Search result for Newtonian mechanics Online Courses & Certifications
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Introductory Physics — Part 1: Mechanics and Waves
by Seonho Choi- 0.0
4 Weeks
This course covers the basics of Newtonian mechanics, including oscillations and wave phenomena. Using minimal algebra without calculus, most of the key concepts in classical mechanics have been explained. The course covers the basics of Newtonian mechanics including oscillations and wave phenomena....
How Stuff Moves, Part 3: Wave Motion
by Peter Saeta , Elizabeth Connolly- 0.0
4 Weeks
A Calculus-based introduction to Newtonian mechanics that emphasizes problem-solving. Mechanics is the study of how things move. This is the third in a 3-part series of courses that parallels the second-semester mechanics course taught at Harvey Mudd College....
$50
How Stuff Moves, Part 2: Angular Motion
by Peter Saeta , Elizabeth Connolly- 0.0
4 Weeks
A Calculus-based introduction to Newtonian mechanics that emphasizes problem-solving. Mechanics is the study of how things move. This is the second in a 3-part series of courses that parallels the second-semester mechanics course taught at Harvey Mudd College....
$50
How Stuff Moves, Part 1: Linear Motion
by Peter Saeta , Elizabeth Connolly- 0.0
4 Weeks
A Calculus-based introduction to Newtonian mechanics that emphasizes problem-solving. Mechanics is the study of how things move. This is the first in a 3-part series of courses that parallels the second-semester mechanics course taught at Harvey Mudd College....
$50
Advanced Introductory Classical Mechanics
by David E. Pritchard , Zhongzhou Chen , Chris Chudzicki- 0.0
13 Weeks
This is a college-level Introductory Newtonian Mechanics course designed for both students and teachers. This college-level, calculus-based Introductory Newtonian Mechanics course covers all of the topics and learning objectives specified in the College Board Course Description for Advanced Placement®Physics C (Mechanics). Newtonian Mechanics beyond a first-year introductory course A unified overview of the structure of Mechanics...
Mechanics ReView
by David E. Pritchard , Zhongzhou Chen- 0.0
4 Weeks
Mechanics ReView is an MIT-level introductory mechanics class emphasizing a strategic problem-solving approach. Mechanics ReView is a second look at introductory Newtonian Mechanics. It will give you a unified overview of mechanics that will dramatically increase your problem-solving ability. Newtonian mechanics is the study of how forces change the motion of objects. Newtonian Mechanics beyond a first-year introductory course...
Modeling and simulation of multibody systems
by Paul Fisette , Maxime Raison- 0.0
14 Weeks
Despite the intrinsic complexity of such systems in terms of morphology and motions, basic skills in Newtonian mechanics, linear algebra and numerical methods are sufficient to model them, provided that the endless and tedious computation related to their internal kinematics and dynamics are at our disposal....
$50
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Learn Unity's Entity Component System to Optimise Your Games
by Penny de Byl- 4.7
13 hours on-demand video
You will learn about collisions, triggers, camera tracking, bullet physics and the basics of recreating Newtonian physics for moving dynamic and kinematic entities....
$14.99
Statistical Mechanics: Algorithms and Computations
by Werner Krauth- 4.8
Approx. 16 hours to complete
Hard disks: From Classical Mechanics to Statistical Mechanics Lecture 2: Hard disks: from Classical Mechanics to Statistical Mechanics Density matrices and Path integrals (Quantum Statistical mechanics 1/3) Homework session 5: Quantum statistical mechanics and Quantum Monte Carlo Lévy Quantum Paths (Quantum Statistical mechanics 2/3) Bose-Einstein condensation (Quantum Statistical mechanics 3/3)...
Kinetics: Studying Spacecraft Motion
by Hanspeter Schaub- 4.8
Approx. 21 hours to complete
As they tumble through space, objects like spacecraft move in dynamical ways. Understanding and predicting the equations that represent that motion is critical to the safety and efficacy of spacecraft mission development. After this course, you will be able to. . . * Derive equations of motion for systems in which various momentum exchange devices are present...