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Baidal-Bustamante, Eduardo; Mora, Cesar; Alvarez-Alvarado, Manuel S. – IEEE Transactions on Education, 2023
With the advancements in information and communications technologies, new teaching approaches arise. In this context, project-based learning (PBL) and science, technology, engineering, the arts, and mathematics model (STEAM) emerge as the most popular in the education field, attributed to their efficacy on students' learning capacity. This article…
Descriptors: Art Education, STEM Education, Active Learning, Student Projects
Scott R. Bartholomew; Mark P. Mahoney; Joanna Papadopoulos; Subrina D. Oliver; Euisuk Sung; Douglas Lecorchick; Geoff Wright; Todd R. Kelley – Technology and Engineering Teacher, 2022
The ITEEA's Council for Technology and Engineering Teacher Education (CTETE) Curriculum Committee solicited, collected, and analyzed several examples of international lesson plans to find out how various countries understand and/or apply the "Standards for Technological and Engineering Literacy: The Role of Technology and Engineering in STEM…
Descriptors: STEM Education, Comparative Analysis, Curriculum Evaluation, Foreign Countries
John Zubizarreta – Journal of the National Collegiate Honors Council, 2022
In response to the issue of why and how the humanities--and more broadly the liberal arts and sciences--have historically dominated honors education and disregarded preprofessional fields, the author finds that the crux of the problem is not the nature or worth of the disciplines involved or why this or that subject area is de facto included or…
Descriptors: Honors Curriculum, Educational Practices, Humanities, Liberal Arts
R. F. Malenda; S. Talbott; Scott Walck – Journal of College Science Teaching, 2024
In this article, we discuss Micro Assignment Guided Inquiry and Collaboration (MAGIC), an active learning method that draws on the merits of inquiry-based learning in STEM courses. We describe the use of Micro Assignments (MAs) consisting of a series of short, instructive guiding questions that scaffold the course material. Students work through…
Descriptors: Assignments, Inquiry, Active Learning, Scaffolding (Teaching Technique)
Gouvea, Julia Svoboda – CBE - Life Sciences Education, 2021
Inspired by the biology education research community's collective reading of Kendi's "How to Be an Antiracist," I draw together recent articles related to "achievement gaps"--a construct identified by Kendi as perpetuating racist ideas. At the same time, I recognize that, for many in science, technology, engineering, and…
Descriptors: Racial Bias, Racial Discrimination, Achievement Gap, STEM Education
Young, Barbara; Hynes, Wendy; Hynes, Morgan – Journal of Learning Spaces, 2021
While the interior design of classroom spaces has evolved to support active learning methods, few studies have isolated environment changes from curriculum changes to understand the impact of space on behavior (Brooks, Walker, & Baepler, 2014). Adapting an observation instrument from the Brooks (2012) study, "Space and Consequences",…
Descriptors: Learner Engagement, Active Learning, Classroom Design, Classroom Environment
Muñiz, Marc N.; Altinis-Kiraz, Christine; Emenike, Mary E. – Journal of Chemical Education, 2022
Robust efforts to improve equity, access, and inclusion are necessary in STEM gateway courses at the undergraduate level. Here, we describe an ongoing course transformation of an extended general chemistry sequence at a large, flagship, research-intensive institution. This course enrolls a diverse group of students who have limited preparation in…
Descriptors: Equal Education, Access to Education, Inclusion, STEM Education
Letitia Bergantz; Marla Williams – Distance Learning, 2024
Technology and globalization in education have dramatically changed the landscape for teachers. New roles for teachers include resource providers, content specialists, learning facilitators, and lifelong learners. This is especially true in the ever-changing fields of science, technology, engineering, and mathematics (STEM). Therefore, colleges…
Descriptors: STEM Education, Preservice Teacher Education, Hands on Science, Learning Activities
Harrison, Christine; Constantinou, Costas P.; Correia, Catarina F.; Grangeat, Michel; Hähkiöniemi, Markus; Livitzis, Michalis; Nieminen, Pasi; Papadouris, Nikos; Rached, Elie; Serret, Natasha; Tiberghien, Andrée; Viiri, Jouni – Contributions from Science Education Research, 2018
Inquiry activities generate rich opportunities for STEM learning and for assessment. When teachers pay attention to assessment information collected during the course of learning, they are able to interpret and make decisions about such assessment data in a timely fashion that can drive future planning and support student learning, for example…
Descriptors: Inquiry, Active Learning, STEM Education, Classroom Communication
McConnell, Melody; Montplaisir, Lisa; Offerdahl, Erika G. – International Journal of STEM Education, 2020
A considerable body of evidence demonstrates that active, student-centered instructional practices are more effective than lecture-based, transmissionist approaches in improving undergraduate STEM learning. Despite this evidence and extensive reform initiatives, the majority of STEM instructors continue to teach didactically. Awareness of teaching…
Descriptors: Educational Innovation, Adoption (Ideas), Student Centered Learning, Active Learning
Greca Dufranc, Ileana M.; García Terceño, Eva M.; Fridberg, Marie; Cronquist, Björn; Redfors, Andreas – European Journal of STEM Education, 2020
botSTEM is an ERASMUS+ project aiming to raise the utilisation of inquiry-based collaborative learning and robots-enhanced education. The project outputs are specifically aimed to provide in- and pre-service teachers in Childhood and Primary Education and children four-eight years old, with research-based materials and practices that use…
Descriptors: STEM Education, Robotics, Active Learning, Inquiry
Megan D. Radyk; Lillian B. Spatz; Mahliyah L. Adkins-Threats; Kitra Cates; Celine L. St Pierre – Advances in Physiology Education, 2023
The development of science writing and presentation skills is necessary for a successful science career. Too often these skills are not included in pre- or postsecondary science, technology, engineering, and mathematics (STEM) education, leading to a disconnect between high schoolers' expectations for college preparedness and the skills needed to…
Descriptors: Course Evaluation, Secondary School Science, Science Education, Communication (Thought Transfer)
Teece, Bronwyn L.; Metternicht, Graciela; Gnassi, Antonio; Vuolo, Francesco; Belfiore, Oscar Rosario – Geographical Education, 2021
Educational policy and management emphasise the role of science (e.g., earth science, geography) as a fundamental aspect of societal advance, but student enrolments at universities in these disciplines remain low. This commentary explores ways to foster more collaboration between university academics and high school teachers to implement…
Descriptors: Foreign Countries, High School Students, Agricultural Education, Sustainability
Christensen, Rhonda; Knezek, Gerald – Journal of Technology Education, 2022
This article describes the development and validation of an Innovation Attitude Survey (IAS) composed of 16 Likert-type items selected to measure middle school students' attitudes toward innovation and leadership in the advancement of new ideas. The goal of developing the IAS was to identify desirable dispositions that may be related to future…
Descriptors: Attitude Measures, Likert Scales, Test Construction, Test Validity
Durrance, Samantha – Southern Regional Education Board (SREB), 2020
Science tends to be viewed as a completely separate subject area from reading and math. This is the case even in elementary school, where academic content may be more intertwined than in later years. But scientific thinking and processes are valuable across all areas of learning and for career success. Waiting until the middle grades to give…
Descriptors: Elementary School Science, Active Learning, Inquiry, STEM Education
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