Curated OER
Numerical Determination of Drag Coefficients
Students create a video of an object falling with a drag. In this physics instructional activity, students calculate drag coefficient using data from Logger Pro. They calculate velocity and acceleration of the object.
Curated OER
Investigating Motion
Students determine velocity using the slope of a time distance graph. They investigate a motion cart using a CBR unit and a TI 83 calculator setup. Using the graph generated, they calculate velocity.
Curated OER
Speed Trap
Students conceptually explore motion graphing by producing motion at different speeds and directions. They experience the lab and then graph the motion of the truck at various speeds and directions. The procedures of velocity are...
Curated OER
I'm Inclined to See; Physics, Math, Science, Experiments, Graphs
Students discover the motion of a sphere on an inclined plane and discover basic relationships involving distance, time, speed(velocity), and acceleration.
Curated OER
Currents: Bad for Divers; Good for Corals
High schoolers describe, compare, and contrast major forces that drive ocean currents. They discuss the general effects of topography on current velocity. They discuss how velocity affects the ability
Curated OER
Animating Motion
Students apply what they recall about objects in motion by animati ng sequences of pictures that model a set of physical conditions. They animate the orbital motions of the Earth, the space shuttle, and the Moon based on calculations of...
Curated OER
Design a Bobsled
Students apply their knowledge of friction, drag, mass and gravity as they design, build, and test mini-bobsleds.
Curated OER
Double Toss
Students experiment with potential and kinetic energy. They design a device that will toss a ball at least 30 centimeters, catch it and to the ball up again.
Curated OER
Projectile Motion
A unique and useful presentation, this covers projectile motion for your general physics class. Many graphs display the vectors involved, and some even act as animations. Motion is broken down into its components and only then are the...
Texas State Energy Conservation Office
Investigation: Conservation of Energy
By rolling marbles down a six-foot length of track, physical scientists determine how much energy is lost to heat. It is recommended that you opt for the foam pipe insulation track because more friction slows the marble, allowing...
Curated OER
Motion Problems
In this motion worksheet, students complete motion word problems where they explain and define issues having to do with motion. Students complete 32 problems.
Sharp School
Newton’s Laws of Motion Project
After a review of all three of Newton's laws, physical scientists complete a choice project. They can create a book in which they collect pictures where the laws of motion are depicted, produce a PowerPoint presentation, or produce a...
Flipping Physics
AP Physics 1: Rotational Kinematics Review
A comprehensive review of the rotational kinematics covered by the AP Physics 1 test, this fast-paced video is designed to help scholars review material they have already been taught.
Curated OER
Chapter 6 - Practice Problems: Forces
Zip through 13 physics problems with force! Equations are printed in large text in the upper-right corner of the page. Pupils change friction forces, deal directly with Newton's second and third laws of motion, and name fundamental...
Flipping Physics
AP Physics 1: Equations to Memorize
Saving the best for last, the final video in the series of 12 covers all of the equations young physicists should memorize because they are not on the equation sheet provided at the time of AP Physics 1 exam. This fast-paced video even...
Curated OER
Investigating Newton's Second Law Of Motion
Students participate in a lesson that investigates Newton's Second Law of Motion. They conduct an experiment of observing balls that are rolled down a ramp. The lesson includes background information for the teacher for preparation and...
It's About Time
Circular Motion
Lead your class in this exciting activity to learn more about motion and its importance. Pupils learn about a centripetal and why it is required to maintain a constant speed in a circulating moving mass. They apply the equation for...
Flipping Physics
AP Physics 1: Simple Harmonic Motion Review
Does your class feel unprepared for the upcoming exam? Use this video to review the simple harmonic motion concepts that will appear on the AP Physics exam. While maintaining interest and a fast pace, the presenter not only reviews the...
Bowels Physics
Impulse and Momentum
Be impulsive with your high school physics class. Emerging physicists review the slide presentation and learn about impulse, momentum, collisions, and how each variable may be affected. They complete practice problems and conclude with a...
Curated OER
Waves
Although this was written to accompany a specific textbook, the information can illustrate wave motion for any advanced level physics course. The slides are simple, use plain but colorful fonts, and include diagrams and pictures to...
Curated OER
Bloodstain Pattern Simulations: A Physical Analysis
Students receive bloodstain pattern evidence from a crime scene. They answer a series of questions through inquiry, observation, measurement, and analysis. Pupils complete this challenge, by reconstructing the evidence through four...
Flipping Physics
AP Physics 1: Kinematics Review
Test takers stressing out over the upcoming exam? Help them prepare for the AP Physics i exam with this fast-paced video that includes a complete guide to everything related to kinematics. Also included are some common errors and...
Curated OER
Speed
Fifth and sixth graders practice working in pairs to determine whether they can walk with constant speed. They test themselves, collect their data, draw graphs with their data collected, manipulate the data, and then draw conclusions...
Curated OER
Worksheet 3: Graphing Speed and Time
In this graphing speed and time worksheet, learners answer 7 questions regarding graphing, speed, distance, derivatives, Newton's method and wheel radius.
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