NotesFAQContact Us
Collection
Advanced
Search Tips
Showing 4,066 to 4,080 of 4,535 results Save | Export
Gilmer, Penny J., Ed.; Hahn, Lori Livingston, Ed.; Spaid, M. Randall, Ed. – 2002
This monograph presents a view of teachers and scientists cooperating in a co-learning experience. The CO-LEARNERS program is based on constructivism and provides opportunities for teachers to experience science process skills. Contents include: (1) "Impact of Scientific Research Experiences: Preservice Teachers' Ideas on How They Think About and…
Descriptors: Constructivism (Learning), Experiential Learning, Faculty Development, Higher Education
Chung, Gregory K. W. K.; Dionne, Gary B.; Kaiser, William J. – Online Submission, 2006
Our research question was whether we could develop a feasible technique, using Bayesian networks, to diagnose gaps in student knowledge. Thirty-four college-age participants completed tasks designed to measure conceptual knowledge, procedural knowledge, and problem-solving skills related to circuit analysis. A Bayesian network was used to model…
Descriptors: Discovery Processes, Feasibility Studies, Bayesian Statistics, Prediction
Diehn, Gwen; Krautwurst, Terry – 1994
This resource book provides 48 science crafts that involve children in creative and inventive learning experiences. The opening chapter focuses on the construction of a science log that will be used in the colorfully illustrated activities that follow. Four broad topics provide the organization for the text: (1) Earth; (2) Air; (3) Water; and (4)…
Descriptors: Educational Strategies, Elementary Education, General Science, Hands on Science
Jimenez-Aleixandre, Maria Pilar; Diaz de Bustamante, Joaquin; Duschl, Richard A. – 1998
This paper discusses the elaboration and application of "scientific culture" categories to the analysis of students' discourse while solving problems in inquiry contexts. Scientific culture means the particular domain culture of science, the culture of science practitioners. The categories proposed include both epistemic operations and…
Descriptors: Classroom Communication, Communication Research, Educational Environment, Epistemology
Swartz, Robert J.; Fischer, Stephen David; Parks, Sandra – 1998
This book explores what can be accomplished when effective classroom techniques for teaching students to become good thinkers are combined with effective strategies to engage students in thoughtful learning of the regular secondary school science curriculum. The technique of lesson design and instruction that results is called infusing critical…
Descriptors: Cognitive Processes, Creative Thinking, Critical Thinking, Lesson Plans
Ruby, Allen – 2001
From the late 1950s through today, hands-on science has been promoted as a method of science instruction. Currently, recent national science reform efforts seek to temper its role. However, no consensus has been reached on the relationship of hands-on science to student achievement, though this has been researched since the turn of the 20th…
Descriptors: Elementary Secondary Education, Hands on Science, Inquiry, Performance Based Assessment
Rushton, Erik; Ryan, Emily; Swift, Charles – 2001
Many of today's popular sports are based around the use of a ball yet none are alike. In fact, they are all designed with specific characteristics in mind. In this activity, students investigate different balls' ability to bounce and represent the data they collect graphically. This activity uses a time frame of 100 minutes. (Author/SOE)
Descriptors: Critical Thinking, Data Analysis, Data Interpretation, Elementary Education
Rushton, Erik; Ryan, Emily; Swift, Charles – 2001
Depending upon the climate, the features of a house will be different to satisfy particular needs: hot, cold, windy, and/or rainy weather. In this activity, students investigate different types of roofs found on various houses in different environments throughout the world. Books and photos are used to provide information. Models of the houses are…
Descriptors: Climate, Critical Thinking, Daily Living Skills, Elementary Education
Rushton, Erik; Ryan, Emily; Swift, Charles – 2001
In this activity, students conduct several simple lab activities to learn about the five fundamental load types that can act on structures: tension, compression, shear, bending, and torsion. In Part One, students play the role of molecules in a beam subject to various loading schemes. In Part Two, students break foam insulation blocks by applying…
Descriptors: Engineering, Experiential Learning, Force, Hands on Science
PDF pending restoration PDF pending restoration
Rushton, Erik; Ryan, Emily; Swift, Charles – 2001
After a discussion about what a parachute is and how it works, students create a parachute using different materials that they think will work best. They then test their designs, which is followed by a class discussion to highlight which paper material worked best. This activity requires a 60-minute time period for completion. (Author/SOE)
Descriptors: Critical Thinking, Design, Engineering, Experiential Learning
Bauer, Lisa; Nelson, Doneen; Parsons, Ann; Purdum, Mary Beth – 1998
This report describes a program for improving scientific literacy at the primary level. The target population consisted of pre-kindergarten and second grade students in an expanding suburban Midwestern community. An intervention which included the identification of scientific skills and their integration into the curriculum, student exposure to…
Descriptors: Achievement, Action Research, Hands on Science, Instructional Effectiveness
Johnson, Carolyn – Greenwood Press, 2003
Take a cyber journey through the world of science! Presenting more than 150 websites with primary source documents and authoritative data, this versatile book helps educators guide students on virtual scientific fieldtrips in all areas of science, from astronomy, biology, and chemistry to genetics, physics, and space science. Students can meet…
Descriptors: Internet, Primary Sources, Critical Thinking, Thinking Skills
Dorans, Neil J. – College Entrance Examination Board, 1999
Correspondences between ACT[superscript TM] and SAT[superscript R] I scores are presented from a conceptual framework that distinguishes among three kinds of correspondences, namely, equating, scaling, and prediction. Construct similarity plays an important role in determining the nature and degree of correspondence that can be achieved. This…
Descriptors: College Entrance Examinations, Scores, Standardized Tests, Prediction
Peer reviewed Peer reviewed
Chiappetta, Eugene L. – Science Teacher, 1997
Defines approaches to inquiry-based science teaching and describes many ways in which to conduct this kind of science instruction. Argues that with science reform underway, opportunities exist to transform classrooms into environments with active learners engaged in inquiry. (DDR)
Descriptors: Educational Strategies, Hands on Science, Inquiry, Learning Strategies
Peer reviewed Peer reviewed
Tobin, Kenneth; McRobbie, Campbell J. – Science and Education, 1997
Describes the teaching and learning of chemistry in an Australian high school as it relates to the beliefs about the nature of science of a teacher and a class with the curriculum actually enacted. Although the teacher and students tended to view science as an evolving and changing discipline, the actual enacted curriculum was approached as a…
Descriptors: Chemistry, Foreign Countries, Science Curriculum, Science Instruction
Pages: 1  |  ...  |  268  |  269  |  270  |  271  |  272  |  273  |  274  |  275  |  276  |  ...  |  303