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Rau, Martina A.; Kennedy, Kristopher; Oxtoby, Lucas; Bollom, Mark; Moore, John W. – Journal of Chemical Education, 2017
Much evidence shows that instruction that actively engages students with learning materials is more effective than traditional, lecture-centric instruction. These "active learning" models comprise an extremely heterogeneous set of instructional methods: they often include collaborative activities, flipped classrooms, or a combination of…
Descriptors: Active Learning, Classroom Techniques, Quasiexperimental Design, Undergraduate Students
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Azman, Adam M.; Esteb, John J. – Journal of Chemical Education, 2016
A coin-flipping analogy and free corresponding web app have been developed to facilitate student understanding of the origins of spin-spin splitting. First-order splitting patterns can easily be derived and understood. "Complex" splitting patterns (e.g., doublet of quartets), are easily incorporated into the analogy. A study of the…
Descriptors: Spectroscopy, Logical Thinking, Courseware, Teaching Methods
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Gupta, Tanya; Burke, K. A.; Mehta, Akash; Greenbowe, Thomas J. – Journal of Chemical Education, 2015
The Science Writing Heuristic (SWH) laboratory instruction approach has been used successfully over a decade to engage students in laboratory activities. SWH-based instruction emphasizes knowledge construction through individual writing and reflection, and collaborative learning as a group. In the SWH approach, writing is a core component of…
Descriptors: Active Learning, Inquiry, Critical Thinking, Thinking Skills
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Malik, Kinza; Martinez, Nylvia; Romero, Juan; Schubel, Skyler; Janowicz, Philip A. – Journal of Chemical Education, 2014
Connect for organic chemistry is an online learning tool that gives students the opportunity to learn about all aspects of organic chemistry through the ease of the digital world. This research project consisted of two fundamental questions. The first was to discover whether there was a difference in undergraduate organic chemistry content…
Descriptors: Organic Chemistry, Intermode Differences, Homework, Assignments
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Joag, Sushama D. – Journal of Chemical Education, 2014
A simple method to introduce the modern periodic table of elements at the high school level as a game of solving a crossword puzzle is presented here. A survey to test the effectiveness of this new method relative to the conventional method, involving use of a wall-mounted chart of the periodic table, was conducted on a convenience sample. This…
Descriptors: Puzzles, Secondary School Science, Chemistry, Teaching Methods
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McCollum, Brett M.; Regier, Lisa; Leong, Jaque; Simpson, Sarah; Sterner, Shayne – Journal of Chemical Education, 2014
The impact of touch-screen technology on spatial cognitive skills as related to molecular geometries was assessed through 102 one-on-one interviews with undergraduate students. Participants were provided with either printed 2D ball-and-stick images of molecules or manipulable projections of 3D molecular structures on an iPad. Following a brief…
Descriptors: Molecular Structure, Visualization, Competence, Skill Development
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Priest, Samuel J.; Pyke, Simon M.; Williamson, Natalie M. – Journal of Chemical Education, 2014
Microcomputer based laboratory activities have been suggested to have a number of benefits in science education. However, their implementation produces mixed results, and student perception data have in the past yielded responses that are negative regarding the technology. This work presents a case study of three first year undergraduate chemistry…
Descriptors: Student Attitudes, Science Experiments, Chemistry, Comparative Analysis
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Abraham, Michael; Varghese, Valsamma; Tang, Hui – Journal of Chemical Education, 2010
Stereochemistry is an important topic in organic chemistry. It is also a difficult topic for students to learn. This study investigated the relative effectiveness on students' understanding of three kinds of molecular representations of stereochemistry concepts. Instructional activities compared the use of either: (i) computer-based molecular…
Descriptors: Organic Chemistry, Educational Technology, Scientific Concepts, Concept Teaching