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Tian, Xiaoxi; Xie, Jinxing – Journal of Mathematics Education at Teachers College, 2013
The Summer Camp of Mathematical Modeling in China is a recently created experience designed to further Chinese students' academic pursuits in mathematical modeling. Students are given more than three months to research on a mathematical modeling project. Researchers and teams with outstanding projects are invited to the Summer Camp to present…
Descriptors: Foreign Countries, Summer Science Programs, Mathematical Models, Student Projects
Scogin, Stephen C.; Stuessy, Carol L. – Science Education, 2015
Next Generation Science Standards (NGSS) call for integrating knowledge and practice in learning experiences in K-12 science education. "PlantingScience" (PS), an ideal curriculum for use as an NGSS model, is a computer-mediated collaborative learning environment intertwining scientific inquiry, classroom instruction, and online…
Descriptors: Mentors, Electronic Learning, Inquiry, Learner Engagement
Langley, Mark – School Science Review, 2014
Science is at heart a practical subject, but the perception of what makes good teaching and learning through practical science is often misunderstood. Through working with teachers on professional development courses at the UK's National Science Learning Centre, and drawing on work carried out by other organisations, we present some thoughts and…
Descriptors: Delivery Systems, Educational Quality, Instructional Effectiveness, Science Course Improvement Projects
Barker, Bradley S.; Nugent, Gwen; Grandgenett, Neal F. – International Journal of Technology and Design Education, 2014
In the United States and many other countries there is a growing emphasis on science, technology, engineering and mathematics (STEM) education that is expanding the number of both in-school and out-of-school instructional programs targeting important STEM outcomes. As instructional leaders increasingly train teachers and facilitators to undertake…
Descriptors: Fidelity, Program Implementation, STEM Education, Alignment (Education)
Henriksen, Ellen K.; Bungum, Berit; Angell, Carl; Tellefsen, Catherine W.; Frågåt, Thomas; Bøe, Maria Vetleseter – Physics Education, 2014
In this article, we discuss how quantum physics and relativity can be taught in upper secondary school, in ways that promote conceptual understanding and philosophical reflections. We present the ReleQuant project, in which web-based teaching modules have been developed. The modules address competence aims in the Norwegian national curriculum for…
Descriptors: Quantum Mechanics, Physics, Secondary School Science, Secondary School Curriculum
Sampson, Victor; Clark, Douglas – Science Scope, 2007
An explicit goal of the current reform movement in science education is to promote scientific literacy in the United States. One way to encourage scientific literacy is to help students develop a better understanding of science subject matter, that is, the declarative knowledge specifically associated with the physical, life, and earth sciences.…
Descriptors: Sciences, Persuasive Discourse, Educational Change, Classrooms
LaBanca, Frank – ProQuest LLC, 2008
Problem finding is a creative process whereby individuals develop original ideas for study. Secondary science students who successfully participate in authentic, novel, open inquiry studies must engage in problem finding to determine viable and suitable topics. This study examined problem finding strategies employed by students who successfully…
Descriptors: Educational Strategies, Learning Theories, Creativity, Student Projects
Colclough, Chris – Education in Science, 2012
St Michael's RC School aims to develop in its students an understanding of the importance of scientific knowledge through the delivery of a more diverse but appropriate scientific curriculum: a curriculum that is enriched and accessible to all students, regardless of ability; a curriculum that will encourage them to continue the study of both…
Descriptors: Partnerships in Education, Foreign Countries, Science Achievement, Science Course Improvement Projects
Davidhazy, Andrew – Tech Directions, 2012
Sir Isaac Newton determined that the acceleration constant for gravity was 32 ft./per/sec/sec. This is a fact that most students become familiar with over time and through various means. This article describes how this can be demonstrated in a technology classroom using simple photographic equipment. (Contains 5 figures.)
Descriptors: Program Descriptions, Scientific Concepts, Photography, Physics
Jackson, Elizabeth Lee – 1995
The purpose of this ex-post facto study was to determine whether or not all students have an equitable chance of winning in science fair competitions. Winners and nonwinners at local, regional, and state levels of 1994 Mississippi science fair competitions were compared for the following variables: project cost, status of participation (voluntary…
Descriptors: Competition, Computers, Elementary Secondary Education, Questionnaires

Slater, Carmon – School Arts, 1975
Article provided a subtle means for science and art teachers to make tree identification fun for students, as well as to tune them into the esthetics of nature. (Author/RK)
Descriptors: Art Education, Art Materials, Art Products, Science Projects
Calder, Nigel – Visual Education, 1974
A discussion of mass media's failure to involve its audience in current scientific discoveries. (HB)
Descriptors: Communications, Educational Media, Information Dissemination, Mass Media
Mott, Peter Rhoades – Independ Sch Bull, 1969
Report of a Workshop (Subject-Field Meeting) conducted at the Annual Conference of the National Association of Independent Schools, February 1969.
Descriptors: Advanced Programs, Science Projects, Sciences, Student Projects

Riechard, Donald E. – Clearing House, 1976
After judging and evaluating four science fairs during a two week period, the author moved to put down some thoughts and suggestions. His comments fell into three major categories: 1) purposes of science fairs, 2) types of science fair projects, and 3) judging the projects. (Author/RK)
Descriptors: Educational Objectives, Educational Planning, Evaluation Criteria, Science Fairs
Instructor, 1988
Ways of teaching students to communicate effectively using descriptive words and comparative statements are described. Two task cards involving descriptions of experiments investigating air pressure are included. (MT)
Descriptors: Elementary Education, Research Reports, Science Projects, Technical Writing