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Collision Course!
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This is a PBL project that had students build a "collision contraption" to be used as the basis for understanding the concepts of impulse and momentum. It was specifically designed to help students increase their depth of knowledge of impulse, momentum, and the differences in energy and momentum conservation between elastic and inelastic collisions. The project required students to design, build, and then use as a basis to prove their applied mastery of impulse and momentum, a contraption that would accurately predict the 2-dimensional motion of colliding objects, as well as to demonstrate the value of modern automobile design features in terms of safety. Note that the project was designed and delivered per the North Carolina honors Physics curriculum and it can be customized to meet your own specific curriculum needs and resources.

Subject:
Physics
Material Type:
Lesson Plan
Author:
Ben Owens
Date Added:
12/21/2018
Dynamics
Conditional Remix & Share Permitted
CC BY-NC-SA
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This course covers the fundamentals of Newtonian mechanics, including kinematics, motion relative to accelerated reference frames, work and energy, impulse and momentum, 2D and 3D rigid body dynamics. The course pays special attention to applications in aerospace engineering including introductory topics in orbital mechanics, flight dynamics, inertial navigation and attitude dynamics. By the end of the semester, students should be able to construct idealized (particle and rigid body) dynamical models and predict model response to applied forces using Newtonian mechanics.

Subject:
Applied Science
Engineering
Physical Science
Physics
Material Type:
Full Course
Provider Set:
MIT OpenCourseWare
Author:
Deyst, John
Greitzer, Edward
Widnall, Sheila
Date Added:
09/01/2009