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Kobulnicky, Henry A.; Dale, Daniel A. – Journal of College Science Teaching, 2016
This article describes a community mentoring model for UREs that avoids some of the common pitfalls of the traditional paradigm while harnessing the power of learning communities to provide young scholars a stimulating collaborative STEM research experience.
Descriptors: Science Instruction, Science Education, Mentors, Higher Education
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Kendricks, Kimberly; Arment, Anthony – Journal of College Science Teaching, 2011
K-12 education has identified an important need for culturally relevant practices among underrepresented minority students in the classroom. Research has shown that minority students perform better in multicultural learning environments that place an emphasis on addressing both the student's social and academic needs. Accordingly, Central State…
Descriptors: Student Attitudes, Elementary Secondary Education, Program Effectiveness, Minority Groups
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Barreto, Jose C.; Dubetz, Terry A.; Schmidt, Diane L.; Isern, Sharon; Beatty, Thomas; Brown, David W.; Gillman, Edward; Alberte, Randall S.; Egiebor, Nosa O. – Journal of College Science Teaching, 2007
Core concepts can be integrated throughout lower-division science and engineering courses by using a series of related, cross-referenced laboratory experiments. Starting with butane combustion in chemistry, the authors expanded the underlying core concepts of energy transfer into laboratories designed for biology, physics, and engineering. This…
Descriptors: Laboratory Experiments, Laboratory Procedures, Scientific Concepts, Science Curriculum
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Jungck, John Richard – Journal of College Science Teaching, 1977
Presents a simple pedagogical model to teach the importance of antiparallel complementarity in nucleotide pairing when replication, transcription and coding are initially introduced. (HM)
Descriptors: Biology, College Science, Genetics, Higher Education
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Dawes, John A. – Journal of College Science Teaching, 1977
Presents a simulation model approach to the study of evolution. This model combines both practical and theoretical aspects of evolutionary biology course work. The author has used laboratory hardware for this simulation with 20 working groups of students. (HM)
Descriptors: Biology, Evolution, Higher Education, Laboratory Procedures
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Epstein, Jerome – Journal of College Science Teaching, 1998
Describes a remedial college course in which discovery-based teaching and physical models are employed to teach students how to think. Discusses program content, program structure, program goals, results of the course, and the impact on student success in future science and math courses. (DKM)
Descriptors: Cognitive Development, Course Content, Discovery Learning, Higher Education