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Budner, Drew – Journal of Chemical Education, 2020
In an effort to increase student comprehension and retention of basic chemistry concepts within a college level general chemistry course, a series of activities were created. These activities are referred to here as integrated problems. They were developed to help students by continuously reviewing key concepts and incorporating new material into…
Descriptors: Chemistry, College Science, Science Activities, Learning Activities
Makarevitch, Irina; Kralich, Elizabeth – Biochemistry and Molecular Biology Education, 2011
Open-ended, inquiry-based multiweek laboratory exercises are the key elements to increasing students' understanding and retention of the major biological concepts. Including original research into undergraduate teaching laboratories has also been shown to motivate students and improve their learning. Here, we present a series of original…
Descriptors: Genetics, Laboratory Experiments, Science Activities, Science Course Improvement Projects
Peer reviewedPrigo, Robert – American Journal of Physics, 1977
Describes and evaluates introductory physics homework problems done in conjunction with student-performed demonstrations. Discusses them within a process approach to instruction consistent with Piaget's developmental theory. (MLH)
Descriptors: Assignments, College Science, Demonstrations (Educational), Higher Education
Peer reviewedCampbell, J. A. – Journal of Chemical Education, 1973
Descriptors: Biological Sciences, Chemistry, College Science, Ecological Factors
Becker, Wayne M. – 1991
This outline is intended for use in a unit of 10-12 lectures on plant growth and development at the introductory undergraduate level as part of a course on organismal biology. The series of lecture outlines is structured around the life cycle of rapid-cycling Brassica rapa (RCBr). The unit begins with three introductory lectures on general plant…
Descriptors: Biology, College Science, Higher Education, Plant Growth
Peer reviewedBodner, George M. – Journal of Chemical Education, 1987
Differentiates between problems, exercises and algorithms. Discusses the role of algorithms in solving problems and exercises in chemistry. Suggests that very real differences exist between solving problems and exercises, and that problem solving steps can be and should be taught in chemistry education. (TW)
Descriptors: Algorithms, Chemistry, College Science, Higher Education

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