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Krieter, Felicia E.; Julius, Ryan W.; Tanner, Kimberly D.; Bush, Seth D.; Scott, Gregory E. – Journal of Chemical Education, 2016
An underlying goal in most chemistry curricula is to enable students to think like chemists, yet there is much evidence to suggest that students can learn to solve problems without thinking conceptually like a chemist. There are few tools, however, that assess whether students are learning to think like Ph.D. faculty, putative experts in the…
Descriptors: Chemistry, Task Analysis, Critical Thinking, Expertise
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Weiss, Tarin Harrar – Science and Children, 2013
Of the eight scientific practices highlighted in "A Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas," the first is for students to develop abilities to ask questions and define problems (NRC 2012). Constructing a range of questions about an object or phenomenon validates not only what students have…
Descriptors: Questioning Techniques, Scientific Concepts, Scientific Literacy, Teaching Methods
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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
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Maloney, David P. – Physics Teacher, 1990
Students' conceptions of the concept of force are discussed. Possible problem formats and exercises are presented. The need for many formats and variations to help students' resolve their conflicting ideas about physics concepts is stressed. (CW)
Descriptors: Cognitive Development, College Science, Force, Higher Education