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Force Diagrams

For Teachers 9th - 12th
Seeming incomplete, this slide show introduces physical science novices to the balancing of forces and drawing force diagrams. The first seven slides work well to meet this purpose. The remaining slides, however, turn viewers over to...
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Motion Experiment

For Teachers 7th - 9th
Students experiment with the laws of motion. In this motion lesson plan, students explore Newton's Laws of Motion. Students work in groups experimenting with different objects and observing different types of motion.
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The Case of the Crooked Cartoon: Newton's Laws Set the Standard

For Teachers 8th - 9th
Students have the opportunity to use higher-level thinking skills and to apply their talents to previously learned material. It provides an opportunity for visual, auditory, and tactile/kinetic learners to utilize their particular...
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Newton's Third Law and Aircraft Propulsion

For Teachers 8th - 9th
Students research propulsion, graph data, and interpret the results.
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Santa Claus and Newton's Three Laws of Motion

For Teachers 3rd - 8th
Students read 3 creative scenarios about Santa Claus and choose which of the 3 laws of motion are being demonstrated in each.
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Newton's Second Law: Mass-Acceleration Relationship with Dynamics Carts

For Teachers 9th - 12th
Learners form their own hypothesis about the relationships between force, mass, and acceleration for their dynamics cart system. They collect data and express it in a graphical format to visualize the relationships.
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Unbalanced Forces and Velocity

For Students 8th - 10th
In this unbalanced forces and velocity instructional activity, students define 6 terms and solve 9 problems related to forces, velocity, speed, and motion.
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Blast Off!

For Teachers 4th
Fourth graders investigate the third law of motion. For this third law of motion lesson, 4th graders explore the forces necessary for a rocket to launch. Students compare and contrast propellant and fuel. Numerous resources are provided.
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Gravitational Acceleration

For Teachers 9th - 12th
Students investigate the interdependence of mass and gravitational acceleration using computer simulation. In this physics lesson, students derive the formula for acceleration due to gravity. They calculate air resistance on falling...
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Don't Crack Humpty

For Teachers 6th - 10th
Students investigate the engineering design process and the relationship between distance, time, and speed. Using a generic car base, small groups design a device that will protect an egg on or in the car as it is rolled down a ramp at...
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Planet Paths: Studying Planetary Orbital Paths

For Teachers 6th - 8th
Learners define and identify planetary orbit, ellipse, parabola, and hyperbola, and simulate Kepler's Second Law. They explore interactive websites demonstrating orbital motion and complete modeling activities.
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Projectile Motion

For Teachers 9th - 12th
Learners observe projectile motion and calculate the speed of a baseball based on the time and distance traveled. They record the time, measure the distance, and draw the path of the ball's travel on a data table.
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Medieval Catapults

For Teachers 10th - 12th
Students design and build a working catapult or trebuchet to explore the concepts of force, motion, and distance.
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Red Light, Green Light

For Teachers 5th - 7th
Learners investigate the friction between tires and the road and how it affects the movement of cars while driving. They discuss and define friction, experiment with sandpaper and wax paper to determine which material provides the least...
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Physics: Bounce - Projectile Motion and Collisions

For Teachers 4th - 6th
Students conduct and observe experiments in Newtonian mechanics, kinematics, and projectile motion. They analyze the motion of a ball rolling off a table, falling, and then bouncing. Students answer a series of questions analyzing the...
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Simple Machines

For Teachers 6th - 8th
Students engage in a lesson that is concerned with the concept of a simple machine and uses the law of motion to justify why they operate. Students explore the laws by constructing some simple machines to illustrate the concepts.
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Discovering Gravity: What Goes Up Must Come Down

For Teachers 3rd - 5th
Students observe falling objects. For this lesson about gravity, students work in groups to determine how objects fall. Students determine speed of objects falling and whether weight is a factor. Students understand the concept of gravity.
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Fly Me to the Moon!

For Students 11th - Higher Ed
In this Moon travel worksheet, students construct a simple rocket trajectory called the Hohmann Transfer orbit using a compass, string, paper and a pencil. Students solve 2 problems which include finding the number of hours it takes to...
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When Earth Fails: How Earth?s Physical Changes Cause Natural Disasters

For Teachers 7th - 12th
Students examine natural disasters and some safety measures that should be followed.  In this natural disaster activity students write a narrative, and research safety procedures.
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Pressure

For Students 6th - 8th
In this physics worksheet, students use the clues at the bottom of the sheet to complete the crossword related to pressure. There are 15 clues to solve in the puzzle.
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A Mysterious Roll-Back Can

For Teachers 6th - 8th
Students explore Newton and his Second Law by observing a demonstration involving a can that rolls away, then rolls back to where it started. They construct their own Come Back Can and describe how the cans work.
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Drop It!

For Teachers 8th
Eighth graders explore Newton's Law of Motion that states that an object at rest stay at rest unless acted upon by an outside force and that an object in motion stay in motion unless acted upon by an outside force.
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Space Ship Pilot

For Teachers 9th - 12th
Young scholars visualize the relation between acceleration and velocity in 2 dimensions. They are introduced to Newton's first law,and Newton's second law. Students work on an exploration activity where they condsider an example of a...
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How Do Airplanes Get Off the Ground

For Teachers 9th - 12th
Pupils construct various types of paper airplanes, exploring action and reaction forces by conducting a paper airplane rodeo. Students then discuss how Newton's Third Law of Motion affected their planes.

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