Curated OER
Force/Newton's Laws/Friction
Middle schoolers describe how to recognize a force, define balanced and net forces, state Newton's first law of motion, explain why friction works, state Newton's second Law of Motion, and explain why the direction of force is important.
Curated OER
Discovery Science Library: The Basics Physical Science
Middle schoolers examine friction and gravity. affect four sports. In this scientific discovery lesson, students examine how friction and gravity affect sports. They discuss, write, and illustrate the effect of different forces on...
Curated OER
Changing Ramp Heights
Students conduct an experiment to determine how the change in ramp height affects the distances a ball is able to move a stationary cup. Data is collected from several trials and recorded and analyzed.
Curated OER
Wave Action
In this waves worksheet, learners compare the characteristics of sound and light waves and determine the wavelength, amplitude, and speed of a wave. This worksheet has 9 problems to solve.
Curated OER
Air Has Pressure
Seventh graders analyze evidence about particles and the exertion of air pressure. They observe an experiment with a hard boiled egg. fire and a bottle to discover the heating, cooling, and speed of air particles. They write explanations...
Curated OER
Physics Rewind
Eighth graders differentiate speed and velocity. In this physics lesson, 8th graders explain Newton's laws of motion. They calculate speed using a mathematical formula.
Curated OER
Moving Along
Students are introduced to the concept of motion. In groups, they practice calculating the rate, time, and distance of various objects on a variety of surfaces. To end the lesson, they apply the same principles to those objects moving...
Curated OER
Graphing Your Motion-Day 1
Ninth graders explore the concepts of motion, velocity and acceleration through graphing their own movement using LoggerPro. They become more familiar with the computer technology. Students explore graphing in real time and graph on...
Curated OER
Numerical Determination of Drag Coefficients
Pupils create a video of an object falling with a drag. In this physics lesson plan, students calculate drag coefficient using data from Logger Pro. They calculate velocity and acceleration of the object.
Curated OER
Capturing the Wind
Students collect and analyze data about wind speed. They build a Lego wind sail and measure the wind speed with a rotation sensor. They use software to analyze the data.
Curated OER
Weighted Averages
Weighted averages can be tricky to explain! However, this study guide makes it easy for teachers by including definitions, explanations, and breaking down problems into three steps. Includes mixture problems and uniform motion problems.
Curated OER
Unit II: Worksheet 2 - Velocity vs. Time Graphs
On the first of two pages, physics aces graph velocity versus time on sets of axes. On the second page, they look at graphs of position versus time and then draw velocity versus time on graphs right next to them. This is good practice in...
The Science Spot
The Wave Exercise
During a instructional activity on wave motion, physical science participants basically act out the waves as a group. Through their movements, the amplitude, speed, frequency, and wavelength are all identified. Ideas for modeling the...
Curated OER
Unit III: Worksheet 4 - Uniform Acceleration
Eight problems require general physics recruits to calculate acceleration or distance traveled. They read the situations involving cars and buses, running bears, downhill skiers, and a rock slide and then get to work. Provide this as a...
Physics Classroom
Action-Reaction Lab
Computer-interfaced motion detectors are required to carry out this inquiry. It is a new twist on exploring motion with plunger carts: they are set back-to-back and then propelled away from each other. Their velocities are measured, and...
Columbus City Schools
May the Force Be with You
You won't have to force your classes to complete these engaging activities! Through exploration, young scientists learn that force has both magnitude and direction. They draw force diagrams, investigate force models, and complete a...
Exploratorium
Depth Spinner
Put a new twist on your collection of optical illusion activities. Affix the linked printable spiral to a drill, record player, or some other rotating tool. Have learners stare at the spinning disk for only 15 seconds and then look away....
EngageNY
Graphs of Quadratic Functions
How high is too high for a belly flop? Learners analyze data to model the world record belly flop using a quadratic equation. They create a graph and analyze the key features and apply them to the context of the video.
Curated OER
As the Wheel Turns
This is not your typical Ferris wheel problem. In this exercise, your class will combine their knowledge of sinusoidal functions as well as linear motion to come up with parametric equations that model the position of a point on the edge...
Curated OER
Waves
An incredibly colorful PowerPoint presents all the facts and definitions about waves that you could need for beginning physical scientists. There are several useful links to online animations of wave action. This may have been produced...
Institute of Electrical and Electronics Engineers
Pendulum Time
Take your time with this lesson. Junior engineers read about different types of clocks and then work together to build a pendulum time-keeper. There are no hints as to how they might go about accomplishing this complex task, so you may...
Curated OER
Forces
An interesting worksheet on force and inertia is here for your young scientists. The worksheet is meant to be used as a vehicle for oral interviews. There are three questions about force and seven questions regarding intertia. Very good!
Curated OER
Slam On the Brakes!
Fifth graders study the concept of momentum and its application by Newton in his studies. They view a demonstration and complete an experiment with toy cars on a racetrack that shows them the properties of momentum and how velocity and...
Curated OER
Unit V: Worksheet 1 - Constant Force
In a force diagram, a stick figure man in an elevator takes a ride. Physics analysts work out the force exerted on him by the elevator floor. As the acceleration changes, they draw new force diagrams and compute new force values. This...
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