Related Experiment Video
Updated: Jan 20, 2026

Project-Based Learning Guidelines for Health Sciences Students: An Analysis with Data Mining and Qualitative Techniques
Published on: December 9, 2022
Learning Science Beyond Sight: Conceptual Engagement of Elementary School Students with Visual Impairment through
Resti Yektyastuti1, Sarwanto1, Rasmitadila2
1Science Education, Universitas Sebelas Maret, Surakarta, Central Java, 57126, Indonesia.
Background:
A pressing challenge in science education is that visually impaired students continue to lack access to appropriate instructional media, making it difficult for them to engage with abstract concepts and resulting in limited opportunities for equitable education. Responding to this challenge, the present study investigates the design and implementation of hands-on, multisensory instructional strategies aimed at improving conceptual understanding of magnetism among elementary students with visual impairments.
Method:
The research involved four elementary school students with varying degrees of visual acuity. Employing the ADDIE (Analysis, Design, Development, Implementation, and Evaluation) framework, the research was divided into 3 stages: needs analysis (A) using explanatory case study, design and develop (DD) instructional media and validate using Aiken's V, implement and evaluate (IE) the media into classroom activity using evaluative case study.
Result:
The findings indicate that tactile models, auditory explanations, and adapted activity kits significantly improved students' engagement and comprehension of key magnetism concepts such as magnetic properties, forces, and polarity. Through an evaluative case study, the research demonstrates that instructional materials tailored to the sensory and cognitive profiles of visually impaired learners not only foster deeper conceptual understanding but also promote greater participation and confidence in science learning.
Conclusions:
Multisensory science kits help students access abstract science material so that it can be felt and helps achieve conceptual understanding. Moreover, the results may inform teachers, curriculum designers, and science education professionals on how to design and adapt science content in ways that are both accessible and pedagogically sound.
More Related Videos
Related Concept Videos
13:44Project-Based Learning Guidelines for Health Sciences Students: An Analysis with Data Mining and Qualitative Techniques
10:43Eye-tracking Technology and Data-mining Techniques used for a Behavioral Analysis of Adults engaged in Learning Processes
13:57Assessing the Multiple Dimensions of Engagement to Characterize Learning: A Neurophysiological Perspective
06:25Capturing Representative Hand Use at Home Using Egocentric Video in Individuals with Upper Limb Impairment
07:54Design, Fabrication, and Administration of the Hand Active Sensation Test (HASTe)
09:55Bridging the Technology Divide in the COVID-19 Era: Using Virtual Outreach to Expose Middle and High School Students to Imaging Technology

