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Fostering Computational Thinking Among Underrepresented Students in STEM - Strategies for Supporting Racially Equitable... Fostering Computational Thinking Among Underrepresented Students in STEM - Strategies for Supporting Racially Equitable Computing (Hardcover)
Jacqueline Leonard, Roni Ellington, Jakita Thomas, Monica Mitchell, Olatokunbo Fashola
R3,886 Discovery Miles 38 860 Ships in 12 - 17 working days

This book broadly educates preservice teachers and scholars about current research on computational thinking (CT). More specifically, attention is given to computational algorithmic thinking (CAT), particularly among underrepresented K-12 student groups in STEM education. Computational algorithmic thinking (CAT)-a precursor to CT-is explored in this text as the ability to design, implement, and evaluate the application of algorithms to solve a variety of problems. Drawing on observations from research studies that focused on innovative STEM programs, including underrepresented students in rural, suburban, and urban contexts, the authors reflect on project-based learning experiences, pedagogy, and evaluation that are conducive to developing advanced computational thinking, specifically among diverse student populations. This practical text includes vignettes and visual examples to illustrate how coding, computer modeling, robotics, and drones may be used to promote CT and CAT among students in diverse classrooms.

Fostering Computational Thinking Among Underrepresented Students in STEM - Strategies for Supporting Racially Equitable... Fostering Computational Thinking Among Underrepresented Students in STEM - Strategies for Supporting Racially Equitable Computing (Paperback)
Jacqueline Leonard, Roni Ellington, Jakita Thomas, Monica Mitchell, Olatokunbo Fashola
R1,185 Discovery Miles 11 850 Ships in 12 - 17 working days

This book broadly educates preservice teachers and scholars about current research on computational thinking (CT). More specifically, attention is given to computational algorithmic thinking (CAT), particularly among underrepresented K-12 student groups in STEM education. Computational algorithmic thinking (CAT)-a precursor to CT-is explored in this text as the ability to design, implement, and evaluate the application of algorithms to solve a variety of problems. Drawing on observations from research studies that focused on innovative STEM programs, including underrepresented students in rural, suburban, and urban contexts, the authors reflect on project-based learning experiences, pedagogy, and evaluation that are conducive to developing advanced computational thinking, specifically among diverse student populations. This practical text includes vignettes and visual examples to illustrate how coding, computer modeling, robotics, and drones may be used to promote CT and CAT among students in diverse classrooms.

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