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Sara E. Johnson; Taylor A. Bell; Joseph K. West – Journal of Chemical Education, 2022
As an alternative to the traditional metallocene laboratory targets, students synthesize Cp[subscript 2]TiCl[subscript 2], bis([eta][superscript 5]-cyclopentadienyl)dichloridotitanium(IV), from the mildly moisture-sensitive cis-TiCl[subscript 4](thf)[subscript 2]. Air-free handling techniques are emphasized, but the (mostly) air-stable,…
Descriptors: Science Education, Chemistry, Spectroscopy, Light
Diaz Eaton, C.; Highlander, H. C.; Dahlquist, K. D.; Ledder, G.; LaMar, M. D.; Schugart, R. C. – PRIMUS, 2019
Despite widespread calls for the incorporation of mathematical modeling into the undergraduate biology curriculum, there is lack of a common understanding around the definition of modeling, which inhibits progress. In this paper, we extend the "Rule-of-Four," initially used in calculus reform efforts, to a "Rule-of-Five"…
Descriptors: Student Improvement, Undergraduate Students, Interdisciplinary Approach, Academic Language
Kinzli, Kristoph-Dietrich; Kunberger, Tanya; O'Neill, Robert; Badir, Ashraf – European Journal of Engineering Education, 2018
Demonstration models allow students to readily grasp theory and relate difficult concepts and equations to real life. However drawbacks of using these demonstration models are that they are can be costly to purchase from vendors or take a significant amount of time to build. These two limiting factors can pose a significant obstacle for adding…
Descriptors: Experiential Learning, Demonstrations (Educational), Models, Teaching Models
Labouta, Hagar Ibrahim; Kenny, Natasha A.; Li, Rui; Anikovskiy, Max; Reid, Leslie; Cramb, David Thomas – International Journal of Science Education, 2018
Research on understanding the full extent that an authentic science research experience engages students in how scientists think and act is sparse. 'Learning-science-by-doing-science' (LSDS) is an emerging self-guided process-learning model in postsecondary science education. It offers authentic science research opportunities that drive students…
Descriptors: Experiential Learning, Hands on Science, Science Education, Science Process Skills
Wee, Loo Kang – Physics Education, 2012
We develop an Easy Java Simulation (EJS) model for students to experience the physics of idealized one-dimensional collision carts. The physics model is described and simulated by both continuous dynamics and discrete transition during collision. In designing the simulations, we discuss briefly three pedagogical considerations namely (1) a…
Descriptors: Physics, College Science, Experiential Learning, Feedback (Response)
Peer reviewedPhipps, Maurice – Journal of Environmental Education, 1988
Explained are differences in communication, perception, arousal, and motivation for both teaching and learning styles. Experiential education is distinguished from experiential learning, and salient educational strategies are integrated into the educational cycle. (Author/CW)
Descriptors: Adults, Cognitive Structures, Cognitive Style, College Science
Peer reviewedWagner, John Robert – Journal of Geological Education, 1987
Discusses some of the difficulties of visualizing underlying geologic structural patterns by using maps or wooden blocks. Suggests the use of a modified layer cake to show dipping beds, folds, faults and differential erosion, as well as the relationships of stream valleys to outcrop patterns. (TW)
Descriptors: College Science, Demonstrations (Educational), Experiential Learning, Higher Education
Peer reviewedSchultz, Ethel L. – Journal of Chemical Education, 1986
Discusses the use of the Tangent Sphere Model (TSM) in introducing chemical structure to beginning chemistry students at both the secondary school and college levels. Describes various applications of the use of such models, including instruction of the atom's kernel and valence electrons. (TW)
Descriptors: Chemical Reactions, Chemistry, College Science, Experiential Learning

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