Updating search results...

Search Resources

1215 Results

View
Selected filters:
  • Physics
What Is Heat?
Read the Fine Print
Educational Use
Rating
0.0 stars

Students learn about the definition of heat as a form of energy and how it exists in everyday life. They learn about the three types of heat transfer conduction, convection and radiation as well as the connection between heat and insulation. Their learning is aided by teacher-led class demonstrations on thermal energy and conduction. A PowerPoint® presentation and quiz are provided. This prepares students for the associated activity in which they experiment with and measure what they learned in the lesson by designing and testing insulated bottles.

Subject:
Engineering
Physics
Science
Material Type:
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Brendan Higgins
Duff Harrold
Nadia Richards
Travis Smith
Date Added:
09/18/2014
What Is Newton's First Law?
Read the Fine Print
Educational Use
Rating
0.0 stars

Students are introduced to the concepts of force, inertia and Newton's first law of motion: objects at rest stay at rest and objects in motion stay in motion unless acted upon by an unbalanced force. Examples of contact and non-contact types of forces are provided, specifically applied, spring, drag, frictional forces, and magnetic, electric, gravitational forces. Students learn the difference between speed, velocity and acceleration, and come to see that the change in motion (or acceleration) of an object is caused by unbalanced forces. They also learn that engineers consider and take advantage of these forces and laws of motion in their designs. Through a PowerPoint® presentation and some simple teacher demonstrations these fundamental science concepts are explained and illustrated. This lesson is the first in a series of three lessons that are intended to be taught as a unit.

Subject:
Engineering
Physics
Science
Material Type:
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Elizabeth Anthony
Jacob Teter
Scott Strobel
Date Added:
09/18/2014
What Is Newton's Second Law?
Read the Fine Print
Educational Use
Rating
0.0 stars

Students are introduced to Newton's second law of motion: force = mass x acceleration. After a review of force, types of forces and Newton's first law, Newton's second law of motion is presented. Both the mathematical equation and physical examples are discussed, including Atwood's Machine to illustrate the principle. Students come to understand that an object's acceleration depends on its mass and the strength of the unbalanced force acting upon it. They also learn that Newton's second law is commonly used by engineers as they design machines, structures and products, everything from towers and bridges to bicycles, cribs and pinball machines. This lesson is the second in a series of three lessons that are intended to be taught as a unit.

Subject:
Engineering
Physics
Science
Material Type:
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Elizabeth Anthony
Jacob Teter
Scott Strobel
Date Added:
09/18/2014
What Is Newton's Third Law?
Read the Fine Print
Educational Use
Rating
0.0 stars

Students are introduced to Newton's third law of motion: For every action, there is an equal and opposite reaction. They practice identifying action-reaction force pairs for a variety of real-world examples, and draw and explain simplified free-body diagram vectors (arrows) of force, velocity and acceleration for them. They also learn that engineers apply Newton's third law and an understanding of reaction forces when designing a wide range of creations, from rockets and aircraft to door knobs, rifles and medicine delivery systems. This lesson is the third in a series of three lessons intended to be taught prior to a culminating associated activity to complete the unit.

Subject:
Engineering
Physics
Science
Material Type:
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Elizabeth Anthony
Jacob Teter
Scott Strobel
Date Added:
09/18/2014
What Is "Weightlessness"?
Read the Fine Print
Educational Use
Rating
0.0 stars

There's no need to don a space suit if you want to experience weightlessness. In this video segment adapted from ZOOM, two members of the cast drop a cup of water with holes in it to demonstrate how free fall can create a momentary condition of "weightlessness".
Recommended for: Grades K-8

Subject:
Chemistry
Physics
Science
Material Type:
Activity/Lab
Provider:
PBS LearningMedia
Author:
National Science Foundation
WGBH Educational Foundation
Date Added:
01/22/2004
What Is the Best Insulator: Air, Styrofoam, Foil or Cotton?
Read the Fine Print
Educational Use
Rating
0.0 stars

That heat flows from hot to cold is an unavoidable truth of life. People have put a lot of effort into stopping this natural physical behavior, however all they have been able to do is slow the process. Student teams investigate the properties of insulators in their attempts to keep cups of water from freezing, and once frozen, to keep them from melting.

Subject:
Engineering
Physics
Science
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
09/18/2014
What Makes Airplanes Fly?
Read the Fine Print
Educational Use
Rating
0.0 stars

Students begin to explore the idea of a force. To further their understanding of drag, gravity and weight, they conduct activities that model the behavior of parachutes and helicopters. An associated literacy activity engages the class to recreate the Wright brothers' first flight in the style of the "You Are There" television series.

Subject:
Engineering
Physics
Science
Material Type:
Activity/Lab
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Ben Heavner
Denise Carlson
Malinda Schaefer Zarske
Sabre Duren
Date Added:
09/18/2014
What Makes Up a Color?
Read the Fine Print
Educational Use
Rating
0.0 stars

As a part of the research and revise step of the Legacy Cycle, this lesson provides students with information they will need later on to be able to average pixels to simulate blurring in the peripheral plane of vision. Students learn why image color becomes important as we distort the outer boundaries of an image and have to interpolate pixels to fill in gaps created from our algorithm. Students learn what a digital image is, what pixels are, and how to convert between RGB and hexadecimal values.

Subject:
Engineering
Physics
Science
Material Type:
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Anna Goncharova
Date Added:
09/18/2014
What a Drag!
Read the Fine Print
Educational Use
Rating
0.0 stars

The purpose of this activity is to demonstrate how drag affects falling objects. Students will make a variety of shapes out of paper and see how size and shape affects the speed with which their paper shapes fall.

Subject:
Engineering
Physics
Science
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Bailey Jones
Chris Yakacki
Denise Carlson
Malinda Schaefer Zarske
Matt Lundberg
Date Added:
09/18/2014
What a Drag! Lesson
Read the Fine Print
Educational Use
Rating
0.0 stars

Students learn about friction and drag two different forces that convert energy of motion to heat. Both forces can act on a moving object and decrease its velocity. Students learn examples of friction and drag, and suggest ways to reduce the impact of these forces. The equation that governs common frictional forces is introduced, and during a hands-on activity, students experimentally measure a coefficient of friction.

Subject:
Engineering
Physics
Science
Material Type:
Activity/Lab
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Alex Conner
Geoffrey Hill
Janet Yowell
Malinda Schaefer Zarske
Tom Rutkowski
Date Added:
09/18/2014
What are Dark Matter and Dark Energy?
Unrestricted Use
Public Domain
Rating
0.0 stars

In this Science 101 video, postdoctoral researchers Gillian Beltz-Mohrmann and Florian Kéruzoré explore two of the biggest mysteries in science: dark matter and dark energy. These strange influences seem to be stretching the universe apart and clumping stuff together in unexpected ways. Together, they make up a whopping 95% of the universe, but because we can’t see or touch them, we don’t know what they are

Subject:
Physics
Science
Material Type:
Audio/Video
Provider:
Argonne National Laboratory
Provider Set:
Science101
Author:
Argonne National Laboratory
Date Added:
11/08/2024
What is Energy?
Read the Fine Print
Educational Use
Rating
0.0 stars

With an introduction to the ideas of energy, students discuss specific types of energy and the practical sources of energy. Hands-on activities help them identify types of energy in their surroundings and enhance their understanding of energy.

Subject:
Engineering
Physics
Science
Material Type:
Activity/Lab
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Denise Carlson
Malinda Schaefer Zarske
Natalie Mach
Sharon D. Perez-Suarez
Date Added:
09/18/2014
What is Nanoscience?
Unrestricted Use
Public Domain
Rating
0.0 stars

In this Science 101: What is Nanoscience video, assistant scientist Jie Xu explains what nanoscience is, and how it is being applied at Argonne's Center for Nanoscale Materials (CNM), a Department of Energy Office of Science User Facility.

Subject:
Chemistry
Engineering
Physics
Science
Material Type:
Audio/Video
Provider:
Argonne National Laboratory
Provider Set:
Science101
Author:
Argonne National Laboratory
Date Added:
11/08/2024
What is Nuclear Energy?
Unrestricted Use
Public Domain
Rating
0.0 stars

In this part of our series, Roger Blomquist, a Principal Nuclear Engineer in the Nuclear Engineering Division, breaks down nuclear energy—the world’s largest and most reliable source of clean energy.

Subject:
Chemistry
Physics
Science
Material Type:
Audio/Video
Provider:
Argonne National Laboratory
Provider Set:
Science101
Author:
Argonne National Laboratory
Date Added:
11/08/2024
What is a Molecule?
Read the Fine Print
Educational Use
Rating
0.0 stars

This video/animation shows that a molecule of water is made up of oxygen and hydrogen atoms. When oxygen and hydrogen atoms exist alone, their properties are different from the properties they have when they are chemically combined to form a water molecule.

Subject:
Chemistry
Physics
Science
Material Type:
Lecture
Provider:
PBS LearningMedia
Provider Set:
WPSU
Author:
National Science Foundation
WPSU
Date Added:
04/09/2007