester; Hill, April; Hoke, Kathy; Lipan, Ovidiu – CBE - Life Sciences Education, 2010
Funded by innovative programs at the National Science Foundation and the Howard Hughes Medical Institute, University of Richmond faculty in biology, chemistry, mathematics, physics, and computer science teamed up to offer first- and second-year students the opportunity to contribute to vibrant, interdisciplinary research projects. The result was…
Descriptors: Research Projects, Physics, Chemistry, Biology
Confrey, Jere; Krupa, Erin – Center for the Study of Mathematics Curriculum, 2010
In June 2010, the National Governor's Association and the Council of Chief State School Officers published "Common Core State Standards" (CCSS) for K-12 mathematics. Forty-eight states collaborated in the development of CCSS and, to date, 34 states have officially adopted CCSS to replace existing state standards. CCSS presents an opportunity for…
Descriptors: Curriculum Design, Curriculum Development, Curriculum Implementation, State Standards
Subero, Keron – ProQuest LLC, 2010
We designed and implemented curriculum intended to be used by students in an algebra-based introductory physics laboratory course. Our curricular goal was to foster, through observations in the lab, a coherent framework in students' understanding of general principles presented in the introductory mechanics course, while addressing known student…
Descriptors: Curriculum Development, Pretests Posttests, Mechanics (Physics), Laboratories
Allen, Kasi; St. John, Mark; Tambe, Pamela – Inverness Research, 2009
Back in 1992, the National Science Foundation (NSF) awarded grants to five curriculum development teams and charged them with the task of starting over. Five years later, each of the development teams had produced an innovative and "integrated" curriculum. All represented notable departures from the commonly encountered, calculus-driven high…
Descriptors: National Curriculum, Curriculum Development, High Schools, Mathematics Education
Leonard, William H. – Journal of Biological Education, 2004
This article presents a brief history of the events leading up to the current US biology education standards, a brief examination of the National Science Education Standards for biology, and a description of the three recently developed biology curricula that were designed to address the new standards. Several evaluative studies of these curricula…
Descriptors: Biology, Academic Standards, National Standards, Science Education