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McBride, Elizabeth Anne – ProQuest LLC, 2018
It is often claimed that engineering projects improve student achievement in mathematics and science, but research on this topic has shown that many projects do not live up to the claim (Teacher Advisory Council, 2009). Ideally, undertaking a science project should be motivating, while also helping students to understand the interplay between…
Descriptors: Science Instruction, Hands on Science, Scientific Concepts, Engineering Education
Esch, R. Keith; Burbacher, Emily; Dodrill, Eric; Fussell, Kristen DeVanna; Magdich, Mitchell; Norris, Heather; Midden, W. Robert – Horizon Research, Inc., 2020
Citizen science (CS) projects have become widespread in part because they expand the capacity of professional scientists, enabling research that would otherwise be impracticable or unaffordable. In addition to the research benefits, educators and scientists have seen educational value in CS because it can incorporate students into real-world…
Descriptors: Citizen Participation, Scientific Research, Science Education, Science Projects
Hainsworth, Mark – Primary Science, 2018
As well as providing a valuable and enjoyable experience for pupils, outdoor learning also enhances and contextualises learning in science by helping pupils understand science concepts. Teachers' lack of confidence in which aspects of the science curriculum they can actually teach outdoors deters them from venturing outside the classroom for…
Descriptors: Outdoor Education, Science Instruction, Science Curriculum, Scientific Concepts
Langbeheim, Elon – Physics Education, 2015
Research has shown that project-based learning promotes student interest in science and improves understanding of scientific content. Fostering student motivation is particularly important in accelerated science and technology programmes for talented students, which are often demanding and time-consuming. Current texts provide little guidance on…
Descriptors: Science Instruction, Scientific Principles, Junior High School Students, Physics
Weinstein, Matthew – Democracy & Education, 2012
This paper builds on Mueller, Tippins, and Bryan's paper to ask how neoliberal restructuring impacts the form of appropriate and possible democratic science/education. It examines the compatibilities between antidemocratic tendencies of current schooling and common forms citizen science. It also clarifies several details regarding the street-medic…
Descriptors: Democracy, Politics of Education, Neoliberalism, Science Education
Ahearn, Sarah – Education Digest: Essential Readings Condensed for Quick Review, 2011
The author felt comfortably settled in her career. She had been teaching middle school science for seven years. She attended cutting-edge classes in college, received a master's degree in educational technology, earned a license in administration, and had attended a variety of classes and professional development workshops. Looking back, she…
Descriptors: Science Projects, Middle Schools, Educational Technology, Science Instruction
Hein, Annamae J. – Science Activities: Classroom Projects and Curriculum Ideas, 2011
The Plate Tectonics Project is a multiday, inquiry-based unit that facilitates students as self-motivated learners. Reliable Web sites are offered to assist with lessons, and a summative rubric is used to facilitate the holistic nature of the project. After each topic (parts of the Earth, continental drift, etc.) is covered, the students will…
Descriptors: Plate Tectonics, Summative Evaluation, Self Motivation, Literacy
Bork, Alfred M. – ACM Sigcue Bulletin, 1973
A short description of the Physics Computer Development Project at the University of California, Irvine, concerned with effective ways of using computers in the teaching environment. (Author)
Descriptors: Computer Assisted Instruction, Computer Programs, Computers, Physics

Sere, Marie-Genevieve – Science Education, 2002
Describes a project on labwork at upper secondary and undergraduate levels that was launched in 1996 and funded by the European Commission. Presents new research questions focusing on three objectives: (1) conceptual; (2) epistemological; and (3) procedural. (Contains 28 references.) (Author/YDS)
Descriptors: Epistemology, Higher Education, Science Curriculum, Science Instruction
Ingram, Victoria W. – Teacher, 1973
Describes a unit on dinosaurs that led students into many other areas and concepts. (GB)
Descriptors: Geology, Natural Sciences, Paleontology, Science Activities

Greatorex, D.; Lister, J. M. – School Science Review, 1980
Discusses some of the problems associated with the organization of a British chemistry course. Results that can be achieved in this Mode 3 O-Level chemistry course are also discussed. (HM)
Descriptors: Chemistry, Evaluation, Science Curriculum, Science Instruction
Crone, Burnell – 1975
Alaska is one of the most ideal settings for teaching science. In most of the rural areas, science materials are in abundance starting almost at the school's door steps to a distance as far as a person would like to go. Therefore, it is quite possible to develop science projects for all grades. Some of the projects can be done in the simplest ways…
Descriptors: Elementary School Science, Outdoor Education, Rural Schools, Science Curriculum
Hand, Jackson – Grade Teacher, 1969
Descriptors: Computation, Elementary School Science, Meteorology, Science Activities

Arnold, William – Journal of Chemical Education, 1980
Discusses various methods the author has used in high school chemistry classes to maintain interest and keep grades at an acceptable standard. Integrated within the curriculum are research projects, library research, creative work, laboratory write-ups; a two-level curriculum is provided for nonscience and science majors. (CS)
Descriptors: Chemistry, Research Projects, Science Curriculum, Science Education

Robertson, William B. – Journal of Chemical Education, 1979
Describes a chemistry program offered at East Mecklenburg High School in Charlotte, North Carolina. The philosophy underlying this program and its teaching techniques are also included. (HM)
Descriptors: Chemistry, Laboratory Techniques, Science Curriculum, Science Education