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Ramos, L. M.; Reis, C. R. N.; Calheiro, L. B.; Goncalves, A. M. B. – Physics Education, 2021
Using a joystick module, we followed the movement of a chaotic magnetic pendulum. The pendulum bar was attached to a joystick that served as a pivot point and biaxial angular motion sensor. Using an Arduino board, we could follow the position as a function of time along both the "x" and "y"-axis and draw a graph showing the…
Descriptors: Physics, Science Instruction, Computer Software, Motion
Kerwin, Sean M. – Biochemistry and Molecular Biology Education, 2019
A flexible and modular peptide modeling set was designed using freely available software tools. The set consists of space-filling models of all 20 naturally occurring amino acid side chains and a modular kit for constructing peptides employing C-alpha carbons and amide bond groups. Connectors that allow free rotation about phi and psi angles on…
Descriptors: Computer Software, Teaching Methods, Science Instruction, Computer Peripherals
Regester, Jeff; McGahee, Courtney – Physics Teacher, 2019
A planetarium is an invaluable tool for teaching introductory astronomy, but one that few astronomy educators have ready access to. Here we describe a do-it-yourself planetarium that can be built with modest funding. There have been other planetarium construction projects described in the literature and online, most of which use cardboard to make…
Descriptors: Physics, Science Instruction, Astronomy, Introductory Courses
Gunderson, Julie E. C.; Mitchell, Dylan W.; Bullis, Ryan G.; Steward, John Q.; Gunderson, William A. – Journal of Chemical Education, 2020
Fused filament fabrication 3D printing is a process by which three-dimensional objects are created by depositing layers of a material onto a hard, flat surface by a robot. It is often referred to as an "additive manufacturing" technique because material is added in successive layers to create an object. Because many scientific…
Descriptors: Chemistry, Science Instruction, Computer Software, Computer Peripherals
Rivera-Ortega, Uriel – Physics Education, 2021
A Science, Technology, Engineering and Mathematics (STEM) tool is proposed in this manuscript; which consists of an interactive, simple and low-cost computer based simulation and game, with the aim of easing the teaching/learning process regarding the physics concept of projectile motion. The novelty of this proposal relies on the use of a…
Descriptors: Physics, Science Instruction, Computer Software, Graduate Students
Peterson, Celeste N.; Tavana, Sara Z.; Akinleye, Olukemi P.; Johnson, Walter H.; Berkmen, Melanie B. – Biochemistry and Molecular Biology Education, 2020
Biology and biochemistry students must learn to visualize and comprehend the complex three-dimensional (3D) structures of macromolecules such as proteins or DNA. However, most tools available for teaching biomolecular structures typically operate in two dimensions. Here, we present protocols and pedagogical approaches for using immersive augmented…
Descriptors: Teaching Methods, Molecular Structure, Computer Software, Biochemistry
Smith, Brent; Johnson, Andy; Hayden, Trey; Tolk, Florian – Advanced Distributed Learning Initiative, 2022
The human capital supply chain is a complex network of systems with inherent challenges to accommodating Total Learning Architecture (TLA) operability. This document covers the objective end-state for Department of Defense (DoD) learning organizations migrating to TLA compliant data and microservices. This document is organized into sections that…
Descriptors: Human Capital, Public Agencies, Armed Forces, Information Systems
Eric Schätz; Alke Martens – International Association for Development of the Information Society, 2023
Due the wideness of the term Physical Computing, there is a need for a better structure of this topic. This paper is about an approach of structuring this field by finding attributes of different physical computing devices which can be used in class. Those attributes are meant to enforce teachers as well as researchers to analyze different devices…
Descriptors: Computer Use, Handheld Devices, Telecommunications, Teaching Methods
Lee, Ning Yuan; Tucker-Kellogg, Greg – Biochemistry and Molecular Biology Education, 2020
Understanding macromolecular structures is essential for biology education. Augmented reality (AR) applications have shown promise in science, technology, engineering, and mathematics (STEM) education, but are not widely used for protein visualization. While there are some tools for AR protein visualization, none of them are accessible to the…
Descriptors: Visualization, Molecular Structure, Computer Simulation, STEM Education
Jones, Oliver A. H.; Spencer, Michelle J. S. – Journal of Chemical Education, 2018
Using tangible models to help students visualize chemical structures in three dimensions has been a mainstay of chemistry education for many years. Conventional chemistry modeling kits are, however, limited in the types and accuracy of the molecules, bonds and structures they can be used to build. The recent development of 3D printing technology…
Descriptors: Computer Peripherals, Printing, Chemistry, Molecular Structure
Keune, Anna; Peppler, Kylie – British Journal of Educational Technology, 2019
Celebrating hands-on making and technological inventiveness, the Maker Movement promotes the popularity of new makerspaces: learning environments filled with diverse materials for youth's creative projects. Described as "constructionist learning environments," makerspaces can be challenging to design because materials require substantial…
Descriptors: Creativity, Educational Environment, Costs, Learning Theories
Paukstelis, Paul J. – Journal of Chemical Education, 2018
The increased availability of noncommercial 3D printers has provided instructors and students improved access to printing technology. However, printing complex ball-and-stick molecular structures faces distinct challenges, including the need for support structures that increase with molecular complexity. MolPrint3D is a software add-on for the…
Descriptors: Chemistry, Science Instruction, Molecular Structure, Hands on Science
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
Kovarik, Michelle L.; Clapis, Julia R.; Romano-Pringle, K. Ana – Journal of Chemical Education, 2020
One challenge of teaching chemical analysis is the proliferation of sophisticated, but often impenetrable, instrumentation in the modern laboratory. Complex instruments, and the software that runs them, distance students from the physical and chemical processes that generate the analytical signal. A solution to this challenge is the introduction…
Descriptors: Spectroscopy, Science Instruction, Teaching Methods, Science Laboratories
Winne, Philip H.; Nesbit, John C.; Popowich, Fred – Technology, Knowledge and Learning, 2017
A bottleneck in gathering big data about learning is instrumentation designed to record data about processes students use to learn and information on which those processes operate. The software system nStudy fills this gap. nStudy is an extension to the Chrome web browser plus a server side database for logged trace data plus peripheral modules…
Descriptors: Data Collection, Research Methodology, Learning Processes, Computer Software