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Peltier, Corey; Vannest, Kimberly J. – Review of Educational Research, 2017
A variety of instructional practices have been recommended to increase the problem-solving (PS) performance of elementary school children. The purpose of this meta-analysis was to systematically review research on the use of schema instruction to increase the PS performance of elementary school-age students. A total of 21 studies, with 3,408…
Descriptors: Elementary School Students, Problem Solving, Instructional Innovation, Instructional Effectiveness
Schooner, Patrick; Nordlöf, Charlotta; Klasander, Claes; Hallström, Jonas – Design and Technology Education, 2017
The Organisation for Economic Co-operation and Development (OECD, 2013) defines its views on necessary skills for 21st century citizenship and life-long learning, advocating a generic skillset of literacy, numeracy, and problem-solving in technology-rich environments. Other sources also include critical thinking as a vital 21st Century skill.…
Descriptors: Role, Problem Solving, Critical Thinking, Compulsory Education
McPadden, Daryl; Brewe, Eric – Physical Review Physics Education Research, 2017
Representation use is a critical skill for learning, problem solving, and communicating in science, especially in physics where multiple representations often scaffold the understanding of a phenomenon. University Modeling Instruction, which is an active-learning, research-based introductory physics curriculum centered on students' use of…
Descriptors: Science Instruction, Introductory Courses, Comparative Analysis, College Students
Suarez, Alvaro; Kahan, Sandra; Zavala, Genaro; Marti, Arturo C. – Physical Review Physics Education Research, 2017
We describe a study on the conceptual difficulties faced by college students in understanding hydrodynamics of ideal fluids. This study was based on responses obtained in hundreds of written exams complemented with several oral interviews, which were held with first-year engineering and science university students. Their responses allowed us to…
Descriptors: Science Instruction, Scientific Concepts, Concept Formation, Science Tests
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
Sensibaugh, Cheryl A.; Madrid, Nathaniel J.; Choi, Hye-Jeong; Anderson, William L.; Osgood, Marcy P. – CBE - Life Sciences Education, 2017
With growing interest in promoting skills related to the scientific process, we studied performance in solving ill-defined problems demonstrated by graduating biochemistry majors at a public, minority-serving university. As adoption of techniques for facilitating the attainment of higher-order learning objectives broadens, so too does the need to…
Descriptors: Problem Solving, Biochemistry, Undergraduate Students, College Science
Chitpin, Stephanie – International Journal of Educational Management, 2017
Purpose: The purpose of this paper is to illustrate how associationism mistakenly assumes that direct experience is possible; that is, there is expectation-free observation and association without prior expectation. Thus, associationism assumes that learning involves the absorption of information from the environment itself. However, contrary…
Descriptors: Abstract Reasoning, Associative Learning, Association (Psychology), Philosophy
Solis, S. Lynneth; Curtis, Kaley N.; Hayes-Messinger, Amani – Journal of Research in Childhood Education, 2017
Researchers propose that experiencing and manipulating physical principles through objects allows young children to formulate scientific intuitions that may serve as precursors to learning in STEM subjects. This may be especially true when children discover these physical principles through object affordances during play. The present study…
Descriptors: Play, STEM Education, Preschool Children, Naturalistic Observation
Jensen, Jens Højgaard; Niss, Martin; Jankvist, Uffe Thomas – International Journal of Mathematical Education in Science and Technology, 2017
The article addresses the problématique of where mathematization is taught in the educational system, and who teaches it. Mathematization is usually not a part of mathematics programs at the upper secondary level, but we argue that physics teaching has something to offer in this respect, if it focuses on solving so-called unformalized problems,…
Descriptors: Problem Solving, Mathematics, Physics, Foreign Countries
Redman, Christine – Theory Into Practice, 2017
The main focus here is to examine the benefits of defining and developing an engineering curriculum for elementary schools. Like many other international educational systems, Australian educational settings have been seeking to effectively implement science, technology, engineering, and mathematics (STEM) education. However, current assumptions…
Descriptors: STEM Education, Engineering, Engineering Education, Science Education
McGuire, Patrick; Tu, Shihfen; Logue, Mary Ellin; Mason, Craig A.; Ostrow, Korinn – Educational Media International, 2017
This study compared the effects of three different feedback formats provided to sixth grade mathematics students within a web-based online learning platform, ASSISTments. A sample of 196 students were randomly assigned to one of three conditions: (1) text-based feedback; (2) image-based feedback; and (3) correctness only feedback. Regardless of…
Descriptors: Feedback (Response), Middle Schools, Randomized Controlled Trials, Mathematics Instruction
Freiman, Viktor; Polotskaia, Elena; Savard, Annie – ZDM: The International Journal on Mathematics Education, 2017
In Canada, as in other Western countries, solving word problems has comprised an important part of mathematics curricula. Traditionally, arithmetic thinking has largely been privileged as the main strategy for solving word problems at the elementary level, thus postponing the introduction of algebraic thinking to the secondary school. Drawing on…
Descriptors: Mathematics Instruction, Word Problems (Mathematics), Computer Assisted Instruction, Algebra
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
Oslund, Joy A.; Barton, Joshua – Mathematics Teaching in the Middle School, 2017
It is difficult but important for mathematics teachers to help students see themselves as capable mathematics learners, that is, to help each student develop a positive mathematics identity. A student's mathematics identity is a powerful influence on his or her engagement and participation in mathematics. Students act in ways that are consistent…
Descriptors: Mathematics Instruction, Teaching Methods, Identification (Psychology), Self Concept
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

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