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Bromfield Lee, Deborah C.; Beggs, Grace A. – Journal of Chemical Education, 2021
The authors describe the construction and use of tactile models for demonstrating intermolecular forces. These models are composed of inexpensive materials and can be used in college chemistry classrooms of varying levels including general and organic chemistry. The models were designed to be paired with an accompanying activity to encourage…
Descriptors: Manipulative Materials, Models, Demonstrations (Educational), Science Instruction
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Günes, Habibe; Genç, Zülfü – Malaysian Online Journal of Educational Technology, 2021
The purpose of this study was to investigate how the use of the action-based manipulatives affects students' problem-solving skills, fluency, understanding, and reasoning ability in mathematics classrooms. A case study was conducted as an out-of-school project with seven second grade students who were part of the study group. Data collection…
Descriptors: Toys, Teaching Methods, Academic Achievement, Mathematics Skills
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Shin, Mikyung; Park, Jiyeon; Grimes, Rene; Bryant, Diane P. – Exceptional Children, 2021
We synthesized studies published since 2000 that assessed the effects of using virtual manipulatives to increase the mathematical accuracy of students with disabilities. We extracted a total of 1,796 raw data points from 114 cases across 35 single-case studies. By applying three-level multilevel modeling, we analyzed both immediate effects and…
Descriptors: Students with Disabilities, Mathematics Instruction, Manipulative Materials, Teaching Methods
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Rogosic, Renato; Heidt, Benjamin; Passariello-Jansen, Juliette; Björnör, Saga; Bonni, Silvio; Dimech, David; Arreguin-Campos, Rocio; Lowdon, Joseph; Jiménez Monroy, Kathia L.; Caldara, Manlio; Eersels, Kasper; van Grinsven, Bart; Cleij, Thomas J.; Diliën, Hanne – Journal of Chemical Education, 2021
The need to develop interest in STEM (science, technology, engineering, and mathematics) skills in young pupils has driven many educational systems to include STEM as a subject in primary schools. In this work, a science kit aimed at children from 8 to 14 years old is presented as a support platform for an innovative and stimulating approach to…
Descriptors: Teaching Methods, STEM Education, Elementary Secondary Education, Skill Development
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Hidayah, Isti; Isnarto; Masrukan; Asikin, Mohammad; Margunani – International Journal of Instruction, 2021
The Indonesian 2013 curriculum requires the learning process to provide opportunities for the students to develop their higher order thinking skills. Many studies believe that the use of manipulatives are effective to foster it. However, we found that the manipulatives only available for the classroom use, while the students need to also exercise…
Descriptors: Foreign Countries, Mathematics Instruction, Manipulative Materials, Thinking Skills
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Murphy, Katherine Wood – COABE Journal: The Resource for Adult Education, 2021
Like English for speakers of other languages (ESOL) teachers, adult basic education (ABE)/high school equivalency (HSE) teachers of U.S.-born, L1-English-speaking learners must deliver instruction that effectively addresses a range of culturally influenced needs, perspectives, experiences, and knowledge in their classes. For this reason, several…
Descriptors: Adult Basic Education, English Language Learners, Culturally Relevant Education, Manipulative Materials
Kathryn Mary Rich – ProQuest LLC, 2021
A recent review of research on virtual manipulatives (VMs), defined as technology-based interactive representations of mathematical ideas (Moyer-Packenham, & Bolyard, 2016), suggests strengths relative to other instructional tools in supporting student learning of mathematics (Moyer-Packenham & Westenskow, 2013). Researchers have…
Descriptors: Manipulative Materials, Educational Technology, Mathematics Instruction, Teaching Methods
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Chiphambo, Shakespear Maliketi; Feza, Nosisi Nellie – EURASIA Journal of Mathematics, Science and Technology Education, 2020
Research reveals that many mathematics teachers find it difficult to stimulate learners' interest in learning geometry. One major reason suggested is that geometric concepts are not well conceptualised and comprehended by both learners and teachers. The study explored learners' views on how polygon pieces and dictionary mediate learning of…
Descriptors: Geometry, Mathematics Instruction, Teaching Methods, Geometric Concepts
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dos Santos, Edilene Simões Costa; França, Denise Medina – Pedagogical Research, 2020
Through the historical analysis of Dienes' works and through the suggestions of activities, the objective of this text is to understand the movement of systematization of knowledge for teaching and to teach classification, ranking, and ordination through the use of logical blocks during the Modern Mathematics Movement (1960-1980), a time of…
Descriptors: Modern Mathematics, Educational History, Foreign Countries, Mathematics Instruction
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Sara Willner-Giwerc; Chris Rogers; Kristen Wendell – International Journal of Designs for Learning, 2020
We describe a LEGO-compatible Internet of Things Technology (IoT) designed to enable elementary school students to learn about IoT by building their own smart, connected products. The Internet of Things is any network of physical devices that can share information over the internet. Using small, Wi-Fi enabled microprocessors, Grove sensors,…
Descriptors: Internet, Elementary School Students, Manipulative Materials, Educational Technology
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Chiu Hwang – Mathematics Teacher: Learning and Teaching PK-12, 2020
The purpose of this article is to demonstrate how exponential functions and patterns can be taught by well-structured lessons composed of classroom activities, mathematical questions, discussions, and solving problems. Sawyer (1943) used a rope-and-post system to introduce the concept of logarithms and to calculate a product by adding the…
Descriptors: Mathematics Instruction, Learning Activities, Questioning Techniques, Discussion (Teaching Technique)
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Gabriel Matney; Julia Porcella; Shannon Gladieux – Mathematics Teacher: Learning and Teaching PK-12, 2020
This article shares the importance of giving K-12 students opportunities to develop spatial sense. We explain how we designed Quick Blocks as an activity to engage our students in both spatial reasoning and number sense. Several examples of students thinking are shared as well as a classroom dialogue.
Descriptors: Mathematics Instruction, Spatial Ability, Learning Activities, Manipulative Materials
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Zebehazy, Kim T.; Wilton, Adam P.; Velugu, Bhagyalaxmi – Journal of Visual Impairment & Blindness, 2022
Introduction: Facility in graphics use is critical to accessing data visualizations in science, technology, engineering, the arts, and mathematics (STEAM) content areas. Efforts to understand the cognitive processes underlying strategic action by students with visual impairments must consider both metacognition and self-regulated learning.…
Descriptors: Visual Impairments, Students with Disabilities, Visual Aids, Student Attitudes
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Bouck, Emily; Long, Holly; Jakubow, Larissa – Education and Training in Autism and Developmental Disabilities, 2022
The global COVID-19 pandemic forced teachers to support students online in multiple academic subjects, including mathematics, including students with disabilities and those at-risk. And yet, to date, limited research exists examining teaching mathematics to students with disabilities online. The current study explored the use of the…
Descriptors: Mathematics Instruction, Online Courses, Division, Manipulative Materials
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Chen, Briella Baer; Yakubova, Gulnoza; Hughes, Elizabeth M. – Preventing School Failure, 2022
As teachers are faced with increasing demands to meet the needs of diverse learners, such as the growing number of students with ASD, the need to accommodate each learner and provide opportunities for individualized learning becomes critical. Therefore, the aim of this A-B single-case study was to explore a variety of support strategies (e.g.,…
Descriptors: Students with Disabilities, Autism, Pervasive Developmental Disorders, Teaching Methods
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