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2000
Everything in the universe consists of matter. So how can the differences between various types of matter be distinguished? Besides color, shape and size, there are more detailed properties that are used to define matter. Mass, weight, volume and density are all related to tell a great deal about an object or substance. Students will learn about…
Descriptors: Demonstrations (Science), Density (Matter), Hands on Science, Intermediate Grades
2000
Forces are all around. Without them, there would be no movement. In fact, Sir Isaac Newton theorized that a force called inertia actually works to keep things exactly as they are at any given moment! Students will learn about Newton's laws and about how forces affect many aspects of life. With clear demonstrations and a unique hands-on activity,…
Descriptors: Demonstrations (Science), Force, Gravity (Physics), Hands on Science
2000
Motion allows things to get done, to communicate and to travel. But is motion controlled? Students will learn about the universal laws that apply to motion, the forces that cause it and how it is related to balance. They will also discover why motion occurs when forces are out of control and learn more about this interesting concept by viewing…
Descriptors: Demonstrations (Science), Force, Hands on Science, Intermediate Grades
2000
All kids are familiar with the basic idea of gravity--it's why things fall to the ground. Gravity uses exciting visuals and clear, colorful graphics to take students beyond the basics to explain that gravity is really a force of attraction between objects. They'll discover that all objects--no matter how large or small--have gravitational force,…
Descriptors: Demonstrations (Science), Gravity (Physics), Hands on Science, Intermediate Grades
2000
Waves are disturbances that transfer energy from place to place. All waves have amplitude, wavelength and frequency regardless of whether they are mechanical waves, electromagnetic waves or waves in the ocean! Students will learn more about the role waves play in everyday life and why understanding them is so important. With fun demonstrations and…
Descriptors: Acoustics, Demonstrations (Science), Electricity, Hands on Science
American Chemical Society, Washington, DC. – 2002
This book is designed to assist teachers at the 9-12 grade levels in addressing the goals of the National Science Education Standards (NSES) in their own classrooms concerning the teaching and learning of chemistry. The Standards expect students to learn science in an active manner and emphasizes methods of inquiry and deductive reasoning based on…
Descriptors: Chemistry, Curriculum Development, Educational Change, Educational Quality
Bureau of Reclamation (Dept. of Interior), Denver, CO. – 1999
This document features descriptions of interactive learning models and presentations in environmental education concerning groundwater, geology, the environment, weather, water activities, and interactive games. Activities include: (1) GW-Standard; (2) GW-w/no Leaky Underground Storage Tank (No UST); (3) GW-Karst; (4) GW-Landfill Models--Standard…
Descriptors: Demonstrations (Science), Educational Games, Environmental Education, Groundwater
1999
This 23-minute videotape takes children, grades K-4, on a tour of the nine planets of our solar system and explains vital statistics and interesting facts about each. Key terms such as rotation, revolution, and orbit, are explained. A hands-on activity that can be used to demonstrate how Saturn's moons actually create its beautiful rings is also…
Descriptors: Astronomy, Elementary Education, Hands on Science, Science Activities
Benkendorff, Kirsten – 2001
Australia's marine environment hosts a high level of diverse endemic species along with some of the highest biodiversity in the world. Two-thirds of the population of Australia are living in coastal areas and can be considered a threat to marine life which is very vulnerable to human impacts. Although marine environments conserve high economic…
Descriptors: Biodiversity, Elementary Secondary Education, Foreign Countries, Government School Relationship
Grant, Tim, Ed.; Littlejohn, Gail, Ed. – 2001
Schoolyard greening is an excellent way to promote hands-on, interdisciplinary learning about the environment through projects that benefit schools and increase green space and biodiversity in communities. This book features step-by-step instructions for numerous schoolyard projects from tree nurseries to school composting to native plant gardens,…
Descriptors: Biodiversity, Botany, Curriculum Development, Ecology
Jones, Dorothy A.; Eichinger, David C. – 1998
This paper introduces the biology laboratory as a learning project. Biology laboratories provide unique learning opportunities to students as traditional achievement outcome measures, and play an important role in the development of process skills, manual skills, and attitudes. However, there is insufficient data on undergraduate students majoring…
Descriptors: Biology, Conflict Resolution, Epistemology, Experiential Learning
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Hollis, Shirley – Education in Science, 1997
Describes a teacher's experiences with using partnerships with industry as a resource to motivate primary science students. The project enables students to see the relevance of classroom science to the real world and provides an opportunity for students to apply concepts learned in the classroom. (DDR)
Descriptors: Academic Achievement, Awards, British National Curriculum, Competition
Peer reviewed Peer reviewed
Edwards, Clifford H. – Science Teacher, 1997
Argues that in order to have bona fide inquiry experiences, students must formulate their own questions, create hypotheses, and design investigations that test those hypotheses and answer the proposed questions. (DDR)
Descriptors: Hands on Science, Inquiry, Learning Strategies, Problem Solving
Peer reviewed Peer reviewed
Radice, Gary P. – Journal of College Science Teaching, 1997
Describes a technological approach to teaching the relationships between biological form and function. Computer-assisted image analysis was integrated into a microanatomy course. Students spend less time memorizing and more time observing, measuring, and interpreting, building technical and analytical skills. Appendices list hardware and software…
Descriptors: Anatomy, Biology, College Science, Computer Assisted Instruction
Peer reviewed Peer reviewed
Warren, Michael D. – Science Teacher, 1997
Explains a method to enable students to understand DNA and protein synthesis using model-building and role-playing. Acquaints students with the triplet code and transcription. Includes copies of the charts used in this technique. (DDR)
Descriptors: Biology, Concept Formation, DNA, Elementary Secondary Education
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