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View the length-wavelength-frequency relationships.
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Alter the length of the string, the amplitude of the wave pattern and the harmonic number. Soon you will recognize why our conception of length breaks down in a relativistic world.Įxplore the standing wave patterns for a stringed instruments. Change the speed of the spaceship and watch the dimensions of the billboard change as viewed by observers on Earth. A spaceship carrying a billboard zooms by Earth. Investigate Einstein's concept of length contraction. Soon you will recognize why our conception of time breaks down in a relativistic world. Set the speed of the spaceship and watch from Earth as the spaceship zooms by. A pulse of light reflects off two mirrors in a spaceship. Investigate Einstein's concept of time dilation. Alter the eccentricity of the orbit and view the effect upon the shape of the ellipse. Investigate the elliptical motion of a satellite orbiting a central body and the nature of the velocity and force vectors. Learn about the concept of universal gravitation as you explore the variables which effect the force of gravity between an object and a planet. Watch your speed on the curves and you'll be a winner.Īnalyze the motion of an object moving in a circle at a constant speed and investigate the directional nature of velocity and acceleration and the effect of speed and radius upon the acceleration. Test your understanding of the relationship between the net force and the resulting motion as you attempt to guide a car around an oval race track in the least number of moves. View: Animation || Activity Sheet || Data Sheet Three types of problems are presented with randomly generated numbers. Practice your skill at solving horizontally-launched projectile problems by seeing if you can hit a target. Alter the launch height, launch speed and launch angle and explore the effect of such alterations on the time of flight, range, and overall trajectory. Investigate the nature of a projectile using this projectile simulator. Alter the boat speed and heading, the river width and current speed explore the effect of these changes upon the time to cross the river and the distance traveled downstream. Twelve different descriptions of a physical situation are presented your goal is to determine the type and relative magnitude of the forces acting upon the described object.Įxplore concepts of relative velocity by investigating the motion of a boat across a river in the presence of a current. Practice your skill at constructing free-body diagrams for a given physical situation. When finished, take a quiz to check your understanding. Ten different velocity-time graphs are presented your goal is to enter motion parameters which will result in a motion which matches the graph.Īnalyze the motion of a two-stage rocket and relate the motion to the features of a position-time and velocity-time graphs. Practice your skill at interpreting graphs.
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Answers can be revised until you have perfected your understanding. Once you've completed the matching process, check your answers and receive immediate feedback. Refine your understanding of the graphical descriptions of motion as you match 11 position-time and velocity-time graphs to 11 on-screen animations. Refine your understanding of the language of kinematics as you match 11 verbal descriptions of motion to 11 on-screen animations. Links to the animation pages and the activity sheets are provided below. Such activity sheets were designed so that the animation could become a classroom-ready activity for use by students and teachers. Many of the animations are accompanied by an activity sheet which provides directions and procedural information for users. Users can manipulate a variable and observe the outcome of the change on the physical situation. The Shockwave Physics Studios consists of a collection of pages which feature interactive Shockwave files that simulate a physical situation.