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Beth A. Lindsey; Andrew Boudreaux; Drew J. Rosen; MacKenzie R. Stetzer; Mila Kryjevskaia – Physical Review Physics Education Research, 2024
In this study, we have explored the effectiveness of two instructional approaches in the context of the motion of objects falling at terminal speed in the presence of air resistance. We ground these instructional approaches in dual-process theories of reasoning, which assert that human cognition relies on two thinking processes. Dual-process…
Descriptors: Science Instruction, Teaching Methods, Instructional Effectiveness, Motion
Jensen, Eric; McConchie, Liesl – Corwin, 2020
The more you know about the brains of your students, the better you can be at your profession. Brain-based teaching gives you the tools to boost cognitive functioning, decrease discipline issues, increase graduation rates, and foster the joy of learning. This innovative, new edition of the bestselling "Brain-Based Learning" by Eric…
Descriptors: Brain, Teaching Methods, Cognitive Ability, Cognitive Processes
Vilnite, Fiona Mary; Marnauza, Mara – Music Education Research, 2023
Mental training has been employed successfully by experienced musicians, but rarely explored with younger learners. Considering its benefits, however, including the use and development of predictive, feedforward processes, identified in neuroscience as being central to playing a musical instrument, this mixed qualitative-quantitative study…
Descriptors: Cognitive Processes, Training, Music Education, Musical Instruments
Hochberg, Katrin; Becker, Sebastian; Louis, Malte; Klein, Pascal; Kuhn, Jochen – Journal of Science Education and Technology, 2020
Mobile devices (smartphones or tablets) as experimental tools (METs) offer inspiring possibilities for science education, but until now, there has been little research studying this approach. Previous research indicated that METs have positive effects on students' interest and curiosity. The present investigation focuses on potential cognitive…
Descriptors: Telecommunications, Handheld Devices, Teaching Methods, Science Instruction
Pendrill, Ann-Marie – Physics Education, 2020
Students often use incoherent strategies in their problem solving involving force and motion, as revealed, e.g. when they are asked to draw force diagrams for amusement rides involving circular motion, whether in horizontal or vertical planes. Depending on the questions asked, assignments involving circular motion can reveal different types of…
Descriptors: Science Instruction, Physics, Motion, Scientific Concepts
Castro-Alonso, Juan C.; Wong, Mona; Adesope, Olusola O.; Ayres, Paul; Paas, Fred – Educational Psychology Review, 2019
Studies comparing the instructional effectiveness of dynamic versus static visualizations have produced mixed results. In this work, we investigated whether gender imbalance in the participant samples of these studies may have contributed to the mixed results. We conducted a meta-analysis of randomized experiments in which groups of students…
Descriptors: Visualization, Research Methodology, Motion, Biology
Kelsey E. Schenck; Candace Walkington; Mitchell J. Nathan – Grantee Submission, 2022
Mathematics is a particularly notable domain in which to understand the role of body movement for improving reasoning, instruction, and learning. One reason is that mathematics ideas are often expressed and taught through disembodied formalisms--diagrams and symbols that are culturally designed to be abstract, amodal, and arbitrary (Glenberg et…
Descriptors: Mathematics Instruction, Motion, Human Body, Nonverbal Communication
Goodhew, Lisa M.; Robertson, Amy D.; Heron, Paula R. L.; Scherr, Rachel E. – Physical Review Physics Education Research, 2021
Resources theory assumes that resource activation is context sensitive, and that an important dimension of context is the question students are answering. The context sensitivity of resource activation has been demonstrated empirically by case studies that show students using different resources to answer questions that are similar in focus. In…
Descriptors: Physics, Science Instruction, Motion, Teaching Methods
Frith, Emily; Miller, Stephanie; Loprinzi, Paul D. – Journal of Creative Behavior, 2020
A growing body of experimental work highlights the potential value of unstructured, interactive, or spontaneous motions, including gestures, dance, shifting body postures, physical object-manipulation, drawing, etc. to favorably impact creative performance. However, despite these favorable findings, to our knowledge, no systematic review has been…
Descriptors: Creativity, Cognitive Processes, Human Body, Motion
Levine, Susan C.; Goldin-Meadow, Susan; Carlson, Matthew T.; Hemani-Lopez, Naureen – Cognitive Science, 2018
We examined the effects of three different training conditions, all of which involve the motor system, on kindergarteners' mental transformation skill. We focused on three main questions. First, we asked whether training that involves making a motor movement that is relevant to the mental transformation--either concretely through action (action…
Descriptors: Training, Teaching Methods, Psychomotor Skills, Kindergarten
Sullivan, Jaclynn V. – Psychology Learning and Teaching, 2018
The objective of this review is to investigate research in instructional methods and embodied cognition in order to suggest the idea that a professor's movement provides information by increasing levels of exogenous embodiment. This review describes how teaching methods varying in human activity lead to different outcomes and how those outcomes…
Descriptors: Motion, Teaching Methods, Human Body, Cognitive Processes
Roth, Wolff-Michael; Maheux, Jean-François – Curriculum Inquiry, 2015
Standard approaches to thinking in the mathematics curriculum depict it as the result of some stable constructions in the mind of the person, constructions that are the results of individual efforts in the mind of subjects or of collective efforts that are then appropriated by and into the mind of individuals. Such work does not appreciate what…
Descriptors: Mathematical Logic, Cognitive Processes, Mathematics Instruction, Motion
Galloway, Kelli R.; Malakpa, Zoebedeh; Bretz, Stacey Lowery – Journal of Chemical Education, 2016
Meaningful learning requires the integration of cognitive and affective learning with the psychomotor, i.e., hands-on learning. The undergraduate chemistry laboratory is an ideal place for meaningful learning to occur. However, accurately characterizing students' affective experiences in the chemistry laboratory can be a very difficult task. While…
Descriptors: Science Instruction, College Science, Chemistry, Science Laboratories
Altiparmak, Kemal – International Journal of Mathematical Education in Science and Technology, 2014
In mathematic courses, construction of some concepts by the students in a meaningful way may be complicated. In such circumstances, to embody the concepts application of the required technologies may reinforce learning process. Onset of learning process over daily life events of the student's environment may lure their attention and may…
Descriptors: Animation, Cognitive Processes, Mathematics Instruction, Experimental Groups
Wong, Mona; Castro-Alonso, Juan C.; Ayres, Paul; Paas, Fred – Educational Technology & Society, 2015
Humans have an evolved embodied cognition that equips them to deal easily with the natural movements of object manipulations. Hence, learning a manipulative task is generally more effective when watching animations that show natural motions of the task, rather than equivalent static pictures. The present study was completed to explore this…
Descriptors: Gender Differences, Teaching Methods, Animation, Educational Technology
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