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Wu, Bian; Hu, Yiling; Wang, Minhong – Educational Technology & Society, 2020
The high-fidelity and interactivity afforded by head-mounted displays (HMD) has a potential to improve learning in problem-solving contexts. However, there is a lack of studies with mixed findings on the efficacy of HMD in the development of problem-solving competence. Moreover, the integration of learning strategies with HMD supported learning is…
Descriptors: Technology Uses in Education, Problem Solving, Student Attitudes, Self Efficacy
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Frey, Regina F.; McDaniel, Mark A.; Bunce, Diane M.; Cahill, Michael J.; Perry, Martin D. – CBE - Life Sciences Education, 2020
We previously reported that students' concept-building approaches, identified a priori using a cognitive psychology laboratory task, extend to learning complex science, technology, engineering, and mathematics topics. This prior study examined student performance in both general and organic chemistry at a select research institution, after…
Descriptors: Concept Formation, Problem Solving, Active Learning, Inquiry
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Hurst, Chris; Linsell, Chris – European Journal of STEM Education, 2020
This small study sought to determine students' knowledge of multiplication and division and whether they are able to use sets of bundling sticks to demonstrate their knowledge. Manipulatives are widely used in primary and some middle school classrooms, and can assist children to connect multiplicative concepts to physical representations.…
Descriptors: Mathematics Skills, Thinking Skills, Knowledge Level, Problem Solving
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Bin Mubayrik, Haifa Fahad – Tuning Journal for Higher Education, 2020
Classroom response systems (clickers) have been found to engage and attract student attention and facilitate the practical application of key ideas to solve problems. This study was designed to investigate the effects of clicker use on problem-solving among adult learners. A self-administered questionnaire was distributed to 60 students after…
Descriptors: Audience Response Systems, Instructional Effectiveness, Problem Solving, Adult Students
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Dunn, Peter K.; Marshman, Margaret – Australian Mathematics Education Journal, 2020
Peter Dunn and Margaret Marshman present the second of their data files articles in which they discuss the statistical investigation cycle which describes the whole process of conducting a statistical research study. [For "The Data Files: A Series of Articles to Support Mathematics Teachers to Teach Statistics," see EJ1259108.]
Descriptors: Statistics, Data Analysis, Teaching Methods, Problem Solving
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Flores, Rejeenald M.; Rodrigo, Ma. Mercedes T. – Journal of Educational Computing Research, 2020
Wheel-spinning refers to the failure to master a skill in a timely manner or after a considerable number of practice opportunities. Several past studies have developed wheel-spinning models in the areas of Mathematics and Physics. However, no models have been made for the context of novice programming. The purpose of this study was to develop…
Descriptors: Mastery Learning, Novices, Programming, Computer Science Education
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Kadir, Munirah Shaik; Yeung, Alexander Seeshing; Ryan, Richard M.; Forbes, Anne; Diallo, Thierno M. O. – Educational Psychology Review, 2020
The aim of the present study was to investigate the effects of an intervention on students' achievement and motivation. The intervention was in the form of an instructional approach named Dual-Approach Instruction since it was designed to facilitate both the cognitive and non-cognitive aspects of students' learning. The intervention effects were…
Descriptors: Science Achievement, Student Motivation, Teaching Methods, Grade 7
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Good, Melanie; Marshman, Emily; Yerushalmi, Edit; Singh, Chandralekha – Physical Review Physics Education Research, 2020
We examined physics graduate teaching assistants' views about introductory physics problem "types," i.e., different ways of posing the same underlying physics problem, within the context of a semester-long teaching assistant (TA) professional development course. Here, we focus on TAs' views about two types of broken-into-parts problems…
Descriptors: Graduate Students, Teaching Assistants, Student Attitudes, Introductory Courses
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Rich, Kathryn M.; Yadav, Aman; Larimore, Rachel A. – Education and Information Technologies, 2020
Incorporating computational thinking (CT) ideas into core subjects, such as mathematics and science, is one way of bringing early computer science (CS) education into elementary school. Minimal research has explored how teachers can translate their knowledge of CT into practice to create opportunities for their students to engage in CT during…
Descriptors: Computation, Thinking Skills, Elementary School Mathematics, Elementary School Science
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Koç, Beyza; Korkmaz, Isa – Psycho-Educational Research Reviews, 2020
In this study, it was aimed to teach the addition and subtraction to a student with dyscalculia who is in third grade at elementary school. Before preparing individualized program, the student was given a pretest to measure about his level of the subject. The instruction was carried out in a room in the school, with a time of 40 minutes per day in…
Descriptors: Mathematics Instruction, Addition, Subtraction, Learning Disabilities
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Tabacu, Lucia M.; Watson, Silvana Maria; Chezar, Laura C.; Gable, Robert; Oliveira, Célia R.; Lopes, João – Preventing School Failure, 2020
We examined the type of errors on multiplication and division computation problems of 326 rising fifth graders enrolled in four elementary schools in Northern Portugal. We further examined whether there was a difference in the number of errors across age and whether there was an association between students' performance on number knowledge and…
Descriptors: Error Patterns, Misconceptions, Mathematics Achievement, Mathematics Instruction
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Meng, Qingquan; Jia, Jiyou; Zhang, Zhiyong – Interactive Technology and Smart Education, 2020
Purpose: The purpose of this study is to verify the effect of smart pedagogy to facilitate the high order thinking skills of students and to provide the design suggestion of curriculum and intelligent tutoring systems in smart education. Design/methodology/approach: A smart pedagogy framework was designed. The quasi-experiment was conducted in a…
Descriptors: Thinking Skills, Instructional Effectiveness, Technology Integration, Intelligent Tutoring Systems
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Khalid, Madihah; Embong, Zulmaryan – International Electronic Journal of Mathematics Education, 2020
This research investigated students' sources and causes of errors and misconception in solving routine problems involving addition, subtraction, multiplication, and division of integers. This qualitative study involved observation of eight Year 7 classes and interviews with the respective classroom teachers. Sixteen Year 7 students who exhibit…
Descriptors: Error Patterns, Misconceptions, Problem Solving, Addition
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Rosli, Roslinda; Goldsby, Dianne; Onwuegbuzie, Anthony J.; Capraro, Mary Margaret; Capraro, Robert M.; Gonzalez, Elsa Gonzalez Y. – Journal on Mathematics Education, 2020
Previous research has shown knowledge, perceptions, and attitudes are essential factors during mathematics classroom instruction. The current study examined the effects of a 3-week fraction instructional unit using concrete models, problem-solving, and problem-posing to improve elementary preservice teachers' knowledge, perceptions and attitudes…
Descriptors: Preservice Teachers, Student Attitudes, Knowledge Level, Fractions
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Nouri, Jalal; Zhang, Lechen; Mannila, Linda; Norén, Eva – Education Inquiry, 2020
Teachers around the world have started teaching programming at the K-9 level, some due to the formal introduction of programming in the national curriculum, others without such pressure and on their own initiative. In this study, we attempted to understand which skills -- both CT-related and general -- are developed among pupils in the process of…
Descriptors: Skill Development, Computer Science Education, 21st Century Skills, Thinking Skills
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