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Minogue, James; Borland, David – Journal of Science Education and Technology, 2016
While haptics (simulated touch) represents a potential breakthrough technology for science teaching and learning, there is relatively little research into its differential impact in the context of teaching and learning. This paper describes the testing of a haptically enhanced simulation (HES) for learning about buoyancy. Despite a lifetime of…
Descriptors: Technology Uses in Education, Science Instruction, Simulation, Scientific Principles
Minogue, James; Jones, Gail – International Journal of Science Education, 2009
The application of Biggs' and Collis' Structure of Observed Learning Outcomes taxonomy in the evaluation of student learning about cell membrane transport via a computer-based learning environment is described in this study. Pre-test-post-test comparisons of student outcome data (n = 80) were made across two groups of randomly assigned students:…
Descriptors: Scientific Concepts, Outcomes of Education, Classification, Science Instruction
Wiebe, Eric N.; Minogue, James; Jones, M. Gail; Cowley, Jennifer; Krebs, Denise – Computers & Education, 2009
While there has been extensive experimental research on haptics, less has been conducted on cross-modal interactions between visual and haptic perception and even less still on cross-modal applications in instructional settings. This study looks at a simulation on the principles of levers using both visual and haptic feedback: one group received…
Descriptors: Feedback (Response), Eye Movements, Attention, Tactual Perception
Minogue, James; Jones, M. Gail – Review of Educational Research, 2006
As human beings, we can interact with our environment through the sense of touch, which helps us to build an understanding of objects and events. The implications of touch for cognition are recognized by many educators who advocate the use of "hands-on" instruction. But is it possible to know something more completely by touching it? Does touch…
Descriptors: Perceptual Motor Learning, Sensory Integration, Tactual Perception, Sensory Experience
Jones, M. Gail; Minogue, James; Tretter, Thomas R.; Negishi, Atsuko; Taylor, Russell – Science Education, 2006
This study investigated the impact of haptic augmentation of a science inquiry program on students' learning about viruses and nanoscale science. The study assessed how the addition of different types of haptic feedback (active touch and kinesthetic feedback) combined with computer visualizations influenced middle and high school students'…
Descriptors: Microbiology, Student Attitudes, Likert Scales, Feedback