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Wanko, Jeffrey J. – Mathematics Teacher, 2017
Working with language-independent logic structures can help students develop both inductive and deductive reasoning skills. The Japanese publisher Nikoli (with resources available both in print and online) produces a treasure trove of language-independent logic puzzles. The Nikoli print resources are mostly in Japanese, creating the extra…
Descriptors: Mathematics Instruction, Teaching Methods, Puzzles, Logical Thinking
Tambunan, Hardi; Naibaho, Tutiarny – Journal of Education and Learning (EduLearn), 2019
The purpose of this study is to determine the mathematics teacher performance category in building high order thinking skills (HOTS) of students. The study was conducted on 560 students taken randomly from ten junior high schools and eight high schools from eight districts in North Sumatra Province. Data collection techniques and instruments are…
Descriptors: Mathematics Teachers, Thinking Skills, Teaching Methods, Creativity
Barlow, Angela T.; Duncan, Matthew; Lischka, Alyson E.; Hartland, Kristin S.; Willingham, J. Christopher – Teaching Children Mathematics, 2017
When presented with a problem in mathematics class, students often function as problem performers rather than problem solvers (Rigelman 2007). That is, rather than understanding the problem, students focus on using an operation to complete it. Students' tendencies to act as problem performers can prevent them from suggesting problem-solving…
Descriptors: Problem Solving, Learning Strategies, Mathematics Education, Scaffolding (Teaching Technique)
Battista, Michael T.; Winer, Michael L.; Frazee, Leah M. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2017
The positive correlation between spatial ability and mathematical ability has been well-documented, but not well-understood. Examining student work in spatial situations that require numerical operations provides us with insight into this elusive connection. Drawing on student work with angle, length, volume, and area, we examine the ways in which…
Descriptors: Spatial Ability, Mathematics Skills, Abstract Reasoning, Correlation
Bao, Lei; Koenig, Kathleen; Xiao, Yang; Fritchman, Joseph; Zhou, Shaona; Chen, Cheng – Physical Review Physics Education Research, 2022
Abilities in scientific thinking and reasoning have been emphasized as core areas of initiatives, such as the Next Generation Science Standards or the College Board Standards for College Success in Science, which focus on the skills the future will demand of today's students. Although there is rich literature on studies of how these abilities…
Descriptors: Physics, Science Instruction, Teaching Methods, Thinking Skills
Insani, Metri Dian; Pratiwi, Novida; Muhardjito, M. – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2019
This research was aimed at profiling student's thinking skills in dealing with Higher-Order Thinking Skills (HOTS) questions based on Marzano taxonomy by referring to 13 indicators. This pre-experimental research employed pretest-posttest design. The indicators included were comparison, classification, deductive reasoning, inductive reasoning,…
Descriptors: Biology, Taxonomy, Science Instruction, Thinking Skills
Cutumisu, Maria; Adams, Cathy; Lu, Chang – Journal of Science Education and Technology, 2019
Computational thinking (CT) is regarded as an essential twenty-first century competency and it is already embedded in K-12 curricula across the globe. However, research on assessing CT has lagged, with few assessments being implemented and validated. Moreover, there is a lack of systematic grouping of CT assessments. This scoping review examines…
Descriptors: Computation, Thinking Skills, 21st Century Skills, Elementary Secondary Education
Ichinose, Cherie Lynn; Martinez-Cruz, Armando M. – Mathematics Teacher, 2018
The Common Core State Standards for Mathematics (CCSSM) (CCSSI 2010) propose a new vision for the mathematics classroom with updated content standards and Standards for Mathematical Practice (SMP). These practices are founded on NCTM processes (Problem Solving, Reasoning and Proof, Communication, Representation, and Connections) and abilities…
Descriptors: Mathematics Instruction, Teaching Methods, Problem Solving, Common Core State Standards
Kuo, Shih-Ping – ProQuest LLC, 2018
This exploratory study uses the convergent design of mixed methods to integrate adaptive expertise theory to study how individual student participant from graphic design or non-graphic-design majors to solve a novel ideation problem in graphic design. Adaptive expertise includes six dimensions: metacognition, flexibility, dynamic knowledge,…
Descriptors: Graphic Arts, Design, Expertise, Concept Formation
Rowe, Elizabeth; Asbell-Clarke, Jodi; Almeda, Mia; Gasca, Santiago; Edwards, Teon; Bardar, Erin; Shute, Valerie; Ventura, Matthew – International Journal of Computer Science Education in Schools, 2021
The Inclusive Assessment of Computational Thinking (CT) designed for accessibility and learner variability was studied in over 50 classes in US schools (grades 3-8). The validation studies of IACT sampled thousands of students to establish IACT's construct and concurrent validity as well as test-retest reliability. IACT items for each CT practice…
Descriptors: Puzzles, Logical Thinking, Thinking Skills, Construct Validity
Park, Jiyoon; Bouck, Emily C.; Fisher, Marisa H. – Journal of Special Education, 2021
While mathematics education is key to the post-school outcomes of students with disabilities, it has received less attention in research and practice compared with other aspects of educating this population. Skill maintenance is particularly crucial in mathematics because students build upon prior knowledge across grade levels. They also need to…
Descriptors: Students with Disabilities, Mathematics Instruction, Teaching Methods, Mathematics Skills
Hong, Jee Yun; Kim, Min Kyeong – EURASIA Journal of Mathematics, Science & Technology Education, 2016
Ill-structured problems can be regarded as one of the measures that meet recent social needs emphasizing students' abilities to solve real-life problems. This study aimed to analyze the mathematical abstraction process in solving such problems, and to identify the mathematical abstraction level ([I] Recognition of mathematical structure through…
Descriptors: Problem Solving, Mathematics Instruction, Abstract Reasoning, Grade 5
Hammond, Thomas C.; Oltman, Julia; Salter, Shannon – Social Education, 2019
The social studies curriculum travels through time and space and is bigger on the inside than it is on the outside. To an outsider, the social studies curriculum is a single line on a program of studies, 45 minutes of a student's school day. Those on the inside, however, know that the field covers history, geography, civics, economics, and much…
Descriptors: Social Studies, Time, Problem Solving, Teaching Methods
Lespiau, Florence; Tricot, André – Educational Psychology Review, 2019
According to Geary's evolutionary approach, humans are able to easily acquire primary knowledge and, with more efforts, secondary knowledge. The present study investigates how primary knowledge contents can facilitate the learning of formal logical rules, i.e., secondary knowledge. Framing formal logical problems in evolutionary salient contexts…
Descriptors: Epistemology, Learning Motivation, Abstract Reasoning, Logical Thinking
Vale, Colleen; Widjaja, Wanty; Herbert, Sandra; Bragg, Leicha A.; Loong, Esther Yoon-Kin – International Journal of Science and Mathematics Education, 2017
Explaining appears to dominate primary teachers' understanding of mathematical reasoning when it is not confused with problem solving. Drawing on previous literature of mathematical reasoning, we generate a view of the critical aspects of reasoning that may assist primary teachers when designing and enacting tasks to elicit and develop…
Descriptors: Foreign Countries, Elementary School Students, Grade 3, Grade 4

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