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Foulkes, Megan; Sella, Francesco; Wege, Theresa Elise; Gilmore, Camilla – Mind, Brain, and Education, 2023
There is mixed evidence as to whether concrete manipulatives (e.g., toy animals) are better than abstract manipulatives (e.g., counters) for teaching mathematical concepts to children. Concreteness is defined as the amount of extraneous information a manipulative provides, and in this study we aimed to unpick which dimensions of concreteness…
Descriptors: Manipulative Materials, Teaching Methods, Mathematics Instruction, Mathematical Concepts
Heather Shannon Fish – ProQuest LLC, 2022
This study sought to compare the effectiveness of teaching with manipulatives versus algorithms and procedures. Assessment data were collected before instruction, after instruction with algorithms and procedures, and after instruction with modeling and manipulatives. Data were collected from 113 students from the 5th, 6th, and 7th grades within…
Descriptors: Mathematics Instruction, Algorithms, Middle School Students, Manipulative Materials
Rahaman, Jeenath; Agrawal, Harshit; Srivastava, Nisheeth; Chandrasekharan, Sanjay – Cognitive Science, 2018
Manipulation of physical models such as tangrams and tiles is a popular approach to teaching early mathematics concepts. This pedagogical approach is extended by new computational media, where mathematical entities such as equations and vectors can be virtually manipulated. The cognitive and neural mechanisms supporting such manipulation-based…
Descriptors: Mathematics Instruction, Problem Solving, Manipulative Materials, Object Manipulation
Osana, Helena P.; Przednowek, Katarzyna; Cooperman, Allyson; Adrien, Emmanuelle – Journal of Experimental Education, 2018
The effects of prior encodings of manipulatives (red and blue plastic chips) on children's ability to use them as representations of quantity were tested. First graders (N = 73) were assigned to four conditions in which the encoding of plastic chips was experimentally manipulated. All children then participated in an addition activity that relied…
Descriptors: Grade 1, Elementary School Students, Manipulative Materials, Cognitive Processes
Demir, Mustafa – Journal of Interactive Learning Research, 2018
Virtual Manipulatives (VMs) are computer-based, dynamic, and visual representations of mathematical concepts, provide interactive learning environments to advance mathematics instruction (Moyer et al., 2002). Despite their broad use, few research explored the integration of VMs into mathematics instruction (Moyer-Packenham & Westenskow, 2013).…
Descriptors: Manipulative Materials, Mathematics Instruction, Educational Technology, Technology Uses in Education
Larbi, Ernest; Mavis, Okyere – Journal of Education and Practice, 2016
The study was designed to investigate the efficacy of using algebra tile manipulatives in junior high school students' performance. The study sample comprised 56 students from two schools purposely selected from two towns within the Komenda Edina Eguafo Abirem municipality. The students were made up of two groups; the experimental and the control…
Descriptors: Mathematics Education, Teaching Methods, Manipulative Materials, Junior High School Students
Bravo, Sheila – Journal of the American Academy of Special Education Professionals, 2016
The purpose of this action research was to facilitate reading comprehension of read-alouds in students with the most significant cognitive disabilities. Grade-level read-alouds were paired with manipulatives (real objects) that represented the stories read. Students were assessed after reading, and the results between instances when manipulatives…
Descriptors: Action Research, Reading Comprehension, Oral Reading, Intellectual Disability
Bouck, Emily C.; Chamberlain, Courtney; Park, Jiyoon – Education and Training in Autism and Developmental Disabilities, 2017
Manipulatives support students with and without disabilities in mathematics. However, as students age, concrete manipulatives can be limiting and potentially not age appropriate (Satsangi, 2015). An alternative is virtual manipulatives, including app-based manipulatives. This study compared the use of app-based manipulatives to concrete…
Descriptors: Disabilities, Teaching Methods, Mathematics Instruction, Manipulative Materials
Shumway, Jessica F.; Moyer-Packenham, Patricia S.; Baker, Joseph M.; Westenskow, Arla; Anderson-Pence, Katie L.; Tucker, Stephen I.; Boyer-Thurgood, Jennifer; Jordan, Kerry E. – International Journal of Education in Mathematics, Science and Technology, 2016
The purpose of this study was to explore the relationship between instructional modality used for teaching fractions and third- and fourth-grade students' responses and strategies to open-response fraction items. The participants were 155 third-grade and 200 fourth-grade students from 17 public school classrooms. Students within each class were…
Descriptors: Teaching Methods, Fractions, Mathematics Instruction, Grade 3
Kooloos, Jan G. M.; Schepens-Franke, Annelieke N.; Bergman, Esther M.; Donders, Rogier A. R. T.; Vorstenbosch, Marc A. T. M. – Anatomical Sciences Education, 2014
Clay modeling is increasingly used as a teaching method other than dissection. The haptic experience during clay modeling is supposed to correspond to the learning effect of manipulations during exercises in the dissection room involving tissues and organs. We questioned this assumption in two pretest-post-test experiments. In these experiments,…
Descriptors: Teaching Methods, Models, Manipulative Materials, Anatomy
Korkmaz, Özgen – Online Submission, 2016
The aim of the study was to present the effect of Lego Mindstorms Ev3 based design activities on students' attitudes towards learning computer programming, self-efficacy beliefs and levels of academic achievement. The research is a pretest-posttest with control group semi-experimental study. The study group of the research consisted of 53 students…
Descriptors: Programming, Design, Student Attitudes, Computer Science Education
Resnick, Ilyse; Verdine, Brian; Golinkoff, Roberta; Hirsh-Pasek, Kathy – Grantee Submission, 2016
Preschoolers' experiences with shapes are important because geometry is foundational to aspects of mathematics and it is now part of the Common Core for school-readiness. Exposure to shapes also provides experiences that are key to developing spatial thinking more broadly. Yet achieving a strong conceptual understanding of geometric categories can…
Descriptors: Geometry, Geometric Concepts, Mathematics, Mathematics Instruction
Carbonneau, Kira J.; Marley, Scott C. – Journal of Experimental Education, 2015
Educators often use manipulatives when teaching mathematics because manipulatives are assumed to promote learning. However, research indicates that instructional variables impact the effectiveness of manipulatives. In this article, the authors consider the relations between two instructional characteristics: (a) level of instructional guidance and…
Descriptors: Mathematics Instruction, Manipulative Materials, Preschool Children, Teaching Methods
Mendiburo, Maria; Hasselbring, Ted – Journal of Computers in Mathematics and Science Teaching, 2014
This study examines the relative instructional efficiency of virtual and physical fraction manipulatives. More specifically, this study uses a randomized experiment to determine if differences in students' knowledge of fractions magnitude exist when students use virtual rather than physical manipulatives to learn basic fraction concepts.…
Descriptors: Teaching Methods, Manipulative Materials, Mathematics Instruction, Mathematical Concepts
Lee, Chun-Yi; Chen, Ming-Jang – Journal of Educational Computing Research, 2014
Previous studies on the effects of virtual and physical manipulatives have failed to consider the impact of prior knowledge on the efficacy of manipulatives. This study focuses on the learning of plane geometry in junior high schools, including the sum of interior angles in polygons, the sum of exterior angles in polygons, and the properties of…
Descriptors: Manipulative Materials, Teaching Methods, Educational Technology, Junior High Schools