Creating an equitable and inclusive STEM classroom
A qualitative meta-synthesis of approaches and practices in higher education
Datos Bibliográficos
| ID | 22166232 |
|---|---|
| Autores | Victoria L Duncan (University of Northern Colorado, autor de correspondencia), Emily A Holt (0000-0002-1777-7882, University of Northern Colorado), Susan M Keenan (University of Northern Colorado) |
| Año | 2023 |
| Volumen | 8 |
| Fecha de publicación | 2023-09-15 |
| Peer Reviewed | Sí |
| Open Access | Sí |
| Tipo | ARTICLE |
| Revista | Frontiers in Education (JOURNAL) |
| Identificadores de la revista | ISSN: 2504-284X • E-ISSN: 2504-284X |
| Editorial | Frontiers Media SA (PUBLISHER • CH) |
| DOI | 10.3389/feduc.2023.1154652 |
| OpenAlex | W4386836699 |
| Idioma | EN |
| Citas recibidas | 5 |
| Referencias citadas | 92 |
How can Science, Technology, Engineering, and Mathematics (STEM) faculty integrate a humanistic approach to create environments where students do not feel marginalized? Changes are necessary to address the historically exclusive climate and systemic oppressive classroom policies and classroom practices dominated by White, patriarchal, Eurocentric perspectives pervasive in many STEM higher education classrooms. By incorporating approaches and practices documented in the literature over time and across multiple STEM disciplines, faculty can create equitable and inclusive (EI) classrooms. However, the challenge for individual faculty members is consolidating the information to identify fundamental elements necessary for establishing EI spaces. This project addresses that challenge by conducting a comprehensive meta-synthesis of higher education literature to identify themes for what constitutes an EI classroom and recommendations for how faculty can facilitate one. The dataset includes 61 articles from 277 authors and 48 unique journals and reflects a timeframe of January 1995–June 2021. Our findings are organized into four key concepts, indicating that EI pedagogies related to the affective, cognitive, and metacognitive categories of learning are vital to an equitable and inclusive classroom. However, the essential finding of this analysis was the importance of the fourth key concept, faculty cultural competency and elements related to the climate and structure of the classroom, referred to as Faculty Agency and Action (FAA). The results of this meta-synthesis were compared to the most frequently cited seminal works within the field, demonstrating that although these individual works contain most, they do not include all of the themes indicated by this study and, in some cases, over- or underrepresent some of the topics discussed. As mirrored in the most frequently cited works and the findings of this meta-synthesis, it takes incorporating classroom-focused approaches and faculty’s reflective resolve to understand and change how dominant and privileged identities are reflected for classrooms to be equitable and inclusive in STEM
Cognition · Engineering ethics · Mathematics education · Metacognition · Pedagogy · Social science · Sociology · Career Development and Diversity · Education, Achievement, and Giftedness · Educational Environments and Student Outcomes · Engineering · Psychology
Mathematical exclusion as social injustice
Humanizing STEM Education Amidst Environmental Crises
Bespoke, Relevant, and Inclusive Self-Paced, Online Modules to Build Tertiary Mathematics Engagement and Confidence
Bridging the Silence
Assessing Engineering Students’ Systems Thinking and Modeling Based on Their Online Learning
Metacognitive, cognitive and affective aspects of learning styles and strategies
Sense of belonging
Meeting the review family
Active learning narrows achievement gaps for underrepresented students in undergraduate science, technology, engineering, and math
Increasing Persistence of College Students in STEM
Support, belonging, motivation, and engagement in the college classroom
Meta‐synthesis method for qualitative research
Barriers to Faculty Pedagogical Change
Active learning increases student performance in science, engineering, and mathematics
Understanding teacher identity
Qualitative Inquiry and Research Design
Implicit social cognition
A typology of reviews
Interrater reliability
Microaggressions in everyday life
Self-efficacy
We’re the unicorns in STEM”
Pedagogical approaches to student racial conflict in the classroom
It’s dude culture”
Meta-Analysis and Meta-Synthesis Methodologies
White faculty transforming whiteness in the classroom through pedagogical practice
Lessons we still need to learn on creating more inclusive and responsive classrooms
Authority or Democracy? Integrating Two Perspectives on Equitable Classroom Management in Urban Schools
Addressing the Achievement Gap and Disproportionality Through the Use of Culturally Responsive Teaching Practices
Inverting the Classroom
A Call for a Humanistic Stance Toward K–12 Data Science Education
Tools for Teaching
Intrinsic and Extrinsic Motivations
Teaching To and Through Cultural Diversity
A threat in the air
Metasynthesis
Equity pedagogy
Developing Culturally and Structurally Responsive Approaches to STEM Education to Advance Education Equity
Culturally Relevant Teaching in Science Classrooms
Intercoder Reliability in Qualitative Research
| Obras citantes distintas | 5 |
|---|---|
| Citas por año | 2,5 |
| Intervalo de citas | 2024 - 2026 (3) |
| Velocidad de citación | current |
| Altamente citado | No |
| Tipos de cita | Neutras: 5 |