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Showing 1 to 15 of 28 results Save | Export
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Júlio Panzera-Gonçalves; Cleida Aparecida Oliveira – Anatomical Sciences Education, 2025
Learning Cell Biology is challenging for both sighted and visually impaired students due to its abstract nature and reliance on bidimensional depictions in textbooks, which often fail to capture the biological complexity of cell structures and functions. To implement inclusive learning environments and address the shortage of learning materials…
Descriptors: Teaching Methods, Computer Simulation, Anatomy, Science Education
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Line Have Musaeus; Deborah Tatar; Peter Musaeus – Journal of Biological Education, 2024
Computational modelling is widely used in biological science. Therefore, biology students need to learn computational modelling. However, there is a lack of evidence about how to teach computational modelling in biology and what the effects are on student learning. The purpose of this intervention-control study was to investigate how knowledge in…
Descriptors: Computation, Models, High School Students, Biology
Rachel L. Schechter; Paul A. Chase; Apoorva Shivaram – Online Submission, 2023
Using a mixed-method approach, researchers examined college instructors' use of a virtual lab simulation library, Labster, students' perceptions of the simulations on their learning and future STEM plans, as well as data from the library to explore patterns of lab use and quiz scores. A detailed look at Contemporary Biology I and Biology II quiz…
Descriptors: Computer Simulation, Science Laboratories, STEM Education, Models
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Castro, Kathleen Mahra da Silva Alcântara; Amado, Talita Ferreira; Bidau, Claudio Juan; Martinez, Pablo Ariel – Journal of Biological Education, 2022
Natural history museums (NHM) are important for students' learning and motivation. However, the lack or scarcity of NHMs in countries with emerging markets may hamper the learning process. Virtual 3D models represent an important tool to counterbalance the lack of access of students to NHMs. Our study aims to understand if the use of 3D models may…
Descriptors: Museums, Science Education, Science Instruction, Teaching Methods
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King, Gretchen P.; Bergan-Roller, Heather; Galt, Nicholas; Helikar, Tomáš; Dauer, Joseph T. – International Journal of Science Education, 2019
Model-based instruction offers numerous benefits to students, including increased content knowledge and critical thinking. This study explored the differences in the knowledge outcomes and reasoning processes employed by undergraduate students in an introductory biology lab as they constructed, revised, and simulated a computational model of a…
Descriptors: Thinking Skills, Teaching Methods, Genetics, Biology
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Benhadi-Marín, Jacinto; Pereira, José Alberto; Sousa, José Paulo; Santos, Sónia A. P. – Journal of Biological Education, 2020
Individual based models (IBMs) are up-to-date tools both in research and educational areas. Here we introduce an IBM built on NetLogo platform that simulates a top-down trophic cascade controlled by the pressure exerted by two model predators (web-building spiders and ground runner spiders) on a model pest (the olive fruit fly) within a…
Descriptors: Biology, Models, Science Instruction, Teaching Methods
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Mulder, Yvonne G.; Bollen, Lars; de Jong, Ton; Lazonder, Ard W. – Journal of Research in Science Teaching, 2016
Creating executable computer models is a potentially powerful approach to science learning. Learning by modelling is also challenging because students can easily get overwhelmed by the inherent complexities of the task. This study investigated whether offering partially worked-out models can facilitate students' modelling practices and promote…
Descriptors: Science Instruction, Biochemistry, Pretests Posttests, Computer Simulation
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Nazari, Mohammad Ali; Perrier, Pascal; Payan, Yohan – Journal of Speech, Language, and Hearing Research, 2013
Purpose: The authors aimed to design a distributed lambda model (DLM), which is well adapted to implement three-dimensional (3-D), finite-element descriptions of muscles. Method: A muscle element model was designed. Its stress-strain relationships included the active force-length characteristics of the ? model along the muscle fibers, together…
Descriptors: Models, Biology, Human Body, Evaluation
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Street, Garrett M.; Laubach, Timothy A. – American Biology Teacher, 2013
We provide a 5E structured-inquiry lesson so that students can learn more of the mathematics behind the logistic model of population biology. By using models and mathematics, students understand how population dynamics can be influenced by relatively simple changes in the environment.
Descriptors: Biology, Population Growth, Science Instruction, Computer Simulation
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Rands, Sean A. – Bioscience Education, 2012
Models are an important tool in science: not only do they act as a convenient device for describing a system or problem, but they also act as a conceptual tool for framing and exploring hypotheses. Models, and in particular computer simulations, are also an important education tool for training scientists, but it is difficult to teach students the…
Descriptors: Physical Activities, Biology, Sciences, Computer Assisted Instruction
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Weisz, Victoria I.; Argibay, Pablo F. – Cognition, 2009
New neurons are generated daily in the hippocampus during adult life. They are integrated into the existing neuronal circuits according to several factors such as age, physical exercise and hormonal status. At present, the role of these new neurons is debated. Computational simulations of hippocampal function allow the effects of neurogenesis to…
Descriptors: Exercise, Memory, Inferences, Brain
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Wyble, Brad; Bowman, Howard; Nieuwenstein, Mark – Journal of Experimental Psychology: Human Perception and Performance, 2009
The attentional blink (J. E. Raymond, K. L. Shapiro, & K. M. Arnell, 1992) refers to an apparent gap in perception observed when a second target follows a first within several hundred milliseconds. Theoretical and computational work have provided explanations for early sets of blink data, but more recent data have challenged these accounts by…
Descriptors: Visual Stimuli, Short Term Memory, Cognitive Processes, Eye Movements
National Institute of General Medical Sciences (NIGMS), 2009
Computer advances now let researchers quickly search through DNA sequences to find gene variations that could lead to disease, simulate how flu might spread through one's school, and design three-dimensional animations of molecules that rival any video game. By teaming computers and biology, scientists can answer new and old questions that could…
Descriptors: Science Careers, Computers, Genetics, Biology
Travis, John – Science News, 1991
A discipline in which scientists seek to simulate and synthesize lifelike behaviors within computers, chemical mixtures, and other media is discussed. A computer program with self-replicating digital "organisms" that evolve as they compete for computer time and memory is described. (KR)
Descriptors: Biology, Computer Science, Computer Simulation, Ecology
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Chen, Alice Y.; McKee, Nancy – Journal of Biocommunication (JBC), 1999
Describes the developmental process used to visualize the calcium ATPase enzyme of the sarcoplasmic reticulum which involves evaluating scientific information, consulting scientists, model making, storyboarding, and creating and editing in a computer medium. (Author/CCM)
Descriptors: Biochemistry, Biology, Computer Simulation, Enzymes
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