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Kazoka, Dzintra; Pilmane, Mara; Edelmers, Edgars – Education Sciences, 2021
Combining classical educational methods with interactive three-dimensional (3D) visualization technology has great power to support and provide students with a unique opportunity to use them in the study process, training, and/or simulation of different medical procedures in terms of a Human Anatomy course. In 2016, Riga Stradinš University (RSU)…
Descriptors: Visual Aids, Manipulative Materials, Anatomy, Foreign Countries
Wu, Chih-Fu; Wu, Hsiang-Ping; Tu, Yung-Hsiang; Yeh, I-Ting; Chang, Chin-Te – Journal of Visual Impairment & Blindness, 2022
Introduction: Three-dimensional (3D) printing can be used to produce tactile teaching materials for individuals with visual impairments. Although 3D and 2.5D teaching materials are based on realistic content, no systematic conversion model for 2D materials exists. Here, we combined the previous findings and this study's results and technology to…
Descriptors: Printing, Instructional Materials, Manipulative Materials, Tactile Adaptation
Kataoka, Verônica Yumi; Vita, Aida Carvalho; Da Silva, Claudia Borim – Statistics Education Research Journal, 2021
This article aims to investigate the teaching of chance in the context of tactile models (TM) from the perspective of the Theory of Register of Semiotic Representations. In this qualitative research, we sought to identify the different types of semiotic registers and transformations (treatment and conversion), in the solutions of the tasks of the…
Descriptors: Probability, Concept Formation, Mathematical Concepts, Statistics
Quane, Kate – Mathematics Education Research Group of Australasia, 2022
The use of manipulatives to develop conceptual understanding appears to be a prevalent practice in many mathematical learning experiences, particularly in the early years of schooling. This study evaluates the impact of mathematical manipulatives on young children's attitudes towards mathematics (YCATM). The modified three-dimensional model of…
Descriptors: Student Attitudes, Teaching Methods, Mathematics Instruction, Manipulative Materials
Otten, Mara; van den Heuvel-Panhuizen, Marja; Veldhuis, Michiel; Boom, Jan; Heinze, Aiso – Education Sciences, 2020
The balance model is often used for teaching linear equation solving. Little research has investigated the influence of various representations of this model on students' learning outcomes. In this quasi-experimental study, we examined the effects of two learning environments with balance models on primary school students' reasoning related to…
Descriptors: Mathematics Instruction, Teaching Methods, Algebra, Mathematical Logic
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
Teke, Dilek; Sozbilir, Mustafa – Chemistry Education Research and Practice, 2019
This study aimed to identify the needs of a 10th grade congenitally blind student in an inclusive chemistry classroom and design and develop tactile materials to teach the 'energy in living systems' topic with particular emphasis on covering the symbolic language of the chemistry. A single case study design was used to carry out an in-depth and…
Descriptors: Chemistry, Science Instruction, Grade 10, Energy
Remmele, Martin; Martens, Andreas – Advances in Physiology Education, 2019
Sculpting representations of human organs out of modeling clay is an acknowledged method of teaching anatomical structures. Because of its potential to provide detailed spatial information, stereoscopic imagery can be understood to function as a suitable template for such sculpting tasks. Currently, it is unknown whether the advantages of…
Descriptors: Visualization, Spatial Ability, Hands on Science, Science Education
Dam, Michiel; Ottenhof, Koen; Van Boxtel, Carla; Janssen, Fred – Education Sciences, 2019
Out of all the complex systems in science education curricula, cellular respiration is considered to be one of the most complex and abstract processes. Students are known to have low interest and difficulties in conceptual understanding of cellular respiration which provides a challenge for teaching and learning. In this study, we took literature…
Descriptors: Science Education, Teaching Methods, Manipulative Materials, Program Effectiveness
Elsworth, Catherine; Li, Barbara T. Y.; Ten, Abilio – Journal of Chemical Education, 2017
In this letter we present an innovative and cost-effective method of constructing crystal structures using Dual Lock fastening adhesive tape with table tennis (ping pong) balls. The use of these fasteners allows the balls to be easily assembled into layers to model various crystal structures and unit cells and then completely disassembled again.…
Descriptors: Hands on Science, Science Activities, Models, Physical Sciences
Validation of Clay Modeling as a Learning Tool for the Periventricular Structures of the Human Brain
Akle, Veronica; Peña-Silva, Ricardo A.; Valencia, Diego M.; Rincón-Perez, Carlos W. – Anatomical Sciences Education, 2018
Visualizing anatomical structures and functional processes in three dimensions (3D) are important skills for medical students. However, contemplating 3D structures mentally and interpreting biomedical images can be challenging. This study examines the impact of a new pedagogical approach to teaching neuroanatomy, specifically how building a…
Descriptors: Anatomy, Visualization, Brain, Medical Education
Kin, Ng Hong; Ling, Tan Aik – Teaching Science, 2016
The concept of specificity of enzyme action can potentially be abstract for some students as they fail to appreciate how the three-dimensional configuration of enzymes and the active sites confer perfect fit for specific substrates. In science text books, the specificity of enzyme-substrate binding is typically likened to the action of a lock and…
Descriptors: Science Instruction, Scientific Concepts, Teaching Methods, Models
Shiakalli, Maria Angela; Zacharos, Konstantinos; Markopoulos, Christos – International Journal for Mathematics Teaching and Learning, 2015
Our research programme, a part of which is presented in this paper, looked at four year old children's ability to use manipulatives in the construction of cube models. We looked at how pre-school children managed the creation of cube nets as a mathematical problem and whether graphical representations of solutions could become a useful tool in a…
Descriptors: Young Children, Manipulative Materials, Models, Preschool Education
Lee, Yeung Chung – Journal of Biological Education, 2015
Self-generated analogical models have emerged recently as alternatives to teacher-supplied analogies and seem to have good potential to promote deep learning and scientific thinking. However, studies of the ways and contexts in which students generate these models are still too limited to allow a fuller appraisal of these models' effectiveness in…
Descriptors: Science Instruction, Biology, Models, Scientific Concepts
Luneta, Kakoma, Ed. – Research in Mathematics Education, 2021
This book represents a crop of wide-ranging research conducted by renown scholars in sub-Sahara Africa revolving around mathematics teaching and professional development programs for mathematics teachers. The research-based proposals and actual how-to-conduct professional development initiatives that enhance effective mathematics instruction are…
Descriptors: Foreign Countries, Mathematics Education, Manipulative Materials, Visualization
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