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Panagiotis Lazos; Constantina Stefanidou; Constantine Skordoulis – European Journal of Science and Mathematics Education, 2024
The objectives of the present study are to investigate both the history of the collection of scientific instruments from the Maraslean Teaching Center (MTC) and the potential for the collection's use in STEM education programs. Although MTC went by a number of different names during its long history, its institutional goal remained the same:…
Descriptors: Foreign Countries, Science Education, Science Education History, Laboratory Equipment
Heldt, Caryn L.; Bank, Alex; Turpeinen, Dylan; King, Julia A. – Chemical Engineering Education, 2016
The need to increase science, technology, engineering, and mathematics (STEM) graduates is great. To interest more students into STEM degrees, we made our graphene biosensor research portable, inexpensive, and safe to demonstrate technology development to high school students. The students increased their knowledge of biosensors and proteins, and…
Descriptors: High Schools, Secondary School Science, Laboratory Experiments, STEM Education
Temiz, Burak Kagan – Physics Education, 2014
This study was conducted to develop a simple and inexpensive experimental apparatus that can measure the position of an object moving along a straight line at certain time intervals. For the construction of the apparatus, a battery-powered toy car, a fine-tipped paint brush, gouache (or watercolour) paint and paper tape were used. The working…
Descriptors: Kinetics, Science Equipment, Science Experiments, Cost Effectiveness
Tracy, Charles; Cunningham, Elizabeth – Education in Science, 2014
This article reports on a plea directed to schools in England that changed status to an "academy" and thus lost their Local Authority Radiation Protection Adviser (RPA) service. These schools have been encouraged to do all that they can to hang on to their sources (radioactive equipment used in classroom experiments to investigate…
Descriptors: Science Course Improvement Projects, Science Experiments, Information Sources, Radiation
Orton, Richard J. J. – School Science Review, 2013
When CLEAPSS, the organisation now well known as a source of advice on health and safety in school science, came into being, it was called the Consortium of Local Education Authorities for the Provision of Science Equipment (CLEAPSE). This short article describes the role of the Science Masters' Association in its creation and the contribution of…
Descriptors: Science Equipment, Safety Education, Professional Associations, Organizational Objectives
Davidhazy, Andrew – Tech Directions, 2012
Sir Isaac Newton determined that the acceleration constant for gravity was 32 ft./per/sec/sec. This is a fact that most students become familiar with over time and through various means. This article describes how this can be demonstrated in a technology classroom using simple photographic equipment. (Contains 5 figures.)
Descriptors: Program Descriptions, Scientific Concepts, Photography, Physics
Gillman, Joan – Science and Children, 2013
To capture students' excitement and engage their interest in rocketships and visiting planets in the solar system, the author designed lessons that give students the opportunity to experience the joys and challenges of developing straw rockets, and then observing which design can travel the longest distance. The lessons are appropriate for…
Descriptors: Astronomy, Lesson Plans, Grade 4, Grade 5
Moran, Paloma; Galindo, Juan – Biochemistry and Molecular Biology Education, 2011
We report a practical home-made microcentrifuge to be used for teaching purposes. It was made using a salad spinner and two polymerase chain reaction (PCR) tubes racks. It can accommodate 2 standard size 96-well plates or 24 strips or up to 192 microfuge tube. The centrifuge is hand-operated and is ideal for short spin down purposes. (Contains 3…
Descriptors: Science Course Improvement Projects, Science Materials, Science Equipment, Material Development
Bliss, Angela; Bell, Elizabeth; Spence, Lundie – Science and Children, 2013
Oranges, flying disks, pool noodles, and polyvinyl chloride (PVC) pipe may seem like items discarded after a Rube Goldberg experiment, but in fact, these objects were used in teaching science, technology, engineering, and math (STEM). This article describes a project in which The Center of Ocean Sciences Education Excellence SouthEast (COSEE SE)…
Descriptors: Inquiry, Science Activities, Teaching Methods, Educational Practices
Vandermeer, Sarah – Science Teacher, 2010
Electrospinning has been used to create nanofibers for filtration devices, tissue engineering, and protective clothing. Although electrospinning is now widely studied, because of the expensive equipment required and the advanced nature of this topic, it is not commonly found in high school science labs. Through grants from the Ohio State…
Descriptors: Honors Curriculum, Physics, Electromechanical Technology, Laboratory Safety
GROBMAN, ARNOLD B.; AND OTHERS – 1964
INFORMATION FOR TEACHERS AND PRINCIPALS IMPLEMENTING BIOLOGICAL SCIENCE CURRICULUM STUDY (BSCS) BIOLOGY IN THE SCHOOL PROGRAM IS INCLUDED IN THIS GUIDE. THE RATIONALE AND CONTENT OF THE BSCS VERSIONS ARE EXPLAINED. PHYSICAL FACILITIES, LABORATORY EQUIPMENT, AND LABORATORY MATERIALS THAT FACILITATE TEACHING BSCS BIOLOGY ARE ANALYZED. ADMINISTRATIVE…
Descriptors: Biology, Curriculum Development, Science Course Improvement Projects, Science Equipment
Dasbach, Joseph M. – 1968
Discussed are two studies undertaken by the Commission: The Cost of Material Study and The Science-Mathematics S"udy. Early plans in The Cost of Material Study were to specifically tabulate costs of introducing and maintaining each of eight "new" science courses in elementary and junior high schools. This was abandoned in favor of…
Descriptors: Curriculum Development, Elementary School Science, Program Evaluation, Science Course Improvement Projects
TWEETEN, PAUL W. – 1966
THIS GUIDE FOR TEACHING HIGH SCHOOL PHYSICS INCLUDES--(1) CONCEPTS, (2) UNDERSTANDINGS, (3) ACTIVITIES, (4) REFERENCES, (5) AUDIOVISUAL AIDS, (6) EQUIPMENT, AND (7) REQUIRED SUPPLIES. THE COURSE CONTENT IS DIVIDED INTO EIGHT MAJOR TOPICS--(1) FUNDAMENTALS, (2) MECHANICS, (3) HEAT, (4) SOUND, (5) LIGHT, (6) ELECTRICITY, (7) SPACE, TIME, AND MOTION,…
Descriptors: Audiovisual Aids, Course Content, Mathematics, Physics
De Angelis, Joseph M. – 1980
Construction of laboratory equipment from earthenware clay uses art as a way to incorporate the element of science history into an Introductory Physical Science (IPS) unit on distillation. Classroom techniques for working with clay to construct distilling apparatus are outlined. Other supplementary material from the arts, including slide…
Descriptors: Ceramics, Grade 9, Resource Materials, Science Activities
BERGER, CARL; MONTGOMERY, MARSHALL – 1967
THIS GUIDE IS DESIGNED FOR USE IN PLANNING AND TEACHING THE SCIENCE CURRICULUM IMPROVEMENT STUDY (SCIS) UPPER ELEMENTARY GRADE UNIT "POSITION AND MOTION". GENERAL INFORMATION INCLUDES (1) A UNIT OVERVIEW, (2) BACKGROUND INFORMATION ON POSITION AND MOTION CONCEPTS, (3) PLANNING AND TEACHING SUGGESTIONS, AND (4) AN EQUIPMENT LIST. THE UNIT…
Descriptors: Curriculum Development, Discovery Learning, Elementary School Science, Instruction
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