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Limson, Mel; Witzlib, Crystal; Desharnais, Robert A. – Science Scope, 2007
It is widely accepted that inquiry-based curriculum programs have positive effects on cognitive achievement, process skills, and attitudes toward science (NRC 2000). Science teachers seek engaging, effective, and inquiry-based activities that are standards-aligned and convenient to implement in their classrooms. For many years, the web has…
Descriptors: Internet, Computer Simulation, Inquiry, Science Achievement
Wynn, James – Written Communication, 2007
From a rhetorical perspective, Mendel's work and its reception elicit two important questions: (a) why were Mendel's arguments so compelling to 20th century biologists? And (b) why where they so roundly ignored by his contemporaries? The focus of this article is to examine the latter question while commenting on the former by employing several…
Descriptors: Audience Response, Rhetorical Theory, Plants (Botany), Innovation
Buxton, Cory A.; Provenzo, Eugene F., Jr. – SAGE Publications (CA), 2010
Featuring an increased emphasis on the way today's changing science and technology is shaping our culture, this Second Edition of "Teaching Science in Elementary and Middle School" provides pre- and in-service teachers with an introduction to basic science concepts and methods of science instruction, as well as practical strategies for the…
Descriptors: Preservice Teachers, Multiple Intelligences, Space Sciences, Scientific Principles
Peer reviewedFogle, Thomas A. – Journal of College Science Teaching, 1985
Discusses the need for students to develop understanding of science by designing their own laboratory experiments. Lists examples of concepts that can be taught through student-designed biology experiments. Also gives suggestions and guidelines to ensure that laboratory time is manageable and productive. (DH)
Descriptors: Biology, College Science, Higher Education, Inquiry
Peer reviewedGillespie, Ronald J.; And Others – Journal of Chemical Education, 1996
Presents suggestions for alternative presentations of some of the material that usually forms part of the introductory chemistry course. Emphasizes development of concepts from experimental results. Discusses electronic configurations and quantum numbers, experimental evidence for electron configurations, deducing the shell model from the periodic…
Descriptors: Atomic Structure, Chemistry, Higher Education, Inquiry
Peer reviewedHurd, Paul deHart – Science Teacher, 2000
Focuses on the curriculum movement. Discusses the educational conditions under which new courses would be developed. Explains the differences between the new science courses and traditional courses. First published in 1962. (YDS)
Descriptors: Educational Change, Inquiry, Science Curriculum, Science Education History
Bush, Stephen P.; Hart, Peter E.; Russell, Eric M. – American Biology Teacher, 2006
Advances in the field of molecular biology, powered by a technological revolution, have increased dramatically over the past decades. Notable developments such as the cloning of adult sheep, the sequencing of the human genome, and the production of genetically modified organisms capture the attention of biologists, their students, and the general…
Descriptors: Genetics, Laboratory Experiments, Molecular Biology, Science Activities
Peer reviewedGreen, William J.; Elliott, Curtis; Cummins, R. Hays – Journal of Chemical Education, 2004
The importance of introducing various projects or activities as a motivation towards inquiry-based learning, also satisfies the need for first year chemistry students to transfer scientific theory into practice. This approach, combined with the traditionally written laboratory methods, develops creative skills, and the spirit of exploration…
Descriptors: Science Laboratories, Chemistry, Science Education, Teaching Methods
Bliss, TJ; Anderson, Margery; Dillman, Adler; Yourick, Debra; Jett, Marti; Adams, Byron J.; Russell, RevaBeth – Science Teacher, 2007
In a collaborative effort between university researchers and high school science teachers, an inquiry-based laboratory module was designed using two species of insecticidal nematodes to help students apply scientific inquiry and elements of thoughtful experimental design. The learning experience and model are described in this article. (Contains 4…
Descriptors: Learning Experience, Biology, High School Students, Secondary School Science
Roychoudhury, Anita – Journal of Elementary Science Education, 2007
This study describes the improvement in 20 sixth grades students' reasoning abilities in the context of structured or semi-structured inquiries conducted during an after-school science club. The findings shed light on the improvement in student reasoning and on the specific areas of student difficulties. Overall reasoning skills showed more or…
Descriptors: Concept Formation, Elementary School Students, Grade 6, Thinking Skills
Peer reviewedWebb, John le P. – Physics Teacher, 1984
Examines (in the form of a hypothetical dialog between a teacher and a student) the nature of the mantle and the spectral content of the glow which lights up both beam and mantle. These phenomena are associated with excitation of helium gas in the presence of electromagnetic and electrostatic fields. (JN)
Descriptors: College Science, Electricity, Higher Education, Inquiry
Peer reviewedKaiser, Bonnie – Bulletin of Science, Technology and Society, 1996
Describes a university outreach program that aims to enable teachers and students to learn the content and process of modern scientific inquiry by engaging in research and communicating their findings to others. (DDR)
Descriptors: Academic Standards, Elementary Secondary Education, Higher Education, Inquiry
Peer reviewedCherif, Abour – Science Teacher, 1993
Presents and discusses the following six questions to focus students' inquiry experiences: (1) What do you think will happen? (2) What actually happened? (3) How did it happen? (4) Why did this happen? (5) How can we find out which of these hypotheses is the most reasonable? (6) How can you relate the investigation to your daily life? (PR)
Descriptors: High Schools, Inquiry, Learning Activities, Science Activities
Jones, M. Gail; Broadwell, Bethany; Falvo, Michael; Minogue, James; Oppewal, Thomas – Science and Children, 2005
As one of the authors was warning the fifth-grade class about protecting clothes from spills in the lab, one student commented that his pants wouldn't stain because they were covered with some "nano stuff." The class tossed water on the pants and watched it bead up and roll off "like magic." The class's interest was piqued, and the questions…
Descriptors: Grade 5, Science Instruction, Science Process Skills, Inquiry
Hutchinson, Kelly M.; Bretz, Stacey Lowery; Mettee, Howard D.; Smiley, Jeffrey A. – Biochemistry and Molecular Biology Education, 2005
A laboratory experiment for undergraduate biophysical chemistry is described, in which the acid concentration and temperature dependences of the decarboxylation of pyrrole-2-carboxylate are measured using a continuous ultraviolet (UV) spectrophotometric assay. Data collection and analysis are structured using principles of guided inquiry. Data…
Descriptors: Laboratory Experiments, Chemistry, College Science, Undergraduate Students

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