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Day, Christopher; Koivu, Kendra L. – Journal of Political Science Education, 2019
When it comes to research design, the literature largely focuses on prescriptions for strengthening causal inference--identifying confounders, selecting appropriately comparable cases, generating testable hypotheses, etc. This approach to research design features the logic of inquiry heavily, but overlooks the logic of discovery. The logic of…
Descriptors: Puzzles, Problem Based Learning, Research Design, Research Projects
Tuttle, Nicole; Obringer, Mary; Czajkowski, Kevin; Czerniak, Charlene M. – Science and Children, 2014
Children are natural scientists full of curiosity. This curiosity allows them to ask questions about and to investigate their surroundings. Since science is not just a collection of facts to be learned, but rather investigations that need to be made, teachers should encourage that natural curiosity in the classroom. Luckily, the "Next…
Descriptors: Investigations, Science Education, Science Activities, Teaching Methods
Forringer, Ted – Physics Teacher, 2014
In our science for non-science majors course "21st Century Physics," we investigate modern "Hubble plots" (plots of velocity versus distance for deep space objects) in order to discuss the Big Bang, dark matter, and dark energy. There are two potential challenges that our students face when encountering these topics for the…
Descriptors: Inquiry, Nonmajors, Physics, Discovery Processes
Garner, Charles M. – Journal of Chemical Education, 2005
A discovery-based experiment is developed depending on a "false assumption" that the students mistakenly assume they know the structure of a reaction product and are forced to reconcile observations that are inconsistent with this assumption. This experiment involves the chemistry of azulenes, an interesting class of intensely colored aromatic…
Descriptors: Chemistry, Heuristics, Discovery Processes, Misconceptions
Hjalmarson, Margret; Diefes-Dux, Heidi A.; Bowman, Keith; Zawojewski, Judith S. – Journal of STEM Education: Innovations and Research, 2006
We have designed model-development sequences using a common context to provide authentic problem-solving experiences for first-year students. The model-development sequence takes a model-eliciting activity a step further by engaging students in the exploration and adaptation of a mathematical model (e.g., procedure, algorithm, method) for solving…
Descriptors: Problem Solving, Learning Experience, College Freshmen, Mathematical Models

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