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Showing 1 to 15 of 19 results Save | Export
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Jensen, Mark B. – Journal of Chemical Education, 2015
An instrumentation-based laboratory curriculum combining traditional unknown analyses with student-designed projects has been developed for an introductory analytical chemistry course. In the first half of the course, students develop laboratory skills and instrumental proficiency by rotating through six different instruments performing…
Descriptors: Introductory Courses, Instrumentation, Student Projects, Laboratory Training
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Hahn, Tobias; Huuk, Thiemo; Heuveline, Vincent; Hubbuch, Ju¨rgen – Journal of Chemical Education, 2015
Industrial purification of biomolecules is commonly based on a sequence of chromatographic processes, which are adapted slightly to new target components, as the time to market is crucial. To improve time and material efficiency, modeling is increasingly used to determine optimal operating conditions, thus providing new challenges for current and…
Descriptors: Hands on Science, Courseware, Undergraduate Students, Engineering Technology
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Keiner, Louis E.; Burns, Teresa E. – Physics Teacher, 2010
It is now widely known that interactive engagement (IE) teaching methods are the most effective methods of teaching physics. As physics instructors, we now have a variety of methods and models to choose from to make courses interactive. Included in these are methods that function as interactive adaptations to the traditional structure of physics…
Descriptors: Interaction, Peer Teaching, Science Instruction, Physics
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Kuhn, Misty L.; Figueroa, Carlos M.; Aleanzi, Mabel; Olsen, Kenneth W.; Iglesias, Alberto A.; Ballicora, Miguel A. – Biochemistry and Molecular Biology Education, 2010
Higher education institutions and scientific funding agencies are emphasizing international projects that involve the integration and synergy between research groups, particularly if different disciplines are involved. Students with an education that reflects these trends will have more tools to succeed in the future, but it is challenging to…
Descriptors: Foreign Countries, Interdisciplinary Approach, Cooperative Learning, Graduate Students
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Lien, Brian – Technology Teacher, 2007
In this article, the author describes an activity he introduced to his engineering drafting students that involved a Tootsie Roll product. In this particular activity, he assigned his students to find out how many licks are needed to get to the center of a Tootsie Roll Pop. He first asked his students to do some research if an answer exists for…
Descriptors: Engineering Technology, Engineering Education, Science Activities, Problem Based Learning
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Duffin, W. J. – Physics Education, 1971
Presented is an assessment of the restructuring of a college freshman physics course. Details of the organization of the lab activities, grouping of the students, and strengths and weaknesses of the arrangements are discussed. (DS)
Descriptors: College Science, Course Organization, Curriculum, Instruction
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Baker, M. Michelle – Bioscience, 1970
Descriptors: Biology, College Science, Course Organization, Individualized Instruction
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Pennington, A. C. – School Science Review, 1972
Describes some laboratory experiments that can strengthen the study of non-aqueous ionizing solvents in Nuffield A-level chemistry course. (PS)
Descriptors: Chemistry, Course Content, Course Organization, Instruction
New York State Education Dept., Albany. – 1986
Developed to complement existing elementary science programs, the materials in this first volume of New York's Elementary Science Supplement to the Syllabus emphasize a direct experience, hands-on approach for children of ages 4 through 7. Major sections include: (1) guidelines for program activities (explaining the organizational format of the…
Descriptors: Course Organization, Elementary School Science, Enrichment Activities, Experiential Learning
Biological Sciences Curriculum Study, Colorado Springs. – 1987
This study guide is designed to help students learn to use science skills to solve biological problems, learn to apply knowledge about biology in their own lives, and learn to communicate with others about biology. The activities in this guide use information related to each chapter in the 1987 BSCS Green Version textbook. Students can use the…
Descriptors: Biological Sciences, Course Organization, Critical Thinking, Instructional Materials
New York State Education Dept., Albany. Bureau of General Education Curriculum Development. – 1978
This publication developed by the New York State Education Department with the cooperation of the University of the State of New York, is a curriculum guide for elementary science (grade 4-6). This guide is organized around 6 large subject areas: (1) Living things; (2) Our growing bodies; (3) Air, water and weather; (4) The earth and its…
Descriptors: Course Organization, Curriculum Development, Curriculum Guides, Elementary Education
CORRELL, MALCOLM; STRASSENBURG, ARNOLD A. – 1965
REPORTED ARE PROCEEDINGS OF THE BOULDER CONFERENCE ON PHYSICS FOR NONSCIENCE MAJORS, SPONSORED BY THE COMMISSION ON COLLEGE PHYSICS. PART I OF THIS REPORT IS AN INTRODUCTION EXPLAINING THE CONFERENCE. PART II CONTAINS EXPANDED COURSE OUTLINES OF PHYSICS COURSES FOR NONSCIENCE MAJORS THAT WERE PRESENTED TO THE GROUP BY SEVEN PARTICIPATING…
Descriptors: Bibliographies, Chemistry, College Science, Conference Reports
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Borcherds, P. H. – Physics Education, 1986
Describes an optional course in "computational physics" offered at the University of Birmingham. Includes an introduction to numerical methods and presents exercises involving fast-Fourier transforms, non-linear least-squares, Monte Carlo methods, and the three-body problem. Recommends adding laboratory work into the course in the…
Descriptors: College Mathematics, College Science, Computation, Course Content
Lessman, Mary – 1987
The purpose of this document is to develop a usable science teaching guide based on the process skills methodology for the middle school life science teacher. It is intended to provide an efficient and effective tool for the interested teacher to use to develop the skills of the methodology. It could also be used as companion to the latest set of…
Descriptors: Biological Sciences, Concept Formation, Concept Mapping, Course Organization
New York State Education Dept., Albany. Bureau of Curriculum Development. – 1988
Developed to complement existing elementary science programs, the materials in this second volume of New York's Elementary Science Supplement emphasize an experiential, hands-on approach for children aged 7-9. Major sections include guidelines for program activities, (the format of this publication); correlating syllabus and program, (including a…
Descriptors: Biological Sciences, Course Organization, Ecology, Electricity
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