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Proger, Amy R.; Bhatt, Monica P.; Cirks, Victoria; Gurke, Deb – Regional Educational Laboratory Midwest, 2017
There is growing interest in the ability of improvement science--the systematic study of improvement strategies to identify promising practices for addressing issues in complex systems (Improvement Science Research Network, 2016)--to spur innovation and address complex problems. In education this methodology is often implemented through…
Descriptors: Partnerships in Education, Improvement Programs, Educational Cooperation, Communities of Practice
Loney, Emily – Hunt Institute, 2014
Innovation and ingenuity have long been hallmarks of the U.S.' economy. Our competitive strength is built on the legacy of great innovators--from Alexander Graham Bell and Lewis Latimer to the Wright brothers and Steve Jobs. The U.S. has prized its status as a leader in developing creative thinkers and entrepreneurs, but by many estimates, it is…
Descriptors: Science Education, Science Achievement, Science Course Improvement Projects, Context Effect
Everingham, Yvette; Gyuris, Emma; Sexton, Justin – International Journal of Mathematical Education in Science and Technology, 2013
Today's scientist is faced with complex problems that require interdisciplinary solutions. Consequently, tertiary science educators have had to develop and deliver interdisciplinary science courses to equip students with the skills required to solve the evolving real-world challenges of today and tomorrow. There are few reported studies of the…
Descriptors: Student Attitudes, Feedback (Response), Mathematics Skills, Self Efficacy
Harrison, Christine – Teachers and Teaching: Theory and Practice, 2013
This paper sets out to explore science teachers' classroom assessment practices and outlines some of the tensions and synergies in changing assessment practices. It describes episodes from a collaborative action research project with science teachers designed to support the strengthening of classroom assessment practices--the King's Researching…
Descriptors: Formative Evaluation, Action Research, Feedback (Response), Classroom Techniques
Windschitl, Mark; Thompson, Jessica; Braaten, Melissa; Stroupe, David – Science Education, 2012
Recent calls for teacher preparation to become more grounded in practice prompt the questions: Which practices? and perhaps more fundamentally, what counts as a model of instruction worth learning for a new professional--i.e., the beginner's repertoire? In this report, we argue the following: If a defined set of subject-specific high-leverage…
Descriptors: Teaching Methods, Novices, Science Teachers, Best Practices
Stearns, Linda M.; Morgan, Jim; Capraro, Mary Margaret; Capraro, Robert M. – Journal of STEM Education: Innovations and Research, 2012
Teaching is a complex activity that requires making ongoing multiple decisions and sporadic, responsive actions all while performing preplanned prescribed tasks. Evidence of certain aspects of teaching can be best assessed with a well-designed observation instrument. This instrument was designed to assess the enactment of the essential elements of…
Descriptors: Evidence, Active Learning, Observation, Student Projects
Cook, Michelle; Deaton, Cynthia – Science and Children, 2012
In recent years, a number of National Research Council reports have emphasized the need to improve science education and enhance science literacy for all students. In addition, the newly released "A Framework for K-12 Science Education" advocates engaging students in scientific practices and disciplinary core ideas. Children are not learning…
Descriptors: Teaching Methods, Science Education, Case Studies, Group Activities
Subramaniam, Karthigeyan – Clearing House: A Journal of Educational Strategies, Issues and Ideas, 2012
This article examines the merits of WebQuests in facilitating students' in-depth understanding of science concepts using the four principles of learning gathered from the National Research Council reports "How People Learn: Brain, Mind, Experience, and School" (1999) and the "How Students Learn: Science in the Classroom" (2005) as an analytic…
Descriptors: Scientific Principles, Courseware, Classroom Techniques, Scientific Concepts
Campbell, Coral; Chittleborough, Gail – Teaching Science, 2014
A Victorian government initiative called "The Primary Science Specialists Professional Learning Program" is designed to tackle students' falling interest in science by investing in the building of teacher capacity. The aims of the initiative are: to improve the science knowledge base of all teachers and therefore increase teachers'…
Descriptors: Specialists, Instructional Improvement, Science Course Improvement Projects, Science Instruction
Francis, Krista; Jacobsen, Michele – International Review of Research in Open and Distance Learning, 2013
Math is often taught poorly emphasizing rote, procedural methods rather than creativity and problem solving. Alberta Education developed a new mathematics curriculum to transform mathematics teaching to inquiry driven methods. This revised curriculum provides a new vision for mathematics and creates opportunities and requirements for professional…
Descriptors: Synchronous Communication, Professional Development, Elementary School Mathematics, Elementary School Teachers
Herold, Jean-Francois; Ginestie, Jacques – International Journal of Technology and Design Education, 2011
In France, project activities figure predominantly in technology education. The general idea behind learning based on project activity is to allow the pupil to get involved in the activity in question, with the pupil tackling real situations rather than ones of an abstract nature. But too often, we notice that the pedagogical strategies used by…
Descriptors: Foreign Countries, Technology Education, Active Learning, Problem Based Learning
Thompson, Jessica; Braaten, Melissa; Windschitl, Mark; Sjoberg, Bethany; Jones, Margaret; Martinez, Kristi – Science Teacher, 2009
This article presents a model of collaborative inquiry for groups of science teachers who want to systematically improve their practice through analyses of student work. The five-phase APEX[superscript ST] (Advancing High-Leverage Practices by Examining Student Thinking) model is appropriate for students of all achievement levels. It focuses on…
Descriptors: Science Teachers, Science Education, Inquiry, Communities of Practice
Rebello, Carina M.; Hanuscin, Deborah; Sinha, Somnath – Physics Teacher, 2011
Physics First--a movement to invert the traditional science course sequence to teach physics at the ninth-grade level--is gaining interest. However, there is limited literature exploring how to support teachers in successfully implementing Physics First. To address this, a professional development (PD) program supporting a cadre of teacher-leaders…
Descriptors: Physics, Science Curriculum, Instructional Leadership, Teacher Leadership
Tan, Grace; Venables, Anne – Journal of Information Technology Education, 2010
There exists a wealth of computing education literature devoted to interventions designed to overcome novices' difficulties in learning to write computer programs. However, various studies have shown that the majority of students at the end of a semester of instruction are still unable to write a simple computer program, despite the best efforts…
Descriptors: Action Research, Program Effectiveness, Workshops, Programming
Turner, Steven; Peck, Debby – Education Canada, 2009
Every experienced teacher knows that, somewhere between the ages of 11 and 16, significant numbers of students pass from a state of enthusiasm and engagement with the study of science to a state of indifference or disdain for the subject. Today a flood of new research is revealing the sheer dimensions of the engagement problem. It shows that…
Descriptors: Learning Theories, Academic Achievement, Learner Engagement, Scientific Attitudes