The purpose of this research was to develop and test a model of factors contributing to science, technology, engineering, and mathematics (STEM) learning and career orientation, examining the complex paths and relationships among social, motivational, and instructional factors underlying these outcomes for middle school youth. Social cognitive career theory provided the foundation for the research because of its emphasis on explaining mechanisms which influence both career orientations and academic performance. Key constructs investigated were youth STEM interest, self-efficacy, and career outcome expectancy (consequences of particular actions). The study also investigated the effects of prior knowledge, use of problem-solving learning strategies, and the support and influence of informal educators, family members, and peers. A structural equation model was developed, and structural equation modeling procedures were used to test proposed relationships between these constructs. Results showed that educators, peers, and family-influenced youth STEM interest, which in turn predicted their STEM self-efficacy and career outcome expectancy. STEM career orientation was fostered by youth-expected outcomes for such careers. Results suggest that students' pathways to STEM careers and learning can be largely explained by these constructs, and underscore the importance of youth STEM interest.
Literature and research examining father involvement has focused primarily on outcomes associated with the well-being and development of children. The contextual factors associated with fathers, and how these factors shape fathers' involvement with their young children, have received limited attention in this literature. Addressing this limitation, this study focuses on the relationship between fathers' residential status, age, race and ethnicity, educational attainment, financial status and father involvement. Results of the regression models indicate that fathers who reside with their children and fathers who are older are more involved with their children. Given these findings, policymakers, practitioners, and researchers have an opportunity to create and enhance policies and programs that may assist and support fathers in their development as parents and their involvement with their children.
The purpose of this study was to clarify equivocal findings in the parent-involvement literature and examine novel interactions in a New Zealand context. Specifically, this study tested direct effects of school year, parent education, family structure, and child gender on parent involvement in elementary school. In addition, interactions between parent, family, and child characteristics were explored as moderators on the relation of school year and parent involvement. Participants were 421 primary caregivers of children attending their first through final years of elementary school on New Zealand's South Island. Structural equation models were used to detect direct and interaction effects. Findings revealed statistically significant direct effects for several parent, family, and child characteristics examined. No interaction effects were found. Implications and future research directions are discussed. P A R E N T educational involvement is considered a critical element in fostering academic and social-emotional development, and has been identified as such in national policy in many countries (e.g., Ministry of Education, 2011; U.S. Department of Education, 2010). Policy initiatives advocating for increased and nuanced parent involvement are supported by numerous studies documenting positive relations between parent involvement and important child outcomes (Barnard, 2004;
Lincoln has spent the last eight years developing and implementing a comprehensive educational robotics program for youth ages 9-14. The program was delivered in informal (out-of-school) learning environments through robotics camps, clubs, and competitions and provided robotics experiences to over 5,000 youth and 400 educators. The goal of the project was to positively impact the youths' science, technology, engineering, and mathematics (STEM) knowledge and attitudes-and to foster an interest in STEM careers. Results of extensive research and evaluation showed that youth participation in the robotics activities increased their STEM content knowledge (particularly engineering and computer programming), their perceived problem solving skills and their interest in engineering careers. Youth also perceived that the robotics activities were different from those in school, reporting that the robotics camp was more interesting and involved more hands-on activities.
A critical aspect of rural research is carefully defining and describing the rural context. This is particularly important in rural special education research because different definitions of rural may influence resource allocation, grant funding eligibility, and/or research findings. In order to highlight the importance of operationalizing rural, we discuss the challenges of defining rural, provide descriptions of commonly used definitions to familiarize readers with standardized coding schemes, and summarize an empirical example demonstrating the implications different definitions can have on rural special education research and policy. We conclude by providing recommendations for both producers and consumers of research.
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