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Seeman, Jeffrey I.; Lawrence, Tom – Science Teacher, 2011
One goal of 21st-century education is to develop mature citizens who can identify issues, solve problems, and communicate solutions. What better way for students to learn these skills than by participating in a science and engineering fair? Fair participants face the same challenges as professional scientists and engineers, even Nobel laureates.…
Descriptors: Video Technology, Science Fairs, Learning Experience, Peer Influence
Beke, Tamas – Physics Education, 2009
In this article we present project work on physical measurements and an examination task with a Rijke tube. The aim of our project is to help students increase their knowledge of thermoacoustics while at the same time developing their applied information technology skills and improving their cooperation skills. Our school project promotes pedagogy…
Descriptors: Teaching Methods, Thermodynamics, Measurement Techniques, Acoustics
Murray, Mary; Valentine-Anand, Lesley – Science and Children, 2008
Do dinosaurs have bellybuttons? This intriguing question launched a journey into inquiry science that captivated a class of four-year-olds for eight months. As students enjoyed dinosaur books, examined dinosaur artifacts, drew pictures, watched videos, and generally immersed themselves in all things dinosaur, the authors built a culture of…
Descriptors: Paleontology, Science Process Skills, Inquiry, Preschool Children
College Readiness Standards[TM] for EXPLORE[R], PLAN[R], and the ACT[R]: Includes Ideas for Progress
ACT, Inc., 2008
At the foundation of the Educational Planning and Assessment System (EPAS) programs are ACT's College Readiness Standards. The Standards offer learning strategies that are likely to help students meet state standards and acquire the more advanced concepts associated with higher EPAS test scores and, more importantly, increased college readiness.…
Descriptors: Educational Planning, School Readiness, State Standards, Learning Strategies
Arrington, Caleb A.; Hill, Jameica B.; Radfar, Ramin; Whisnant, David M.; Bass, Charles G. – Journal of Chemical Education, 2008
This article describes a discovery experiment for general chemistry and organic chemistry labs. Although the pinacol rearrangement has been employed in undergraduate organic laboratories before, in this application organic chemistry students act as mentors to students of general chemistry. Students work together using distillation--a new technique…
Descriptors: Mentors, Spectroscopy, Organic Chemistry, Science Laboratories
Fyrenius, Anna; Silen, Charlotte; Wirell, Staffan – Advances in Physiology Education, 2007
Medical physiology is known to be a complex area where students develop significant errors in conceptual understanding. Students' knowledge is often bound to situational descriptions rather than underlying principles. This study explores how medical students discern and process underlying principles in physiology. Indepth interviews, where…
Descriptors: Medical Students, Problem Based Learning, Physiology, Interviews
Kremer, Angelika; Walker, Mark; Schluter, Kirsten – Bioscene: Journal of College Biology Teaching, 2007
We developed a course in inquiry-based science for students training to become primary school teachers. The emphasis of the course was teaching students to do inquiry-based science activities themselves, as this is the best way of learning how to teach using inquiry-based methods. (Contains 1 table.)
Descriptors: Science Activities, Teaching Methods, Science Education, Inquiry
Freidenberg, Rolfe Jr.; Kelly, Martin G. – Online Submission, 2004
This research compared the outcomes of teaching middle school students two different methods of classification and phylogeny. Two classes were randomly selected and taught using traditional methods of instruction. Three classes were taught using the "Pseudozoid" approach, where students learned to classify, develop and read dichotomous keys, and…
Descriptors: Middle School Students, Test Results, Teaching Methods, Classification
Wilson, Karla G. – 1996
This curriculum unit on the ozone is intended for high school students and contains sections on environmental science and chemistry. It has been structured according to a learning cycle model and contains numerous activities, some of which are in a cooperative learning format. Skills emphasized include laboratory procedures, experimental design,…
Descriptors: Air Pollution, Chemical Reactions, Chemistry, Conservation (Environment)