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Smithsonian Science Education Center, 2015
The LASER (Leadership and Assistance for Science Education Reform) model, developed by the Smithsonian Science Education Center (SSEC), is a systemic approach to transforming science education consisting of five elements: a research-based, inquiry-driven science curriculum; differentiated professional development; administrative and community…
Descriptors: Science Education, Hands on Science, Inquiry, Active Learning
Smithsonian Science Education Center, 2015
The LASER (Leadership and Assistance for Science Education Reform) model, developed by the SSEC, is a systemic approach to transforming science education consisting of five elements: a research-based, inquiry-driven science curriculum; differentiated professional development; administrative and community support; materials support; and assessment.…
Descriptors: Science Education, Hands on Science, Inquiry, Active Learning
Smithsonian Science Education Center, 2015
The LASER (Leadership and Assistance for Science Education Reform) model, developed by the SSEC, is a systemic approach to transforming science education consisting of five elements: a research-based, inquiry-driven science curriculum; differentiated professional development; administrative and community support; materials support; and assessment.…
Descriptors: Science Education, Hands on Science, Inquiry, Active Learning
Smithsonian Science Education Center, 2015
The LASER (Leadership and Assistance for Science Education Reform) model, developed by the SSEC, is a systemic approach to transforming science education consisting of five elements: a research-based, inquiry-driven science curriculum; differentiated professional development; administrative and community support; materials support; and assessment.…
Descriptors: Science Education, Hands on Science, Inquiry, Active Learning
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Levin, Barbara B.; Schrum, Lynne – Educational Leadership, 2013
This article observes that schools that use technology well have key commonalities, including a project-based curriculum and supportive, distributed leadership. The authors' research into tech-rich schools revealed that schools used three strategies to integrate technology successfully. They did so by establishing the vision and culture,…
Descriptors: Educational Technology, Technology Uses in Education, Effective Schools Research, Technology Integration
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Gregory, Jess L. – International Journal of Higher Education, 2013
Lecture is a much maligned classroom method of instruction. Like any other technique employed by educators, there are both effective and ineffective ways to deliver content through a lecture format. Respecting that the college learner has changed, active lecturing strategies maximize student learning of course content, engaging both modern…
Descriptors: Lecture Method, Instructional Effectiveness, Learner Engagement, Undergraduate Study
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Fatokun, J. O.; Fatokun, K. V. F. – Educational Research and Reviews, 2013
In this paper, we present the concept of problem-based learning as a tool for learning Mathematics and Chemistry, and in fact, all sciences, using life situations or simulated scenario. The methodology involves some level of brain storming. Here, active learning takes place and knowledge gained by students either way through a collaborative…
Descriptors: Problem Based Learning, Mathematics Instruction, Science Instruction, Chemistry
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Gómez Puente, S. M.; van Eijck, M.; Jochems, W. – Research in Science & Technological Education, 2013
Background: In research on design-based learning (DBL), inadequate attention is paid to the role the teacher plays in supervising students in gathering and applying knowledge to design artifacts, systems, and innovative solutions in higher education. Purpose: In this study, we examine whether teacher actions we previously identified in the DBL…
Descriptors: Engineering Education, College Faculty, Undergraduate Students, Supervision
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Heath, Daniel E.; Hoy, Mary; Rathman, James F.; Rohdieck, Stephanie – Chemical Engineering Education, 2013
The Chemical and Biomolecular Engineering Department at The Ohio State University in collaboration with the University Center for the Advancement of Teaching developed the Chemical Engineering Mentored Teaching Experience. The Mentored Teaching Experience is an elective for Ph.D. students interested in pursuing faculty careers. Participants are…
Descriptors: Chemical Engineering, Technical Occupations, Teaching Experience, Mentors
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Smithenry, Dennis W.; Prouty, Jessica; Capobianco, Brenda M. – Journal of Science Education and Technology, 2013
Although the literature contains many examples of extensive professional development (PD) programs, most science teachers experience only a few hours of PD each year. To address this reality, alternative PD delivery tools need to be examined. Since the mid-1990s, video cases have emerged as a flexible form of PD where in-service teachers can…
Descriptors: Science Teachers, Faculty Development, Case Method (Teaching Technique), Video Technology
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Jiang, Xuan; Perkins, Kyle – Interdisciplinary Journal of Teaching and Learning, 2013
Bruner's constructs of learning, specifically the structure of learning, spiral curriculum, and discovery learning, in conjunction with the Cognitive Load Theory, are used to evaluate the Picture Word Inductive Model (PWIM), an inquiry-oriented inductive language arts strategy designed to teach K-6 children phonics and spelling. The PWIM reflects…
Descriptors: Constructivism (Learning), Cognitive Processes, Difficulty Level, Theories
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Bailey Lee, Cynthia; Garcia, Saturnino; Porter, Leo – ACM Transactions on Computing Education, 2013
Peer Instruction (PI) is an active learning pedagogical technique. PI lectures present students with a series of multiple-choice questions, which they respond to both individually and in groups. PI has been widely successful in the physical sciences and, recently, has been successfully adopted by computer science instructors in lower-division,…
Descriptors: Computer Science Education, Advanced Courses, Active Learning, Statistical Analysis
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Velazquez-Iturbide, J. Angel – ACM Transactions on Computing Education, 2013
Greedy algorithms constitute an apparently simple algorithm design technique, but its learning goals are not simple to achieve.We present a didacticmethod aimed at promoting active learning of greedy algorithms. The method is focused on the concept of selection function, and is based on explicit learning goals. It mainly consists of an…
Descriptors: Mathematics, Experimental Teaching, Teaching Methods, Active Learning
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Gregory, Kathleen – Issues in Science and Technology Librarianship, 2013
Active learning is a hallmark of the traditional science laboratory class, making it a natural place for librarians to integrate active information literacy instruction. The course structure of science lab classes, particularly large entry-level undergraduate classes, can make the logistics of such integration a challenge. This paper presents two…
Descriptors: Information Literacy, Integrated Activities, Science Laboratories, College Science
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Pavlova, Iglika V.; Lewis, Kayla C. – American Biology Teacher, 2013
Science is a complex process, and we must not teach our students overly simplified versions of "the" scientific method. We propose that students can uncover the complex realities of scientific thinking by exploring the similarities and differences between solving the familiar crossword puzzles and scientific "puzzles."…
Descriptors: Science Instruction, Biology, Teaching Methods, Puzzles
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