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Hutchison, John M. – Journal of Chemical Education, 2017
The use of structural representations to convey spatial and chemical information is an integral part of organic chemistry. As a result, students must acquire skills to interpret and translate between the various diagrammatic forms. This article summarizes the skills sets, problem-solving strategies, and identified student difficulties in…
Descriptors: Undergraduate Students, Organic Chemistry, Science Process Skills, Problem Solving
Nabbout-Cheiban, Marie – International Journal of Research in Undergraduate Mathematics Education, 2017
In this article we study the conceptions of an American and a French group of undergraduate pre-service teachers regarding the concept of independent events. Specifically, we study the role that intuition plays in their answers, ascertain the presence of probabilistic biases, and compare the findings with previous results collected on a different…
Descriptors: Intuition, Misconceptions, Case Studies, Preservice Teachers
Mandina, Shadreck; Dube, Eshiwet – Cypriot Journal of Educational Sciences, 2018
The study investigated the effect of a Target-Task Approach on the performance of advanced level chemistry students in electrochemistry. The study adopted the quasi-experimental research design. Data were obtained from two advanced level chemistry classes from two high schools in Gweru, Zimbabwe. One of the two classes was assigned to be the…
Descriptors: Foreign Countries, Problem Solving, Teaching Methods, Chemistry
Blum, Marcia; Davis, Jackie; Duran, Lillian; Meyer, Elaine; Young, Robin Miller; Missall, Kristen; Pei-Fang, Rachel Wu; Reese, Melanie; Shepley, Collin; Stewart, Lisa; Taylor, Antoinette – Division for Early Childhood of the Council for Exceptional Children, 2021
In early care and education, a multitiered system of support (MTSS) framework is a way to provide high-quality teaching and responsive caregiving through the delivery of differentiated support for all young children. In an early childhood MTSS framework, the needs of every child, regardless of ability, eligibility status, cultural and linguistic…
Descriptors: Multi Tiered Systems of Support, Early Childhood Education, Special Needs Students, Intervention
Polotskaia, Elena; Savard, Annie; Freiman, Viktor – European Journal of Psychology of Education, 2016
According to numerous studies (Barrouillet & Camos 2002; Brousseau 1988; Chevallard 1988; Riley et al. 1984; Schubauer-Leoni & Ntamakiliro, "Revue Des Sciences de L'éducation," 20(1): 87-113, 1994; Vergnaud 1982; Xin, "The Journal of Educational Research," 100(6):347-360, 2007), a combination of many factors, including…
Descriptors: Elementary School Students, Misconceptions, Word Problems (Mathematics), Mathematics Instruction
Disbudak, Ozge; Akyuz, Didem – International Journal for Technology in Mathematics Education, 2019
Concrete manipulatives and dynamic geometry software (DGS) are both commonly used for geometry education in elementary and middle schools. This study sets out to understand which of the two approaches was better in improving the conceptual understanding of quadrilaterals for fifth graders. A pre-/post-test design was conducted in which the same…
Descriptors: Instructional Effectiveness, Mathematics Instruction, Mathematics Achievement, Geometric Concepts
Stegall, Joanna B.; Malloy, Jacquelynn A. – Mathematics Teacher, 2019
The ties between literacy and numeracy exist in the development of vocabulary and language for understanding mathematical concepts. Research indicates that explicit instruction in mathematics vocabulary supports success with mathematics problem solving (Biemiller 2009; Pierce and Fontaine 2009; Rubenstein and Thompson 2002) for native…
Descriptors: Misconceptions, Mathematics Instruction, Algebra, Mathematics
Quigley, Cassie F.; Herro, Danielle – Teachers College Press, 2019
This practical book will help readers understand what STEAM is, how it differs from STEM, and how it can be used to engage students in K-8 classrooms. The authors present a conceptual model with recommendations and classroom examples illustrating various key aspects of STEAM teaching in action, including creating the correct teaching environment,…
Descriptors: STEM Education, Art Education, Elementary Schools, Middle Schools
Gal-Ezer, Judith; Trakhtenbrot, Mark – Computer Science Education, 2016
Reduction is one of the key techniques used for problem-solving in computer science. In particular, in the theory of computation and complexity (TCC), mapping and polynomial reductions are used for analysis of decidability and computational complexity of problems, including the core concept of NP-completeness. Reduction is a highly abstract…
Descriptors: Computer Science Education, Problem Solving, Computation, Difficulty Level
Keazer, Lindsay; Gerberry, Carla – Teaching Children Mathematics, 2017
Imagine a mathematics classroom in which students engage in sharing ideas and reasoning through solutions to interesting mathematical problems. They are excited about mathematics and working on challenging problems that encourage collaboration and critical thinking. These are things that teachers want, but sometimes they do not know how to achieve…
Descriptors: Common Core State Standards, Mathematics Education, Problem Solving, Persistence
Xie, Jinxia; Masingila, Joanna O. – Educational Studies in Mathematics, 2017
Existing studies have quantitatively evidenced the relatedness between problem posing and problem solving, as well as the magnitude of this relationship. However, the nature and features of this relationship need further qualitative exploration. This paper focuses on exploring the interactions, i.e., mutual effects and supports, between problem…
Descriptors: Fractions, Mathematics Instruction, Teaching Methods, Problem Solving
Kwon, Kyungbin – International Journal of Computer Science Education in Schools, 2017
Understanding the students' programming misconceptions is critical in that it identifies the reasons why students make errors in programming and allows instructors to design instructions accordingly. This study investigated the mental models of programming concepts held by pre-service teachers who were novice programmers. In an introductory…
Descriptors: Programming, Novices, Misconceptions, Instructional Design
Nelson, Lindsey J.; Fyfe, Emily R. – Metacognition and Learning, 2019
Metacognition is central to children's cognitive development. However, there is conflicting evidence about children's ability to accurately monitor their performance and subsequently control their behavior. This is of particular interest for mathematics topics on which children exhibit persistent misconceptions--that is, when children's knowledge…
Descriptors: Metacognition, Help Seeking, Decision Making, Self Esteem
Fitrianna, Aflich Yusnita; Dinia, Sofie; Mayasari; Nurhafifah, Astri Yuliani – Journal of Research and Advances in Mathematics Education, 2018
The purpose of this study is to describe students' ability in solving mathematical representation problems evaluated from mathematical disposition. The subjects are three students of 10th grade of public senior high school (PSHS) in Padalarang, West Java, Indonesia. They were selected from 35 students with high, medium, and low mathematical…
Descriptors: Mathematics Skills, High School Students, Problem Solving, Grade 10
Fyfe, Emily R.; Matthews, Percival G.; Amsel, Eric; McEldoon, Katherine L.; McNeil, Nicole M. – Journal of Educational Psychology, 2018
A central understanding in mathematics is knowledge of "math equivalence," the relation indicating that 2 quantities are equal and interchangeable. Decades of research have documented elementary-school (ages 7 to 11) children's (mis)understanding of math equivalence, and recent work has developed a construct map and comprehensive…
Descriptors: Mathematics Instruction, Algebra, Mathematical Concepts, Misconceptions

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