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Gao, Ruomei; Lloyd, Judith; Emenike, Bright U.; Quarless, Duncan; Kim, Youngjoo; Emenike, Mary E. – Journal of Chemical Education, 2021
Engaging students in scientific practices has become an important pedagogical component in STEM education, although its implementation in laboratories is still emerging. This paper uses three types of guiding questions to facilitate scientific practices in introductory and analytical chemistry laboratories. What makes our instructional model…
Descriptors: College Science, Science Instruction, Questioning Techniques, Teaching Methods
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
Bonham, Scott W.; Jones, Kolton; Luna, Brian; Pauley, Lance – Journal of College Science Teaching, 2018
Students in introductory science laboratory courses benefit from comprehensive technical writing instruction. Written communication is an important skill for people in the workforce as well as education; STEM (science, technology, engineering, and mathematics) students need to develop good technical writing skills, and most enter college with…
Descriptors: Writing Instruction, Technical Writing, Introductory Courses, College Science
Heddy, Benjamin C.; Sinatra, Gale M.; Seli, Helena; Taasoobshirazi, Gita; Mukhopadhyay, Ananya – Educational Psychology, 2017
The Teaching for Transformative Experience in Science (TTES) model has shown to be a useful tool to generate learning and engagement in science. We investigated the effectiveness of TTES for facilitating transformative experience (TE), learning, the development of topic interest and transfer of course concepts to other courses employing a…
Descriptors: At Risk Students, Undergraduate Students, Science Instruction, Teaching Models
McConell, David A.; Chapman, LeeAnna; Czaijka, C. Douglas; Jones, Jason P.; Ryker, Katherine D.; Wiggen, Jennifer – Journal of Geoscience Education, 2017
The adoption of active learning instructional practices in college science, technology, engineering, and mathematics (STEM) courses has been shown to result in improvements in student learning, contribute to increased retention rates, and reduce the achievement gap among different student populations. Descriptions of active learning strategies…
Descriptors: Instructional Effectiveness, Active Learning, Learning Strategies, STEM Education
Chapin, Hannah C.; Wiggins, Benjamin L.; Martin-Morris, Linda E. – Journal of College Science Teaching, 2014
Peer educators can be a powerful addition to classroom learning environments. Traditionally, the university science teaching model relies on graduate teaching assistants (GTAs) to provide instruction in laboratory class sessions, but there is increasing evidence that undergraduate TAs (UTAs) can fill an equivalent role. A comparison of student…
Descriptors: Undergraduate Study, College Science, Teaching Assistants, Undergraduate Students
O'Kennedy, Richard; Burke, Maurice; van Kampen, Paul; James, Paraic; Cotter, Michael; Browne, Wesley R.; O'Fagain, Ciaran; McGlynn, Enda – Journal of Biological Education, 2005
In April 2003 the first European Science Olympiad took place in Dublin City University in Ireland. In this competition second level students were asked to carry out a number of tasks involving biology, physics and chemistry. Students had qualified initially in competitions in one of these subjects and were organised into integrated teams which…
Descriptors: Competition, Foreign Countries, Scientific Literacy, Science Education
Peer reviewedSchwartz, Leslie J. – Journal of Chemical Education, 1988
Discusses a method for teaching time pulsed NMR principals that are as simple and pictorial as possible. Uses xyz coordinate figures and presents theoretical explanations using a Fourier transformation spectrum. Assumes no previous knowledge of quantum mechanics for students. Usable for undergraduates. (MVL)
Descriptors: Atomic Structure, Chemical Analysis, Chemical Bonding, Chemistry
Peer reviewedLord, Thomas R. – Innovative Higher Education, 1997
A study compared student learning in two sections of an introductory college biology course for nonmajors. Groups were taught in the traditional teacher-centered, lecture/laboratory format (n=86 students) and in a student-centered constructivist format (n=98). The latter group performed significantly better on the same tests, maintained a better…
Descriptors: Academic Achievement, Achievement Gains, Biology, Classroom Techniques

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