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Showing 1,036 to 1,050 of 1,150 results Save | Export
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Knabb, Maureen T.; Misquith, Geraldine – American Biology Teacher, 2006
Incorporating inquiry-based learning in the college-level introductory biology laboratory is challenging because the labs serve the dual purpose of providing a hands-on opportunity to explore content while also emphasizing the development of scientific process skills. Time limitations and variations in student preparedness for college further…
Descriptors: Inquiry, Biology, Science Instruction, Laboratory Experiments
2000
How does a tiny seed sprout and grow into a towering tree? Join the kids from M.A.P.L.E as they learn about some of the incredible transformations that a plant goes through during its lifetime. In All About Plant Structure & Growth, uncover the secrets of roots, stems and leaves - structures that are vital to a plant's role as an energy…
Descriptors: Anatomy, Botany, Elementary Education, Hands on Science
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Britos, Leticia; Goyenola, Guillermo; Orono, Silvia Umpierrez – Biochemistry and Molecular Biology Education, 2004
An extremely simple, inexpensive, and safe method is presented, which emulates nucleic acids isolation and electrophoretic analysis as performed in a research environment, in the context of a secondary school hands-on activity. The protocol is amenable to an interdisciplinary approach, taking into consideration the electrical and chemical…
Descriptors: Hands on Science, Science Activities, Science Instruction, Secondary School Science
Van Hook, Stephen; Huziak, Tracy; Nowak, Katherine – Journal of Elementary Science Education, 2005
This study examines the development of mental models of air by kindergarten students after completing a series of hands-on, inquiry-based science lessons. The lessons focused on two properties of air: (1) that air takes up space and (2) that it is made of particles ("balls of air"). The students were interviewed about their ideas of air and about…
Descriptors: Kindergarten, Science Instruction, Inquiry, Hands on Science
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Ornstein, Avi – Journal of Science Education and Technology, 2006
Attitudinal data tested hypotheses that students have more positive attitudes toward science when teachers regularly emphasize hands-on laboratory activities and when students more frequently experience higher levels of experimentation or inquiry. The first predicted that students would have more positive attitudes toward science in classrooms…
Descriptors: Hands on Science, Science Instruction, Laboratory Experiments, Inquiry
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Triona, Lara M.; Klahr, David – Science Education Review, 2007
Hands-on science typically uses physical materials to give students first-hand experience in scientific methodologies, but the recent availability of virtual laboratories raises an important question about whether what students' hands are on matters to their learning. The overall findings of two articles that employed simple comparisons of…
Descriptors: Hands on Science, Scientific Methodology, Virtual Classrooms, Laboratory Experiments
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Kline, Robert L.; Dukacz, Stephen A. W.; Stavraky, Thomas – Advances in Physiology Education, 2000
Describes a laboratory experience for upper-level science students that provides a hands-on approach to understanding the basics of experimental physiology. Students design an experiment to determine the relative importance of dilution of plasma proteins in the overall renal excretory response following volume expansion with intravenous saline.…
Descriptors: Hands on Science, Higher Education, Inquiry, Medical Education
VanCleave, Janice – Instructor, 2001
Presents a set of hands-on, outdoor science experiments designed to teach elementary school students about animal adaptation. The experiments focus on: how color camouflage affects an insect population; how spiderlings find a home; and how chameleons camouflage themselves by changing color. (SM)
Descriptors: Adjustment (to Environment), Animal Behavior, Animals, Elementary Education
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Lemckert, Charles; Florance, John – British Journal of Educational Technology, 2002
Discusses the demand for distance education opportunities in engineering and science and considers delivery methods for theoretical content and for laboratory work. Explains the Real-Time Internet Mediated Laboratory Experiments (RTIMLE) that use the World Wide Web, and suggests that RTIMLE may be most appropriate for students who already have…
Descriptors: Distance Education, Engineering Education, Experiential Learning, Hands on Science
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Baker, William P.; Woodward, Susanne – Science Activities, 2001
Presents the floral foam activity which explores the relationship between volume and mass. Focuses on helping students to enhance their critical thinking skills. (YDS)
Descriptors: Density (Matter), Hands on Science, Inquiry, Laboratory Experiments
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Yürük, Nejla – EURASIA Journal of Mathematics, Science & Technology Education, 2007
The aim of this paper was to describe the changes in one student's ideas about force and one-dimensional motion concepts and portray the relevant metaconceptual processes that she engaged in during the implementation of metaconceptual teaching interventions. Metaconceptual processes involves metacognitive processes that are directly acting on or…
Descriptors: Scientific Concepts, Concept Formation, Metacognition, Cognitive Processes
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Abdel-Salam, Tarek; Kauffman, Paul J.; Crossman, Gary – European Journal of Engineering Education, 2006
Educators question whether performing a laboratory experiment as an observer (non-hands-on), such as conducted in a distance education context, can be as effective a learning tool as personally performing the experiment in a laboratory environment. The present paper investigates this issue by comparing the performance of distance education…
Descriptors: Distance Education, Laboratory Experiments, Hands on Science, Mechanics (Physics)
Wartski, Bert; Wartski, Lynn Marie – 1995
This document contains biology labs, demonstrations, and activities that use low budget materials. The goal is to get students involved in the learning process by experiencing biology. Each lab has a teacher preparation section which outlines the purpose of the lab, some basic information, a list of materials , and how to prepare the different…
Descriptors: Anatomy, Biology, Classification, Demonstrations (Science)
Strongin, Herb; And Others – 1991
Often elementary and junior high teachers search for effective, inexpensive, and easy-to-understand science activities. This document was designed with those teachers and their students in mind. It provides hands-on science activities that focus around three components: (1) themes--broad, unifying ideas that pervade science, math and technology;…
Descriptors: Elementary Education, Energy, Hands on Science, Junior High Schools
Cardoso, Lurdes – 2002
The purpose of this paper is to present an ethnographic study (Cardoso, 1999) involving six primary school pupils and doing simple experiments with everyday home equipment in the context of learning science. The hands-on science activities were carried out by children with the help of their parents. Results showed that children learnt at home and…
Descriptors: Elementary Education, Family Environment, Foreign Countries, Hands on Science
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