CK-12 Foundation
Ck 12 Exploration Series: Simulations: Physics: Irwin 2 D
[Free Registration/Login Required] Learn about the trajectories in two dimensions through simulation and examples. Some of the concepts identified are motion and velocity.
Science Buddies
Science Buddies: Distance and Speed of Rolling Objects
This project is an experiment in classical physics. You'll be following in Galileo's footsteps, and investigating Newton's laws of motion, but you'll be taking advantage of modern video recording technology to make your measurements. The...
Khan Academy
Khan Academy: What Are the Kinematic Formulas?
Featured are the kinematic formulas or main equations you can use to analyze situations with constant acceleration.
OpenStax
Open Stax: Projectile Motion
The following interactive helps students understan how to identify and xplain the properties of a projectile, such as acceleration due to gravity, range, maximum height, and trajectory. They will determine the location and velocity of a...
TeachEngineering
Teach Engineering: Projectile Magic
Students watch video clips from October Sky and Harry Potter and the Sorcerer's Stone to learn about projectile motion. They explore the relationships between displacement, velocity and acceleration and calculate simple projectile...
University of Colorado
University of Colorado: Ph Et Interactive Simulations: Torque
Experiment how torque causes an object to rotate. This interactive simulation shows how angular acceleration, moment of inertia, angular momentum, and torque relate to one another.
TeachEngineering
Teach Engineering: Projectile Motion
Students are introduced to the concept of projectile motion, of which they are often familiar from life experiences,such as playing sports such as basketball or baseball, even though they may not understand the physics involved. Students...
NASA
Nasa: Beginner's Guide to Aerodynamics
This site from NASA uses a colorful graphic to illustrate why objects reach terminal velocity. Provides equation for the terminal velocity of an object. Graphic is accompanied by a simple explanation.
Department of Defense
Do Dea: Working With Parabolic Projectile Paths
Using the free-fall constants and gravity acceleration equations, we can determine many things about the position, velocity, and speed of a projectile. Here are a few examples and explanations. This is a great review for the AP Calculus...
Walter Fendt
Walter Fendt: Simple Pendulum
This app demonstrates how elongation, velocity, tangential acceleration, force, and energy are affected when a pendulum oscillates.
Walter Fendt
Walter Fendt: Movimiento Con Aceleracion Constante
A short interactive activity which allows you to visualize a constant acceleration. You can modify the initial position, the initial velocity and the acceleration.
NASA
Nasa: The Way Things Fall
This site from NASA compares free falling motion to falling with air resistance. Discusses Galileo's experiment. Explains why we believe all objects free fall with the same acceleration.
Texas Education Agency
Texas Gateway: Types of Motion
Students will distinguish between and/or interpret the types of motion.
Georgia Department of Education
Ga Virtual Learning: Ap Physics 1: One Dimensional Kinematics
Using only two of our fundamental units, time and displacement students will build a framework to predict the motion of objects, starting with one dimensional motion.
Stanford University
Stanford University: Conventionality of Simultaneity
This site from Stanford University is on the topic of simultaneity in relativity.
Texas Education Agency
Texas Gateway: Uniform Circular Motion and Gravitation: Problems and Exercises
This page offers a list of 50 problems/exercises to solve based on the content of Chapter 6: Uniform Circular Motion and Gravitation from the AP Physics online text.
Texas Education Agency
Texas Gateway: Ap Physics: Uniform Circular Motion and Gravitation: Questions
This is a list of 23 questions covering the major concepts of Chapter 6: Uniform Circular Motion and Gravitation from the AP Physics online text.
Science and Mathematics Initiative for Learning Enhancement (SMILE)
Smile: Sports in Physics: Measuring Velocity in a Mini Olympic
The Illinois Institute of Technology provides this site on Physics. It is a student lab investigation in which students compare the concept and quantity of velocity to that of acceleration. Includes directions, ideas for assessment, a...
Texas Instruments
Texas Instruments: Numb3 Rs: Seeing in the Dark
Based off of the hit television show NUMB3RS, this lesson has students try to emulate a time vs. distance graph on their graphing calculator using the CBR2. Next, the CBR2 is "swept" across an area in which three students are standing to...
Khan Academy
Khan Academy: Angled Launch Projectile Vectors
Can you predict how the components of projectile's velocity and acceleration change during their trajectory? This practice includes questions for students to test their problem solving skills with angled launch projectile vectors.
Science Education Resource Center at Carleton College
Serc: Centripetal Force Activity
In this physics activity, students will simulate a race car on a circular track. Velocity, acceleration, and force vectors will be analyzed at various places along the track. As the students progress in the activity, prompts for student...
Texas Instruments
Texas Instruments: Good Vibrations Activity Modeling Motion
The student will investigate Hooke's law and the position, velocity and acceleration of an object oscillating vertically on a spring.
Texas Instruments
Texas Instruments: Kinematics Investigation
In this activity, students solve trigonometric equations and investigate kinematics. They calculate and graph the displacement, velocity, and acceleration of trigonometric functions.
Texas Instruments
Texas Instruments: Collecting Ball Bounce Data
Many aspects relating to the motion of a bouncing ball can be modelled mathematically. The first stage in modelling the motion is to collect some data. The Calculator Base Laboratory or CBR is a motion detector that can be connected to a...
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