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Bertram Schmidkonz – Journal of Chemical Education, 2022
Simple, often artificial problems are normally preferred for introductory lab courses and are restricted to indoor participation. Microtitrations make it possible to leave the lab and study water chemistry directly in the natural environment. An exemplary outdoor challenge is presented here: travertine formation is context-rich, has to be examined…
Descriptors: Inorganic Chemistry, Laboratory Experiments, Outdoor Education, Science Instruction
Smit, Robbert; Robin, Nicolas; De Toffol, Christina; Atanasova, Sanja – International Journal of Technology and Design Education, 2021
Industry-school partnerships offer authentic learning opportunities and can support the development of students' interest in a STEM career. The expectancy-value model of achievement-related choice can help to explain how several factors influence career choice. Interest-enjoyment values and attainment values are most important in students'…
Descriptors: Partnerships in Education, School Business Relationship, Industry, Science Projects
Hill, David J.; Williams, Olivia F.; Mizzy, Danianne P.; Triumph, Therese F.; Brennan, Catherine R.; Mason, Dawn C.; Lawrence, David S. – Journal of Chemical Education, 2019
A laboratory-safety course has been developed that is designed to introduce first-year graduate students to the array of dangers associated with research in the chemical sciences. We describe the challenges of creating an impactful course that seeks to convey practical laboratory-safety information in a classroom setting for students with a…
Descriptors: Laboratory Safety, Graduate Students, Active Learning, Introductory Courses
Possick, Jennifer – Science and Children, 2007
In this article, the authors' kindergarteners and a fellow first-grade class turned their hallway into a forest! Not just any mural, this culmination of a month-long project was based on observing, questioning, taking field trips, conducting library research (including the internet) and asking experts. The students developed skills in forming…
Descriptors: Inquiry, Animals, Integrated Activities, Science Projects
Adney, Cara – Techniques: Connecting Education and Careers (J3), 2012
A world away from the red dirt of Oklahoma, David Shields and Shelly Smith felt right at home. A national grant took the Meridian Technology Center automotive teachers on a trip to Germany that car lovers only dream about. The tour to the major automakers last summer has them geared up and bringing fresh ideas to the classroom. They spent four…
Descriptors: Foreign Countries, Manufacturing, Motor Vehicles, Auto Mechanics
Peer reviewedEvans, Susann – Science Scope, 1994
Describes the preparation and importance of a project where junior high school students stenciled "No Dumping! Flows to the Bay!" on storm drains in the area of their school. (PR)
Descriptors: Environmental Education, Field Trips, Junior High Schools, Learning Activities
Peer reviewedSmith, Michael John – Science Teacher, 1993
Describes a class project of producing a geologic report of a park for a community. (PR)
Descriptors: Earth Science, Field Trips, Geology, High Schools
Peer reviewedNiemitz, Jeffrey William; Potter, Noel, Jr. – Journal of Geological Education, 1991
Describes an approach to introductory geology that requires students to go into the field to make observations, collect and analyze data, synthesize those data, and hypothesize about inferred geologic relationships. The product of these laboratories is a paper that requires students to test their hypothesis using specific examples from the data.…
Descriptors: Content Area Writing, Earth Science, Field Trips, Geology
Peer reviewedFryer, Karen Helene – Journal of Geological Education, 1991
Explains how students can learn basic petrographic techniques by using a thin-section collection prepared from the rock units in a geological area under study. Each student defines a particular problem to investigate and is responsible for collecting samples in the field, making additional thin sections, and preparing formal written and oral…
Descriptors: Content Area Writing, Earth Science, Field Trips, Geology
Peer reviewedCaprio, M. W. – Journal of College Science Teaching, 1993
Examines the following five teaching techniques that have strong motivational value: (1) study groups, (2) group projects, (3) sharing information, (4) computer-assisted instruction, and (5) field trips. (PR)
Descriptors: College Science, Computer Assisted Instruction, Cooperative Learning, Field Trips
Riel, Margaret; Fulton, Kathleen – Phi Delta Kappan, 2001
In a learning community, students learn to cooperate and make teams work. Past technologies (print, photography, film, and computers) have enabled idea sharing, but are one-way communication modes. Broader learning communities have been made possible through electronic field trips, online mentoring, science investigations, and humanities…
Descriptors: Cooperation, Educational Benefits, Educational Technology, Elementary Secondary Education
Mehrizi-Sani, A. – IEEE Transactions on Education, 2012
A summer academy is held for grade 9-12 high school students at the University of Toronto, Toronto, ON, Canada, every year. The academy, dubbed the Da Vinci Engineering Enrichment Program (DEEP), is a diverse program that aims to attract domestic and international high school students to engineering and sciences (and possibly recruit them). DEEP…
Descriptors: Field Trips, Enrichment Activities, Engineering, Foreign Countries
Peer reviewedWood, John H. – American Biology Teacher, 1979
A field trip to a science activity center in Southwest England for secondary school students is described. (BB)
Descriptors: Biological Sciences, Ecology, Environmental Education, Field Trips
Eastwell, Peter; Rennie, Léonie – Science Education Review, 2002
A quasi-longitudinal case study was used to determine the effects on secondary students of participation in a program of enrichment and extracurricular science activities in terms of their interest and enjoyment in being involved in science activities, their motivation to continue to participate in science, and their perceptions about scientists…
Descriptors: Secondary School Students, Student Interests, Extracurricular Activities, Enrichment Activities

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