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Nogaj, Luiza A. – Journal of College Science Teaching, 2013
This article describes the conversion of a lecture-based molecular biology course into an active learning environment in a studio classroom. Specific assignments and activities are provided as examples. The goal of these activities is to involve students in collaborative learning, teach them how to participate in the learning process, and give…
Descriptors: College Science, Active Learning, Molecular Biology, Science Instruction

Smith, Christopher A.; And Others – Biochemical Education, 1995
Describes the process of problem-based learning (PBL), discusses the history of the movement, and analyzes the advantages and disadvantages of PBL. Explains the advantages of PBL in developing desirable attributes in biochemistry graduates which include being able to generalize, being able to interpret data, and possessing knowledge of relevant…
Descriptors: Active Learning, Biochemistry, Classroom Techniques, Discovery Learning
Sealey, Jean – 1985
A recognized correlate of student success in science classes is the use of teaching strategies that are learner-centered and goal-oriented. Research has shown that several practices in particular are associated with increased student achievement and with developing scientifically literate students. The focus of this paper is on scientific literacy…
Descriptors: Classroom Techniques, Elementary Secondary Education, Instructional Improvement, Instructional Systems
Development of a Course on Instructional Strategies for In-Service Science and Mathematics Teachers.
Chang, Ching-Kuch – 1998
An investigation-based course on teaching strategies for in-service science and mathematics teachers has been developed. The purpose of this course was to learn how to teach science or mathematics from the constructivist perspective. The course development was based on constructivism, especially social constructivism. Major adjustments concerning…
Descriptors: Constructivism (Learning), Cooperative Learning, Course Descriptions, Elementary Secondary Education

Woerner, Janet J.; Stonehouse, Harold B. – School Science and Mathematics, 1988
This model is useful in identifying specific learning problems and in providing techniques for the teacher to motivate and teach students at all levels. What it is and how it can be used are discussed, illustrated by specific strategies for geometry and science. (MNS)
Descriptors: Geometry, Instruction, Learning Problems, Mathematics Instruction

Drayton, Brian; Falk, Joni – Science Educator, 2002
Explains the inquiry teaching strategy and how the learning process occurs with inquiry-based instruction. Discusses how teachers can facilitate the development of science understanding and maintain inquiry-oriented classrooms. (Contains 31 references.) (YDS)
Descriptors: Constructivism (Learning), Inquiry, Middle Schools, School Districts

Heering, Peter; Muller, Falk – Science and Education, 2002
Describes generations and experiences of an exhibition presented in Spring 1998 at the Oldenburg Museum of Natural History and Pre-History. Discusses the thematic leitmotiv of this exhibition which was to present experiments from the history of physics as a cultural activity. Describes how reconstructions of historical experimental set-ups were…
Descriptors: Experiential Learning, Experiments, General Education, Museums

Herrenkohl, Leslie Rupert; Palincsar, Annemarie Sullivan; DeWater, Lezlie Salvatore; Kawasaki, Keiko – Journal of the Learning Sciences, 1999
Discusses the role and value of scaffolding student discussions in advancing students' ability to coconstruct theories and models from data they have collected while investigating floating and sinking. (Author/CCM)
Descriptors: Classroom Techniques, Elementary Education, Learning Theories, Research Methodology
Smith, Stanley G.; Jones, Loretta L. – IBM Multimedia. Supplement to T.H.E. Journal, 1991
Presents recent changes in the technology, expansion of courseware, and distribution to other institutions of the interactive videodisc courseware utilized as a significant part of the undergraduate chemistry curriculum at the University of Illinois since 1986. (JJK)
Descriptors: Chemistry, Computer Software Development, Courseware, Educational Technology

Tobias, Sheila – Liberal Education, 1988
A discussion of programs and techniques used to deal with student difficulties in learning math and science highlights the efforts of the Claremont Colleges, the College of St. Catherine, Gustavus Adolphus College, Iona College, Mississippi State University, and Stetson University. (MSE)
Descriptors: Case Studies, Classroom Techniques, College Curriculum, Higher Education

Windschitl, Mark A. – American Biology Teacher, 1998
Computer-based simulations of scientific phenomena provide learner-centered environments within which students can explore systems, manipulate variables, and test hypotheses. Explains how simulations fit into the big picture of instruction and offers recommendations for developing a written guide for students, determining student accountability,…
Descriptors: Classroom Techniques, Computer Assisted Instruction, Computer Simulation, Learning Activities

Newman, Denis – Educational Researcher, 1990
Discusses the sociohistorical approach to tools and change. Explores the possibilities of computer-supported cooperative work. Discusses formative experiments on the educational environment as research opportunities. Illustrates the organizational impact of school technology by describing a project intended to create an environment for…
Descriptors: Computer Managed Instruction, Computer Uses in Education, Computers, Cooperative Learning

Austin, Lydia – Physics Education, 1998
Argues that by examining which concepts of a particular area of physics are fundamental and which are defined, teachers can choose concepts for investigation that progress logically and should minimize students' misconceptions and confusion. (Author)
Descriptors: Concept Formation, Concept Teaching, Constructivism (Learning), Foreign Countries

Segal, Gilda – Research in Science Education, 1997
Contrasts naive beliefs about the nature of science with science as it appears from sociological and philosophical study, feminist critique, and insights from multicultural education. Pragmatic school science is situated within a framework that questions how we know and the recognition that even high-status knowledge can be challenged. (AIM)
Descriptors: Educational Change, Higher Education, Learning Processes, Questioning Techniques

Larkin, Jill – American Journal of Physics, 1981
Experienced Physicists solve simple textbook problems differently from beginning students. This paper describes these differences using a computer-implemented model that "learns." The research is set in the the context of modern computer-processing psychology, and is related to other work relevant to help people know and learn…
Descriptors: Cognitive Processes, College Faculty, College Science, College Students
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