Simulation of Falling Ball Modeled with Lagrange Method in MATLAB Simulink -Simscape

$172.90 $57.63 MXN

๐Ÿ“ฆ Product Description

๐Ÿงฎ Experience Physics in Motion with MATLAB!
This simulation models the free fall of a ball using the Lagrangian method, implemented in MATLAB Simulink Simscape. Ideal for students and researchers exploring mechanics, dynamics, and mathematical modeling, this system demonstrates how kinetic and potential energies govern motion in a gravity-driven system.
With clean visuals, real-time simulation, and Simscape modeling blocks โ€” it's a perfect educational tool and a practical reference for anyone learning control theory, dynamics, or energy-based modeling.
๐Ÿ“˜ Whatโ€™s Included:
โœ… MATLAB Simulink Simscape model (.slx)
โœ… System modeled using Lagrangian dynamics
โœ… Visualized motion of falling ball
โœ… Customizable parameters (mass, gravity, initial height)
โœ… Scope outputs showing position, velocity, and acceleration
โœ… No .m file required โ€” logic built entirely into Simulink
โœ… Clean animation and reusable block structure
โš™๏ธ Technical Features:
Modeled using Kinetic + Potential Energy equations
Euler-Lagrange equation implementation
Gravity and motion effects fully simulated
Based on energy-based physics principles
Great for educational demonstrations & control applications
๐ŸŽฏ Best For:
Mechanical & control systems students
Engineering educators & professors
Researchers modeling physical systems
Anyone learning about Lagrangian mechanics
๐Ÿ’ก Learning Outcomes:
Understand energy-based modeling with Lagrange equations
Learn how to simulate falling objects in Simscape
Analyze motion using scope signals
Customize models for your own mechanics projects
๐Ÿ“ง Need help?
Email: mregnineer294@gmail.com
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๐Ÿ“ท Instagram: @engrprogrammer2494
โ–ถ๏ธ YouTube: @engrprogrammer
Thank you for supporting independent engineering content โ€” enjoy simulating!
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