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Biology Faculty Publications

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2018

STEM

Articles 1 - 2 of 2

Full-Text Articles in Education

Ne Stem 4u Afterschool Intervention Leads To Gains In Stem Content Knowledge For Middle School Youth, Christine E. Cutucache, Taylor Boham, Jamie Luhr, Amie Sommers, Nikolaus Stevenson, Erkko Sointu, Kati Mäkitalo‐Siegl, Sirpa Kärkkäinen, Teemu Valtonen, Neal Grandgenett, William Tapprich Dec 2018

Ne Stem 4u Afterschool Intervention Leads To Gains In Stem Content Knowledge For Middle School Youth, Christine E. Cutucache, Taylor Boham, Jamie Luhr, Amie Sommers, Nikolaus Stevenson, Erkko Sointu, Kati Mäkitalo‐Siegl, Sirpa Kärkkäinen, Teemu Valtonen, Neal Grandgenett, William Tapprich

Biology Faculty Publications

Afterschool interventions in STEM are linked to learning gains during the school day. These opportunities engage and excite students about STEM concepts since they observe a more hands-on, project-oriented approach. Often these opportunities for afterschool interventions are infrequent in nature and leave gaps for students in their maturation and understanding. Herein we describe the first report of an afterschool intervention, named NE STEM 4U, targeting socioeconomically disadvantaged middle school youth via a twice weekly, year-long intervention, studied across two years. We assessed the impact of this program on i.) short-term, individual student gains in STEM content knowledge and ii.) delivery …


A Low-Intensity, Hybrid Design Between A "Traditional" And A "Course-Based" Research Experience Yields Positive Outcomes For Science Undergraduate Freshmen And Shows Potential For Large-Scale Application, Thushani Rodrigo-Peiris, Lin Xiang, Vincent M. Cassone Dec 2018

A Low-Intensity, Hybrid Design Between A "Traditional" And A "Course-Based" Research Experience Yields Positive Outcomes For Science Undergraduate Freshmen And Shows Potential For Large-Scale Application, Thushani Rodrigo-Peiris, Lin Xiang, Vincent M. Cassone

Biology Faculty Publications

Based on positive student outcomes, providing research experiences from early undergraduate years is recommended for science, technology, engineering, and mathematics (STEM) majors. To this end, we designed a novel research experience called the “STEMCats Research Experience” (SRE) for a cohort of 119 second-semester freshmen with diverse college preparatory levels, demographics, and academic majors. The SRE targeted student outcomes of enhancing retention in STEM majors, STEM competency development, and STEM academic performance. It was designed as a hybrid of features from apprenticeship-based traditional undergraduate research experience and course-based undergraduate research experience designs, considering five factors: 1) an authentic research experience, 2) …