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Jessica L. Smith – ProQuest LLC, 2022
There have been recent pushes for more active learning in mathematics classrooms, especially at the undergraduate level. To incorporate more active learning, there is a need for tasks that explicitly support this type of instruction, attention to student reasoning and whose ideas are publicly acknowledged, and awareness of differences in students'…
Descriptors: Mathematics Instruction, Active Learning, Mathematical Logic, Algebra
O'Fallon, Maura; Garcia, Felicidad – Perspectives of the ASHA Special Interest Groups, 2023
Purpose: Training in cultural competence is an accreditation requirement for graduate programs in communication sciences and disorders (CSD; Council on Academic Accreditation in Audiology and Speech-Language Pathology, 2020). Cultural and linguistic diversity (CLD) instruction within CSD programs and current instructional models may not provide…
Descriptors: Active Learning, Learning Strategies, Cultural Pluralism, Culturally Relevant Education
Hancock, Emilie; Karakok, Gulden – PRIMUS, 2021
As students learn to problem solve in authentic situations, they must also develop metacognitive tools to manage and regulate their problem-solving process. To foster process-focused metacognition utilized by mathematical thinkers and problem solvers, inquiry-based learning classroom practices and an adapted version of portfolio problems were…
Descriptors: Metacognition, Reflection, Problem Solving, Cooperative Learning
Hamid Mohammed Nadir – ProQuest LLC, 2021
There is an increased interest in integrating engineering design into K-12 classrooms because it equips students to solve real-world problems. However, before students are introduced to real-world problems, K-12 teachers may need to develop inquiry pedagogies and establish a learning context that supports student problem-solving. This study…
Descriptors: Elementary Secondary Education, Elementary School Teachers, Secondary School Teachers, Scaffolding (Teaching Technique)
Bolden, Edward C., III.; Oestreich, Tina M.; Kenney, Michael J.; Yuhnke, Brian T., Jr. – Active Learning in Higher Education, 2019
This article focuses on students' perceptions of small-group activities, discussion, and technology-based interactivity implemented in two different learning environments, namely, in a large, traditional lecture hall and in a smaller classroom. The Engaged Learning Index, developed by Schreiner and Louis, was used along with several items to…
Descriptors: College Students, Student Attitudes, Classroom Environment, Large Group Instruction
Bremert, Helen; Stoff, Amy; Boesdorfer, Sarah B. – Science Teacher, 2020
Scientists and other professionals across the globe require employees to collaborate, think critically, and solve problems effectively. To this end, the "Next Generation Science Standards" (NGSS) have a vision of ensuring that through inquiry, collaboration, and evidence-based instruction, students will have the necessary skills to be…
Descriptors: Science Instruction, Teaching Methods, Cooperative Learning, Classroom Environment
Doss, Kristy Kowalske – Global Education Review, 2018
In order to compete globally in the 21st Century, students must have the skills to design their own projects and understand how to navigate the wealth of information available at their fingertips. One of the most important tools is to be able to investigate ideas and implement a plan of action in order to answer questions that have not been…
Descriptors: Metacognition, Attention, Learning Experience, Inquiry
Connolly, Amy; Lampe, Michael – Information Systems Education Journal, 2016
This article describes how our university built a unique classroom environment specifically for active learning. This classroom changed students' experience in the undergraduate executive information technology (IT) management class. Every college graduate should learn to think critically, solve problems, and communicate solutions, but 90% of…
Descriptors: Active Learning, Information Technology, Program Administration, Undergraduate Students
Leone, Peter; Fink, Carolyn; Wilson, Michael; Mulcahy, Candace – National Technical Assistance Center for the Education of Neglected or Delinquent Children and Youth (NDTAC), 2018
This guide is a revised and updated edition of "Making It Count." This version contains much of the information from the earlier publication but also includes strategies for using project-based learning and Web-based instructional programs to support the development of mathematics proficiency for youth in short-term juvenile correctional…
Descriptors: Mathematics Instruction, Mathematics Skills, Youth, Juvenile Justice
Graves, Gregory H.; Sulewski, Charles A.; Dye, Heather A.; Deveans, Thomas M.; Agras, Norma M.; Pearson, J. Michael – PRIMUS, 2009
External performance assessments for teachers of mathematics have traditionally been accomplished through reviews of student comments as well as through formal evaluations by superiors. Additionally, evaluating lecture-based teaching (as opposed to more active learning environments) focuses primarily on classroom performance, curriculum planning,…
Descriptors: Feedback (Response), Active Learning, Mathematics Teachers, Mathematics Instruction
Wurdinger, Scott; Haar, Jean; Hugg, Robert; Bezon, Jennifer – Improving Schools, 2007
Project-based learning taps into students' interests by allowing them to create projects that result in meaningful learning experiences. The method requires teachers to identify projects that challenge students to work individually or in groups to create plans, solve problems they encounter, test their ideas, and present their projects to peers.…
Descriptors: Student Projects, Student Motivation, Classroom Environment, Active Learning
Bickart, Toni S.; Wolin, Sybil – Principal, 1997
Fostering resilience does not require elementary teachers to overburden the curriculum. Research shows that resiliency-fostering experiences occur when children are involved in assessing their own work and setting goals, participate in developing standards for work and classroom life, have opportunities to collaborate and make choices, participate…
Descriptors: Active Learning, Classroom Environment, Community, Cooperation
McCormick, Bonnie; MacKinnon, Christy; Jones, R. Lynn – 1999
According to the National Science Education Standards, science curricula should emphasize understanding, reasoning, and problem solving. In order to align with the standards, the learning environment should be an active learning environment rather than a lecture-centered format in postsecondary education. This study evaluates a new format for an…
Descriptors: Active Learning, Biology, Classroom Environment, Constructivism (Learning)
Hussain, Shakir; Lindh, Jorgen; Shukur, Ghazi – Educational Technology & Society, 2006
The purpose of this study is to investigate the effect of one year of regular "LEGO" training on pupils' performances in schools. The underlying pedagogical perspective is the constructivist theory, where the main idea is that knowledge is constructed in the mind of the pupil by active learning. The investigation has been made in two…
Descriptors: Foreign Countries, Toys, Constructivism (Learning), Control Groups

McNeal, Ann P. – College Teaching, 1998
Describes active learning activities that can be useful in college faculty development workshops, including three activity types: introductory exercises (personal introductions, goal-setting, warm-ups); problem-solving activities (brainstorming, hands-on exercises, reflection); and closure (consolidating concepts, cognitive mapping,…
Descriptors: Active Learning, Brainstorming, Class Activities, Classroom Environment
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