Source: Nicholas Timmons, Asantha Cooray, PhD, Department of Physics & Astronomy, School of Physical Sciences, University of California, Irvine, CA
The goal of this experiment is to test the concept of the conservation of momentum. By setting up a surface with very little friction, collisions between moving objects can be studied, including their initial and final momenta.
The conservation of momentum is one of the most important laws in physics. When something is conserved in physics, the initial value is equal to the final value. For momentum, this means that the total initial momentum of a system will be equal to the total final momentum. Newton's second law states that the force on an object will be equal to the change in the object's momentum with time. This fact, combined with the idea that momentum is conserved, underpins the workings of classical mechanics and is a powerful problem-solving tool.
1. Understanding the photogate timer.
Table 1. Results from two gliders of equal mass.
Glider (trial) |
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Application and Summary Without momentum conservation, rockets would never leave the ground. Rockets do not actually push against anything-they rely on thrust to lift off. Initially, the fuel of a rocket and the rocket itself are motionless and have zero momentum. When launching, the rocket propels spent fuel out very rapidly. This spent fuel has mass and momentum. If the final momentum must be equal to the initial momentum (zero) then there must be some momentum in the opposite direction of the discarded fuel. Thus, the rocket is Tags Skip to... Videos from this collection: ![]() Now Playing Conservation of MomentumPhysics I 43.0K Views ![]() Newton's Laws of MotionPhysics I 74.9K Views ![]() Force and AccelerationPhysics I 78.3K Views ![]() Vectors in Multiple DirectionsPhysics I 181.8K Views ![]() Kinematics and Projectile MotionPhysics I 72.0K Views ![]() Newton's Law of Universal GravitationPhysics I 189.8K Views ![]() FrictionPhysics I 52.5K Views ![]() Hooke's Law and Simple Harmonic MotionPhysics I 61.0K Views ![]() Equilibrium and Free-body DiagramsPhysics I 37.2K Views ![]() TorquePhysics I 24.0K Views ![]() Rotational InertiaPhysics I 43.3K Views ![]() Angular MomentumPhysics I 35.6K Views ![]() Energy and WorkPhysics I 49.4K Views ![]() EnthalpyPhysics I 59.5K Views ![]() EntropyPhysics I 17.5K Views ABOUT JoVE Copyright © 2025 MyJoVE Corporation. All rights reserved |