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Salvatore G. Garofalo – Journal of Science Education and Technology, 2025
The initial learning experience is a critical opportunity to support conceptual understanding of abstract STEM concepts. Although hands-on activities and physical three-dimensional models are beneficial, they are seldom utilized and are replaced increasingly by digital simulations and laboratory exercises presented on touchscreen tablet computers.…
Descriptors: High School Freshmen, Science Instruction, Chemistry, Molecular Structure
Hootan Roshandel; Matthew Shammami; Shiyun Lin; Yin-Pok Wong; Paula L. Diaconescu – Journal of Chemical Education, 2023
The rise of virtual and online education in recent years has led to the development and popularization of many online tools, notably three-dimensional (3D) models and augmented reality (AR), for visualizing various structures in chemical sciences. The majority of the developed tools focus on either small molecules or biological systems, as…
Descriptors: Plastics, Science Instruction, Chemistry, Computer Software
Salvatore G. Garofalo – ProQuest LLC, 2022
This study examined the effectiveness of three instructional and assessment strategies on conceptual understanding of the DNA molecule. Specifically, a model building task was utilized to determine if physical model construction, digital model construction with a touchscreen tablet computer, or paper worksheet activity effected conceptual…
Descriptors: Concept Formation, Geometric Concepts, Models, Computer Simulation
Lau, Poh Nguk; Chan, Wen Loong; Li, Yuxuan – Journal of Chemical Education, 2022
As part of COVID-19 preparedness, a student-developed, Android-based app was used as a pre-laboratory learning aid for a molecular modeling laboratory in a first-year general chemistry course. A worksheet activity with trigger codes and questions related to spatial features of transition metal complexes was designed. Using the Transition Metal…
Descriptors: Visualization, Computer Oriented Programs, Organic Chemistry, Molecular Structure
Fernandes, Henrique S.; Cerqueira, Nuno M. F. S. A.; Sousa, Sergio F. – Journal of Chemical Education, 2021
Visualization can be a motivating way to teach students about molecules. Nowadays, the available experimental data and accurate computational results allow students to build realistic and accurate molecular models. These models include the representation of complex systems such as proteins, membranes, or nanotubes. However, the visualization of…
Descriptors: Computer Simulation, Virtual Classrooms, Internet, Handheld Devices
Guspatni, Guspatni – Chemistry Education Research and Practice, 2021
Student-generated drawings are known to be effective in building and revealing students' conceptions of chemistry. Some chemistry concepts, moreover, include changes and processes that cannot be merely represented by static drawings. Computer-based animations are needed to represent the dynamics. In this study, 25 chemistry student teachers, who…
Descriptors: Visual Aids, Freehand Drawing, Animation, Computer Simulation
Church, Jessica A.; Grigorenko, Elena L.; Fletcher, Jack M. – Reading Research Quarterly, 2023
To learn to read, the brain must repurpose neural systems for oral language and visual processing to mediate written language. We begin with a description of computational models for how alphabetic written language is processed. Next, we explain the roles of a dorsal sublexical system in the brain that relates print and speech, a ventral lexical…
Descriptors: Genetics, Brain Hemisphere Functions, Reading Processes, Oral Language
Primo, Emiliano D.; Otero, Lisandro H.; Ruiz, Francisco; Klinke, Sebastián; Giordano, Walter – Biochemistry and Molecular Biology Education, 2018
The bacterial cell wall, a structural unit of peptidoglycan polymer comprised of glycan strands consisting of a repeating disaccharide motif [N-acetylglucosamine (NAG) and N-acetylmuramylpentapeptide (NAM pentapeptide)], encases bacteria and provides structural integrity and protection. Lysozymes are enzymes that break down the bacterial cell wall…
Descriptors: Cytology, Microbiology, Biochemistry, Science Instruction
Omar, Kassem Ayman; Mozol, Vivian – Papers on Postsecondary Learning and Teaching, 2020
Spatial ability is an important tool in chemistry and this ability can be improved. Various technologies have been used to improve spatial ability. However, it is not clear if viewing technologies should take the place of the model kit; the traditional method of learning about molecular structures. Our research aims to address this gap. In our…
Descriptors: Technology Integration, Computer Simulation, Handheld Devices, Telecommunications
D'Ambruoso, Gemma D.; Cremeens, Matthew E.; Hendricks, Brett R. – Journal of Chemical Education, 2018
Instructional videos have been prepared using Adobe Captivate software to create animated tutorials to capture instrument and molecular modeling software simulations and to allow for increased independent hands-on instrument use by students and faster training for instructors and teaching assistants. The videos are available on YouTube and can be…
Descriptors: Animation, Computer Software, Student Surveys, Computer Simulation
Langbeheim, Elon; Levy, Sharona T. – International Journal of Science Education, 2018
We developed a computerised simulation that utilises embodied modelling by letting students play the role of particles in a liquid. We compared the learning of two eight-grade classrooms that used the embodied modelling simulation during a weeklong learning module on phase change, with a comparison group that used an ordinary simulation with no…
Descriptors: Chemistry, Science Instruction, Comparative Analysis, Grade 8
Behmke, Derek; Kerven, David; Lutz, Robert; Paredes, Julia; Pennington, Richard; Brannock, Evelyn; Deiters, Michael; Rose, John; Stevens, Kevin – Proceedings of the Interdisciplinary STEM Teaching and Learning Conference, 2018
Spatial reasoning is defined as the ability to generate, retain, and manipulate abstract visual images. In chemistry, spatial reasoning skills are typically taught using 2-D paper-based models, 3-D handheld models, and computerized models. These models are designed to aid student learning by integrating information from the macroscopic,…
Descriptors: Science Instruction, Computer Simulation, Educational Technology, Molecular Structure
Fuhrmann, Tamar; Schneider, Bertrand; Blikstein, Paulo – International Journal of Science Education, 2018
The Bifocal Modelling Framework (BMF) is an approach for science learning which links students' physical experimentation with computer modelling in real time, focusing on the comparison of the two media. In this paper, we explore how a Bifocal Modelling implementation supported learning outcomes related to both content and metamodeling knowledge,…
Descriptors: High School Students, Science Instruction, Models, Outcomes of Education
Hii, King Kuok; Rzepa, Henry S.; Smith, Edward H. – Journal of Chemical Education, 2015
The coupling of a student experiment involving the preparation and use of a catalyst for the asymmetric epoxidation of an alkene with computational simulations of various properties of the resulting epoxide is set out in the form of a software toolbox from which students select appropriate components. At the core of these are the computational…
Descriptors: Organic Chemistry, Laboratory Experiments, Science Experiments, College Science
Mohamed-Salah, Boukhechem; Alain, Dumon – Chemistry Education Research and Practice, 2016
This study aims to assess whether the handling of concrete ball-and-stick molecular models promotes translation between diagrammatic representations and a concrete model (or vice versa) and the coordination of the different types of structural representations of a given molecular structure. Forty-one Algerian undergraduate students were requested…
Descriptors: Foreign Countries, Undergraduate Students, Molecular Structure, Models
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