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Mohottala, H. E.; Higgins, Brent – Physics Education, 2022
The use of animations, simulations, and remote lab experiments has taken a new turn during the pandemic. When teaching introductory-level physics courses, the simulations and animations play an important role. Carefully designed simulations assist students visualize real-life situations and help understand complex physics concepts behind them.…
Descriptors: Physics, Science Instruction, COVID-19, Pandemics
Di Vincenzo, Antonella; Floriano, Michele A. – Journal of Chemical Education, 2019
An application for visualizing the aggregation of structureless atoms is presented. The application allows us to demonstrate on a qualitative basis, as well as by quantitatively monitoring the aggregate surface/volume ratio, that the enhanced reactivity of nanoparticles can be connected with their large specific surface. It is suggested that,…
Descriptors: Chemistry, Science Instruction, Molecular Structure, Scientific Principles
Brasier, Daniel J.; Melville, Michael; Hershock, Chad; Rule, Gordon – Journal of Computer Assisted Learning, 2019
In this study, we investigated the optimal placement of animations and practice and feedback exercises with respect to each other and to static text and graphics in an online DNA replication module. We randomly assigned students in a first-semester introductory biology course for freshmen biology majors and nonmajors to one of four online modules…
Descriptors: Genetics, Introductory Courses, Biology, Science Instruction
Wilson, Kristy J.; Long, Tammy M.; Momsen, Jennifer L.; Speth, Elena Bray – CBE - Life Sciences Education, 2020
As an instructional tool, models can transform the student experience from the static to the dynamic, the flat to the 3D, and the siloed to the integrated. Few practical resources exist to help instructors transition toward model-based classroom practices. The "Modeling in the Classroom" evidence-based teaching guide provides instructors…
Descriptors: Modeling (Psychology), Teaching Methods, Evidence Based Practice, Guides
Morphew, Jason W.; Gladding, Gary E.; Mestre, Jose P. – Physical Review Physics Education Research, 2020
Students must actively engage in problem solving to effectively learn in introductory physics courses. However, students often get stuck and are not able to make progress when solving problems outside of their current ability, particularly when one-on-one tutoring and instructor office hours are a limited resource. One effective technique consists…
Descriptors: Metacognition, Problem Solving, Introductory Courses, Physics
Rand, Danielle; Yennie, Craig J.; Lynch, Patrick; Lowry, Gregory; Budarz, James; Zhu, Wenlei; Wang, Li-Qiong – Journal of Chemical Education, 2016
Here we describe an acid rain neutralization laboratory experiment and its corresponding instructional video. This experiment has been developed and implemented for use in the teaching laboratory of a large introductory chemistry course at Brown University. It provides a contextually relevant example to introduce beginner-level students with…
Descriptors: Pollution, Chemistry, Science Instruction, College Science
Goff, Eric E.; Reindl, Katie M.; Johnson, Christina; McClean, Phillip; Offerdahl, Erika G.; Schroeder, Noah L.; White, Alan R. – CBE - Life Sciences Education, 2017
Recent reports calling for change in undergraduate biology education have resulted in the redesign of many introductory biology courses. Reports on one common change to course structure, the active-learning environment, have placed an emphasis on student preparation, noting that the positive outcomes of active learning in the classroom depend…
Descriptors: Animation, Cytology, Science Instruction, Instructional Effectiveness
Smith, K. Christopher; Villarreal, Savannah – Chemistry Education Research and Practice, 2015
This article reports on the types of views and misconceptions uncovered after assessing 155 freshman general chemistry students on the concept of particle position during the reversible physical change of melting, using the Melting Cycle Instrument, which illustrates particulate-level representations of a melting-freezing cycle. Animations…
Descriptors: Animation, Chemistry, Science Instruction, Misconceptions
Rosenthal, Deborah P.; Sanger, Michael J. – Chemistry Education Research and Practice, 2013
Two groups of students were shown unnarrated versions of two different particulate-level computer animations of varying complexity depicting the oxidation-reduction reaction of aqueous silver nitrate and solid copper metal; one group saw the more simplified animation first and the more complex animation second while the other group saw these…
Descriptors: Animation, Chemistry, Science Instruction, Introductory Courses
Kelly, Resa M.; Akaygun, Sevil – Journal of Chemical Education, 2016
This article summarizes an investigation into how Flash-based cartoon video tutorials featuring molecular visualizations affect students' mental models of acetic acid and hydrochloric acid solutions and how the acids respond when tested for electrical conductance. Variation theory served as the theoretical framework for examining how students…
Descriptors: Cartoons, Visualization, Animation, Chemistry
Schroeder, Noah; Gladding, Gary; Gutmann, Brianne; Stelzer, Timothy – Physical Review Special Topics - Physics Education Research, 2015
Narrated animated solution videos were implemented in a clinical study that compared a mastery setting that employed repeated cycles of testing with instructional support to a group that had a single opportunity to experience the materials. The mastery setting students attempted sequential questions sets on a topic, with animated solutions between…
Descriptors: Video Technology, Animation, Narration, Teaching Methods
Cheek, Kim A. – Journal of Geoscience Education, 2013
Research about geologic time conceptions generally focuses on the placement of events on the geologic timescale, with few studies dealing with the duration of geologic processes or events. Those studies indicate that students often have very poor conceptions about temporal durations of geologic processes, but the reasons for that are relatively…
Descriptors: Earth Science, Science Instruction, Spatial Ability, Numbers
Rolka, Christine; Remshagen, Anja – International Journal for the Scholarship of Teaching and Learning, 2015
Contextualized learning is considered beneficial for student success. In this article, we assess the impact of context-based learning tools on student grade performance in an introductory computer science course. In particular, we investigate two central questions: (1) does the use context-based learning tools, robots and animations, affect…
Descriptors: Introductory Courses, Computer Science Education, Context Effect, Grades (Scholastic)
Miller, Scott T.; James, C. Renee – Astronomy Education Review, 2011
We present results of a two-semester study to determine whether the inclusion of basic animation techniques in PowerPoint presentations provides an additional learning aid, inhibits learning, or has no effect on student learning for students in an introductory astronomy course. We found that (1) students perceive that animated slides are…
Descriptors: Astronomy, Introductory Courses, College Science, Science Instruction
Williamson, Vickie M.; Lane, Sarah M.; Gilbreath, Travis; Tasker, Roy; Ashkenazi, Guy; Williamson, Kenneth C.; Macfarlane, Ronald D. – Journal of Chemical Education, 2012
A prior study showed that students best make predictions about the outcome of opening a valve between two flasks containing a fluid or vacuum when they view both a demonstration video and a particulate animation, but the study showed no influence from the order in which these visualizations were used. The purpose of this current research was to…
Descriptors: Academic Ability, Chemistry, Animation, Video Technology
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