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Irwin, John L.; Mehendale, Sunil – Engineering Design Graphics Journal, 2018
This paper is intended to investigate the merits of adding manipulative devices and solid model simulations to accompany traditional lecture and demonstration materials to a Dynamics course. Based on the successes of Graphics courses using manipulative devices and simulation software to enhance spatial visualization skills in engineering students,…
Descriptors: Engineering Education, Computer Simulation, Manipulative Materials, Concept Formation
Schumacher, Thomas; Mayer, Selina – Journal of Management Education, 2018
Design thinking is a creative practice that sparks managers' thinking and acting in response to the challenges of shifting consumer preferences, emerging new technological possibilities, and changing business models. The issues for management education, that is, preparing students for future management roles, is how one can teach design thinking…
Descriptors: Management Development, Design, Visualization, Teaching Methods
Bernhard, Jonte – Instructional Science: An International Journal of the Learning Sciences, 2018
According to variation theory, it is essential to enable students to focus on the object of learning and discern its critical features, but the features that "it is possible" to discern often depend on the equipment used. Thus, in labs, the experimental technologies used may shape students' experience of focal phenomena, in a…
Descriptors: Science Education, Science Laboratories, Laboratory Equipment, Laboratory Training
Stieff, Mike; Origenes, Andrea; DeSutter, Dane; Lira, Matthew; Banevicius, Lukas; Tabang, Dylan; Cabel, Gervacio – Journal of Educational Psychology, 2018
Spatial ability predicts success in STEM (Science, Technology, Education, and Mathematics) fields, particularly chemistry. This paper reports two studies investigating the unique contribution of mental rotation ability to spatial thinking in a STEM discipline. Using authentic disciplinary tasks from chemistry, we show that the difficulty of a…
Descriptors: Cognitive Processes, STEM Education, Spatial Ability, Chemistry
de Cataldo, Riccardo; Griffith, Kaitlyn M.; Fogarty, Keir H. – Journal of Chemical Education, 2018
Introductory chemistry students encounter the concept of hybrid orbitals as a transition from atomic orbitals to molecular bonding. The principal purpose of learning hybridization in the undergraduate curriculum is to impart an understanding of the origins of molecular bonding and geometry. Physical models of both individual hybrid orbitals and…
Descriptors: Introductory Courses, Science Instruction, Visualization, Molecular Structure
Sangal, Somya; Kataria, Shreya; Tyagi, Twishi; Gupta, Nidhi; Kirtani, Yukti; Agrawal, Shivli; Chakraborty, Pinaki – Education and Information Technologies, 2018
A parsing algorithm visualizer is a tool that visualizes the construction of a parser for a given context-free grammar and then illustrates the use of that parser to parse a given string. Parsing algorithm visualizers are used to teach the course on compiler construction which in invariably included in all undergraduate computer science curricula.…
Descriptors: Teaching Methods, Computer Software, Undergraduate Students, Computer Science Education
Arthurs, Leilani A.; Elwonger, Justin M. – Journal of Astronomy & Earth Sciences Education, 2018
There is a growing need for public understanding about groundwater resources. Knowing what groundwater and aquifers are is fundamental to understanding more complex issues such as groundwater quality and availability. However, groundwater and related concepts are among the topics that instructors most struggle to teach. Although constructivist…
Descriptors: Water, College Students, Concept Formation, Earth Science
Arthur, Peter G.; Zareie, Reza; Kirkwood, Paul; Ludwig, Martha; Attwood, Paul V. – Biochemistry and Molecular Biology Education, 2018
Assessment is a central component of course curriculums and is used to certify student learning, but it can also be used as a tool to improve teaching and learning. Many laboratory courses are structured such that there is only a grade for a particular laboratory, which limits the insights that can be gained in student learning. We developed a…
Descriptors: Student Evaluation, Grades (Scholastic), Science Laboratories, Laboratory Training
Boaler, Jo; Munson, Jen; Williams, Cathy – Jossey-Bass, An Imprint of Wiley, 2018
The most challenging parts of teaching mathematics are engaging students and helping them understand the connections between mathematics concepts. In this volume, you'll find a collection of low floor, high ceiling tasks that will help you do just that, by looking at the big ideas at the third-grade level through visualization, play, and…
Descriptors: Mathematics Instruction, Learner Engagement, Mathematical Concepts, Concept Formation
Weiand, Augusto; Manssour, Isabel Harb; Silveira, Milene Selbach – International Journal of Distance Education Technologies, 2019
With technological advances, distance education has been frequently discussed in recent years. The learning environments used in this course usually generates a great deal of data because of the large number of students and the various tasks involving their interaction. In order to facilitate the analysis of the data, the authors researched to…
Descriptors: Foreign Countries, Distance Education, Online Courses, Visualization
Quinonez, Alejandro; Rompolski, Krista L. – HAPS Educator, 2019
In Anatomy and Physiology courses, students often struggle with visualizing structures, or processes, that occur at the cellular level, such as capillary exchange. Whenever available, models can be vital to students' understanding of a topic, particularly when they can be constructed by students in real time. To demonstrate capillary exchange to…
Descriptors: Anatomy, Physiology, Visualization, Models
Tillman, Daniel; Alvidrez-Aguirre, Velia; Kim, So Jung; An, Song – Journal of Educational Multimedia and Hypermedia, 2019
This study examined the impacts of augmented reality (AR) activities that were integrated into a Master's-level education course for mainly in-service teachers pursuing higher-level certification, generally in the specialization area of Instructional Technology-of the fifteen participants, twelve were active in-service teachers, and three were…
Descriptors: Teacher Attitudes, Teaching Methods, Educational Technology, Computer Simulation
Tkachuk, Alla – Childhood Education, 2019
By transforming education to focus on nurturing creativity, teachers can better ensure that their students are receiving the best preparation for a future of rapid change. This article describes how Alla Tkachuk founded MASK (Mobile Art School in Kenya, www.mobileartschoolinkenya.org) to champion art for creativity in Africa. Starting as a small…
Descriptors: Creativity, Visualization, Foreign Countries, Art Education
Hunter, Vichuda; Hawkins, Ian; Phelps, Amy J. – Chemistry Education Research and Practice, 2019
A laboratory is a large investment of time and money for departments of chemistry yet discussions continue about its purpose in the educational process. Helping students navigate the three levels of representation; macroscopic, particulate and symbolic is a potential use of this time. This study looked at two different types of visualization for…
Descriptors: Science Laboratories, Chemistry, Energy, Visualization
Bush, Drew; Sieber, Renee; Chandler, Mark A.; Sohl, Linda E. – Journal of Geography in Higher Education, 2019
Geography educators have long taught anthropogenic global climate change (AGCC) using geospatial data, visualizations, analysis tools and models. We examined the attitudes of teachers at secondary schools, research institutions, colleges and universities tasked with teaching using one such technology. We designed a seventeen-question online survey…
Descriptors: Climate, Change, Ecology, Teaching Methods