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Dohn, Niels B. – International Journal of Science Education, 2021
This study investigates upper secondary students' situational interest in a collaborative citizen science programme that involves genetic monitoring of freshwater fauna by analysing environmental DNA (eDNA) extracted from local pond water. The programme was attended by a sample that comprised 1879 students (M[subscript age] = 18.15, SD = 1.94)…
Descriptors: Student Interests, Secondary School Students, Data Collection, Water
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Majerle, R. S.; And Others – Journal of Chemical Education, 1995
Discusses processes for change that have been used to introduce innovative learning processes into laboratory courses. In one case the content of the course was not changed, just the order of presentation. In the second example cooperative learning processes were introduced in order to facilitate a change in the course content. (AIM)
Descriptors: Curriculum Development, Curriculum Evaluation, Higher Education, Laboratory Procedures
Reis, Richard M. – 1972
This study arose out of a concern for the type of college science courses being offered to non-science majors. Of particular concern is the traditional method of laboratory instruction, with its emphasis on specific techniques and instrument manipulations rather than promoting an understanding of the processes, concepts, and methods of…
Descriptors: College Science, Hypothesis Testing, Instruction, Laboratory Procedures
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Loehlin, James H.; And Others – Journal of Chemical Education, 1982
Describes an 8-week project involving the synthesis of cobalt compounds. Once synthesized, compounds are qualitatively and quantitatively analyzed. Background information, laboratory procedures, and results/discussion are provided for three project experiments. (Author/JN)
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education
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James, Robert K.; Finson, Kevin D. – Science Teacher, 1986
Offers suggestions for the development of a laboratory assistant program. Includes guidelines and factors to consider in the selection process and in the training program. Discusses the advantages of this type of program for both students and teachers. (ML)
Descriptors: Experiential Learning, Laboratory Procedures, Science Education, Science Laboratories
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Dudley, Aimee M.; Cardozo, David Lopes – American Biology Teacher, 2006
In this paper, the authors describe their development of an introductory laboratory course in microbiology that is geared towards students in grades 8-10. The course was developed as part of the Mentoring for Science Program at Harvard Medical School, an outreach program created by the Minority Faculty Development Program, directed towards…
Descriptors: Microbiology, Curriculum Development, Outreach Programs, Middle School Students
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Kandel, Marjorie; Ikan, Raphael – Journal of Chemical Education, 1989
Provides a point of view that the organic lab is a good place for the student to use and learn problem solving skills while performing the cookbook experiments. Notes that an equilibrium between the theoretical and practical aspects of organic chemistry should be established. (MVL)
Descriptors: Chemistry, College Science, Course Content, Curriculum Development
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Hawke, Scott D.; Ritter, John – Journal of College Science Teaching, 1988
Describes the experience of an author who initiated a prison education program to foster self-worth and personal pride through learning. Explains the teaching program, security and classroom instruction, and inmate-student characteristics. (RT)
Descriptors: Biology, College Science, Correctional Education, Higher Education
Brophy, M.; Fryars, M. – 1983
Seychelles Integrated Science (SIS), a 3-year laboratory-based science program for students (ages 11-15) in upper primary grades 7, 8, and 9, was developed from an extensive evaluation and modification of previous P7-P9 materials. This P7 SIS unit focuses on: (1) the importance of air and air pressure in students' everyday lives; (2) oxidation…
Descriptors: Curriculum Development, Integrated Curriculum, Junior High Schools, Laboratory Procedures
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Mattson, Bruce M.; And Others – Journal of Chemical Education, 1989
Describes a full day of chemistry fun and competition for high school chemistry students. Notes teams have five students from each high school. Lists five competitive events for each team: titration, qualitative analysis, balancing equations, general chemistry quiz, and quantitative analysis with atomic absorption spectroscopy. (MVL)
Descriptors: Chemical Analysis, Chemical Nomenclature, Chemical Reactions, Chemistry
Brophy, M.; Fryars, M. – 1983
Seychelles Integrated Science (SIS), a 3-year laboratory-based science program for students (ages 11-15) in upper primary grades 7, 8, and 9, was developed from an extensive evaluation and modification of previous P7-P9 materials. This P7 SIS unit is designed to: (1) introduce students to and familiarize them with working in the school laboratory;…
Descriptors: Curriculum Development, Integrated Curriculum, Junior High Schools, Laboratory Procedures
Reay, Judith, Ed. – 1982
Provided is an annotated bibliography of items of particular interest to science education. Items are arranged alphabetically by author (or in some cases by title) within each of the following sections: (1) techniques in the lab and field; (2) nature and evolution of science; (3) teaching strategies; (4) curriculum and examinations; (5) young…
Descriptors: Cognitive Development, Concept Formation, Curriculum Development, Educational Games
Brophy, M.; Fryars, M. – 1983
Seychelles Integrated Science (SIS), a 3-year laboratory-based science program for students (ages 11-15) in upper primary grades 7, 8, and 9, was developed from an extensive evaluation and modification of previous P7-P9 materials. This P7 SIS unit focuses on: (1) the importance of water in students' daily lives; (2) the need to purify drinking…
Descriptors: Conservation (Environment), Crystallography, Curriculum Development, Integrated Curriculum
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Friedler, Yael; And Others – School Science and Mathematics, 1989
Describes a Skill Development Module fostering students' scientific reasoning skills within a school science laboratory. Summarizes the module activities in combination with computerized and non-computerized activities for a 16-week period. Discusses the classroom evaluation of the module. (YP)
Descriptors: Computer Assisted Instruction, Computer Interfaces, Computer Uses in Education, Formal Operations