In this study, it was tried to determine the digital transformation in education in the Society 5.0 process. The research was carried out in the fall semester of 2021–2022. It was realised with the participation of 120 university students. The case study pattern, which is one of the qualitative research approaches, was adopted to determine the views on Society 5.0 tools. The case study is an exploratory research method. In the research, 4-week digital transformation training was given to university students. A ‘Society 5.0 and digital transformation’ questionnaire prepared by the researchers was used to collect data in the study. The questionnaire used in the research was distributed to and collected online from university students. The findings obtained from the data are explained in detail with the content analysis method. As a result of the research, it was concluded that the digital transformations of university students were determined within the Society 5.0 process and these values were positive.
The aim of this study is to determine the adoption of distance education and mobile technology by university students. Quantitative research method was used in the study. The research was conducted in the fall semester of 2021-2022. Volunteer 412 university students continuing their education in Kazakhstan participated in the research. In the research, 3-week online education mobile technology training was given to university students. "Mobile Technology in Education" measurement tool developed by the researchers and compiled by experts in the field was used in the research. The measurement tool was delivered and collected by university students via online method. The analysis of the data was made by using the SPSS program, frequency analysis, t-test, and the results were added to the research in the presence of tables. According to the results obtained from the research, it was concluded that there was a significant difference between the post-test mobile technology status of university students and that their mobile technology status was high.
The article considers the analysis of the membrane surface resistance influence on a mass transfer intensity. Objective of the analysis was to develop approaches for engineering calculation of the process. The article carries out analysis of modern approaches for description of different porous adsorption layers’ structure and offers new models of porous adsorption layers used in a membranous gas separation modeling as well.
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