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Cain, Meghan K.; Kaboski, Juhi R.; Gilger, Jeffrey W. – Autism: The International Journal of Research and Practice, 2019
Gifted children with autism spectrum disorder (ASD) are often referred to as twice-exceptional, the term that highlights the co-occurrence of exceptional challenges and exceptional giftedness. This study performed secondary data analysis on samples of twice-exceptional children from the Pre-Elementary Education Longitudinal Study and the Special…
Descriptors: Academically Gifted, Autism, Pervasive Developmental Disorders, Preschool Education
Rich, Kathryn M.; Yadov, Aman; Zhu, Marissa – Journal of Computers in Mathematics and Science Teaching, 2019
Moving among levels of abstraction is an important skill in mathematics and computer science, and students show similar difficulties when applying abstraction in each discipline. While computer science educators have examined ways to explicitly teach students how to consciously navigate levels of abstraction, these ideas have not been explored in…
Descriptors: Mathematics Instruction, Computer Science Education, Elementary School Mathematics, Elementary School Students
Prinster, Andrew J.; Hoskins, Josephina L.; Strode, Paul K. – American Biology Teacher, 2019
Students learning the skills of science benefit from opportunities to move between the scientific problems and questions they confront and the mathematical tools available to answer the questions and solve the problems. Indeed, students learn science best when they are actively engaged in pursuing answers to authentic and relevant questions. We…
Descriptors: Science Education, Science Process Skills, Problem Solving, Statistical Analysis
Marion, Charles F. – Mathematics Teacher, 2015
This analysis of a problem that is frequently posed at professional development workshops, in print, and on the Web--the coffee-milk mixture riddle--illustrates the timeless advice of George Pólya's masterpiece on problem solving in mathematics, "How to Solve It." In his book, Pólya recommends that problems previously solved and put…
Descriptors: Problem Solving, Teaching Methods, Mathematical Concepts, Computation
Abramovich, Sergei; Nikitin, Yakov Yu. – Computers in the Schools, 2017
This article is written to share teaching ideas about using commonly available computer applications--a spreadsheet, "The Geometer's Sketchpad", and "Wolfram Alpha"--to explore three classic and historically significant problems from the probability theory. These ideas stem from the authors' work with prospective economists,…
Descriptors: Probability, Mathematics Instruction, Spreadsheets, Computer Assisted Instruction
Sung, Woonhee; Ahn, Junghyun; Black, John B. – Technology, Knowledge and Learning, 2017
A science, technology, engineering, and mathematics-influenced classroom requires learning activities that provide hands-on experiences with technological tools to encourage problem-solving skills (Brophy et al. in "J Eng Educ" 97(3):369-387, 2008; Mataric et al. in "AAAI spring symposium on robots and robot venues: resources for AI…
Descriptors: Computation, Programming, Problem Solving, Mathematics Education
Psycharis, Sarantos; Kallia, Maria – Instructional Science: An International Journal of the Learning Sciences, 2017
In this paper we investigate whether computer programming has an impact on high school student's reasoning skills, problem solving and self-efficacy in Mathematics. The quasi-experimental design was adopted to implement the study. The sample of the research comprised 66 high school students separated into two groups, the experimental and the…
Descriptors: Programming, Secondary School Students, Thinking Skills, Mathematics Instruction
Piselli, Katherine D. – ProQuest LLC, 2017
Math fluency, which refers to the ability to solve single digit arithmetic problems quickly and accurately, is a foundational mathematical skill. Recent research has examined the role of phonological processing, executive control, and number sense in explaining differences in math fluency performance in school-aged children. Identifying the links…
Descriptors: Cognitive Ability, Mathematics Achievement, Intelligence, Mathematics Instruction
Li Sun, Editor; Cheng-Yao Lin, Editor – IGI Global, 2025
Many educators face the challenge of engaging students in science and mathematics, often struggling to bridge the gap between theoretical concepts taught in classrooms and their real-world applications. This disconnect can lead to disinterest and disengagement among students, hindering their learning outcomes. "Cases on Informal Learning for…
Descriptors: Informal Education, Science Education, Mathematics Education, Problem Solving
Hurdle, Zach; Warshauer, Max; White, Alex – Mathematics Teacher, 2016
The desire to persuade students to avoid strictly memorizing formulas is a recurring theme throughout discussions of curriculum and problem solving. In combinatorics, a branch of discrete mathematics, problems can be easy to write--identify a few categories, add a few restrictions, specify an outcome--yet extremely challenging to solve. A lesson…
Descriptors: Mathematics Instruction, Mathematics Activities, Mathematical Formulas, Computation
Basu, Satabdi; Biswas, Gautam; Sengupta, Pratim; Dickes, Amanda; Kinnebrew, John S.; Clark, Douglas – Research and Practice in Technology Enhanced Learning, 2016
Computational thinking (CT) parallels the core practices of science, technology, engineering, and mathematics (STEM) education and is believed to effectively support students' learning of science and math concepts. However, despite the synergies between CT and STEM education, integrating the two to support synergistic learning remains an important…
Descriptors: Science Instruction, STEM Education, Concept Formation, Middle School Students
Baek, Youngkyun; Wang, Sasha; Yang, Dazhi; Ching, Yu-Hui; Swanson, Steve; Chittoori, Bhaskar – European Journal of STEM Education, 2019
This study, a sub-study of a National Science Foundation (NSF) funded research project, applies a modified strategy of the U[superscript 2]MC for an eight-week afterschool robotics curriculum to promote upper elementary students' computational thinking in the second grade. Twenty-one students in second grade participated in a Life on Mars project…
Descriptors: Grade 2, Robotics, Elementary School Students, Elementary School Science
Kiliç, Seval Deniz; Masal, Ercan – International Journal of Psychology and Educational Studies, 2019
With the understanding of importance of pedagogical content knowledge, professional noticing has become one of the research subjects of the mathematics educators for the last 10 years. This qualitative study which explores secondary school students' solution processes regarding the concept of equation ,one of the main components of algebraic…
Descriptors: Secondary School Students, Student Attitudes, Preservice Teachers, Observation
Semushin, I. V.; Tsyganova, J. V.; Ugarov, V. V.; Afanasova, A. I. – European Journal of Engineering Education, 2018
Russian higher education institutions' tradition of teaching large-enrolled classes is impairing student striving for individual prominence, one-upmanship, and hopes for originality. Intending to converting these drawbacks into benefits, a Project-Centred Education Model (PCEM) has been introduced to deliver Computational Mathematics and…
Descriptors: Student Projects, Engineering Education, Active Learning, Teaching Methods
Kibbe, Melissa M.; Feigenson, Lisa – Developmental Science, 2015
The Approximate Number System (ANS) supports basic arithmetic computation in early childhood, but it is unclear whether the ANS also supports the more complex computations introduced later in formal education. "Solving for x" in addend-unknown problems is notoriously difficult for children, who often struggle with these types of problems…
Descriptors: Young Children, Problem Solving, Numbers, Mathematics Skills

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