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INTERCULTURAL DYNAMICS AND GROUP IDENTITY AMONG CHILDREN IN DIVERSE EDUCATIONAL CONTEXTS wijaya wijaya; Jaden Tan; Rachel Chan
International Journal of Educatio Elementaria and Psychologia Vol. 3 No. 1 (2026)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/ijeep.v3i1.3425

Abstract

Increasing cultural diversity in contemporary educational settings has transformed schools into important social spaces where children encounter, interpret, and negotiate cultural differences. These interactions play a crucial role in the early formation of group identity, belonging, and social relations. This study aims to examine intercultural dynamics and the processes of group identity formation among children in diverse educational contexts, with particular attention to everyday peer interactions and classroom practices. The research employed a qualitative-dominant mixed-methods design involving classroom observations, semi-structured interviews with children and teachers, and sociometric mapping in culturally diverse primary schools. The findings reveal that children frequently form peer groups based on cultural and linguistic familiarity, while intercultural interaction increases primarily in structured learning situations supported by teacher mediation. Differences in perceived group belonging between majority and minority cultural groups indicate uneven experiences of inclusion within the same educational environments. The study concludes that cultural diversity alone does not automatically foster inclusive group identity among children. Intentional pedagogical strategies, cooperative learning structures, and supportive school cultures are essential in promoting meaningful intercultural engagement and equitable social participation. These findings underscore the central role of schools in shaping children’s early experiences of diversity and contribute to a deeper understanding of how inclusive group identities can be cultivated in multicultural educational settings.
EMBEDDED SYSTEMS DESIGN FOR SMART PRODUCTS IN INDUSTRY FOUR POINT ZERO MANUFACTURING Nana Sujana; Jaden Tan; Sofia Lim
Journal of Computer Science Advancements Vol. 4 No. 1 (2026)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/jsca.v4i1.3391

Abstract

Industry Four Point Zero manufacturing has transformed conventional production systems into intelligent, interconnected environments in which smart products play a central role. These smart products rely heavily on embedded systems to enable sensing, real-time control, communication, and autonomous decision-making under strict industrial constraints. This study aims to examine how embedded systems design influences the performance of smart products in Industry Four Point Zero manufacturing contexts, with particular attention to design attributes that support efficiency, adaptability, and reliability. A mixed-methods research design was employed, combining quantitative analysis of survey data collected from industrial practitioners with qualitative insights derived from case-based observations in manufacturing settings. The instruments focused on key embedded system design dimensions, including modularity, real-time responsiveness, communication efficiency, and system reliability, as well as corresponding smart product performance indicators. The results reveal that embedded systems design has a significant and positive effect on smart product performance, with communication efficiency and system reliability emerging as the strongest predictors of operational efficiency and fault tolerance. The findings demonstrate that smart manufacturing effectiveness is strongly determined by device-level design decisions rather than by higher-level digital infrastructures alone. In conclusion, the study highlights embedded systems design as a strategic foundation for smart products and underscores its critical role in achieving sustainable and resilient Industry Four Point Zero manufacturing.
GENETIC DIVERSITY AND PHYLOGENETIC ANALYSIS OF THE SUMATRAN RHINO (DICERORHINUS SUMATRENSIS) BASED ON ENVIRONMENTAL DNA Emily Brown; Jaden Tan; Elena Roth
Research of Scientia Naturalis Vol. 2 No. 6 (2025)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/scientia.v2i6.2887

Abstract

The Sumatran rhino (Dicerorhinus sumatrensis) remains one of the world’s most critically endangered mammals, and its rapid population decline has raised urgent concerns regarding the species’ genetic viability. Preserving its remaining genetic diversity is essential for designing effective conservation strategies, yet conventional sampling methods are invasive and logistically challenging. This study aims to investigate the genetic diversity and phylogenetic relationships of Sumatran rhinos using environmental DNA (eDNA) collected from peatland wallows and forest water sources across protected habitats. A combination of high-throughput sequencing, mitochondrial marker amplification, and Bayesian phylogenetic modeling was employed to reconstruct lineage structure and assess haplotype variability. The results reveal low overall genetic diversity but clear geographical clustering among northern and southern populations, suggesting historical isolation and limited gene flow. Several rare haplotypes were detected exclusively through eDNA, indicating that non-invasive molecular surveillance can uncover cryptic genetic signatures not captured by traditional methods. These findings highlight the species’ heightened risk of inbreeding and the need for genetically informed translocation or assisted reproduction programs. The study concludes that eDNA-based monitoring provides a robust, scalable tool for guiding long-term conservation management of D. sumatrensis
MOLECULAR SIGNATURES OF ENVIRONMENTAL EXPOSURE: A BIOMOLECULAR APPROACH TO ECOSYSTEM HEALTH ASSESSMENT Muhammad Hazmi; Ren Suzuki; Jaden Tan; Tim Bauer
Research of Scientia Naturalis Vol. 3 No. 1 (2026)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/scientia.v3i1.3469

Abstract

Escalating environmental pollution and climate-related stressors necessitate sensitive and mechanistically grounded tools for assessing ecosystem health. Traditional ecological indicators often detect degradation only after substantial biological damage has occurred, limiting early intervention capacity. Molecular signatures derived from multi-omics technologies offer high-resolution insight into sublethal biological responses to environmental exposure. This study aims to identify and validate integrated molecular signatures associated with contaminant gradients and to evaluate their predictive capacity for ecosystem health assessment across aquatic environments. A multi-site cross-sectional design was implemented involving 180 sentinel organisms collected along defined pollution gradients. Transcriptomic, proteomic, and metabolomic profiling was conducted using high-throughput sequencing and mass spectrometry platforms. Multivariate statistical modeling, including principal component analysis and structural equation modeling, was applied to link molecular perturbations with contaminant concentrations and ecological indices. Significant increases in differentially expressed genes, altered protein abundance, and metabolite perturbation indices were observed in high-exposure sites (p < 0.001). Molecular signatures accurately classified exposure categories with 91% predictive accuracy and significantly predicted biodiversity decline (? = –0.68, p < 0.001). Integrated multi-omics molecular signatures provide sensitive, early-warning indicators of ecosystem impairment, enabling mechanistic linkage between environmental exposure and ecological degradation.
SCALING SOCIAL VALUE THROUGH CREATIVE TECHNOLOGIES: STRATEGIC CHALLENGES IN DIGITAL ENTREPRENEURSHIP Sofia Lim; Jaden Tan; James Scott; Ma'rifani Fitri Arisa
Journal of Social Entrepreneurship and Creative Technology Vol. 3 No. 1 (2026)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/jseact.v3i1.3475

Abstract

The rapid expansion of creative technologies has transformed digital entrepreneurship into a critical driver of social innovation and inclusive growth. Platform ecosystems, artificial intelligence, and data-driven infrastructures enable ventures to scale rapidly, yet strategic tensions emerge between technological acceleration and sustained social mission integrity. This study aims to develop and empirically validate a strategic framework explaining how digital entrepreneurs scale social value while navigating governance, stakeholder, and measurement challenges. A mixed-methods explanatory sequential design was employed, combining survey data from 214 digital social ventures with in-depth case studies of selected firms operating in technology-intensive sectors. Multiple regression and structural equation modeling were used to test relationships among technological capability, strategic agility, stakeholder integration, impact measurement sophistication, and scaling performance. Findings indicate that technological capability significantly predicts scaling performance (? = 0.41, p < 0.001), with strategic agility acting as a mediating variable. Hybrid ventures balancing innovation with governance and ecosystem collaboration achieved superior scaling outcomes. The study concludes that sustainable scaling of social value requires multidimensional capability alignment rather than technology-driven expansion alone. Integrative strategic management of creative technologies is essential for maintaining legitimacy, adaptability, and measurable social impact in digital entrepreneurship.