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Individuals with disabilities have been less involved in school activities than their peers of the same age and this includes career preparation in science and math (Agran et al., 2019; Eriksson et al., 2007; Jackson et al., 2022). Students with disabilities often lack access to facilities, programs, and equipment, and acceptance by educators, employers, and co-workers (Burgstahler, 1994). The effects of a virtual reality (VR) human anatomy application as the means of teaching science vocabulary definitions and locations acquisition for three different human anatomy systems (digestive, respiratory, and integumentary) to college-age students with intellectual disability (ID) are reviewed. This single subject, multiple baseline study included two transition age youth with ID. The intervention package included both a guided and exploratory portion. Data were collected on the participants’ accuracy on the definitions and locations of ten vocabulary words for each of the three body systems on a paper assessment. Findings indicated that a functional relation existed between the implementation of the intervention package and an increase in the accuracy of scores in both definitions and locations for each of the three body systems for each participant.
Individuals with disabilities have been less involved in school activities than their peers of the same age and this includes career preparation in science and math (Agran et al., 2019; Eriksson et al., 2007; Jackson et al., 2022). Students with disabilities often lack access to facilities, programs, and equipment, and acceptance by educators, employers, and co-workers (Burgstahler, 1994). The effects of a virtual reality (VR) human anatomy application as the means of teaching science vocabulary definitions and locations acquisition for three different human anatomy systems (digestive, respiratory, and integumentary) to college-age students with intellectual disability (ID) are reviewed. This single subject, multiple baseline study included two transition age youth with ID. The intervention package included both a guided and exploratory portion. Data were collected on the participants’ accuracy on the definitions and locations of ten vocabulary words for each of the three body systems on a paper assessment. Findings indicated that a functional relation existed between the implementation of the intervention package and an increase in the accuracy of scores in both definitions and locations for each of the three body systems for each participant.
The article explores the possibilities of using artificial intelligence technologies to create an open educational environment. Specific artificial intelligence tools and services for use in the educational process are analysed. The authors classify artificial intelligence tools according to their functionality in key areas such as learning, teaching, assessment, and administration. The analysed tools include: Knewton, ALEKS, DreamBox, Edmodo, Grammarly, Speechify, Synthesia, ChatGPT, and others. It is concluded that artificial intelligence technologies allow creating an open educational environment with personalised, adaptive learning, automated assessment, and effective management. The article describes typical ways of using artificial intelligence in education for learning (assigning personalised tasks, providing interactive dialogue, analysing students’ learning activities), teaching (increasing the adaptability of teaching methods and developing the professional competence of teachers), assessment (automation of knowledge control processes, prediction of student performance, creation of assessment tools), and administration (analysis of educational data, making informed management decisions). At the same time, it is necessary to take into account the potential risks and ethical issues with respect to the introduction of artificial intelligence into education. For further research, the authors suggest practical testing of approaches, analysis of economic aspects, and the study of the application of sectoral features of artificial intelligence. The results of the study are valuable for determining the optimal strategies for integrating artificial intelligence into the educational environment to improve the quality of education and ensure the innovative development of the industry.
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