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In this technical demonstration, we explore how to effectively manage and analyze Mass Properties and the Center of Gravity (CG) within a landing gear sub-assembly. ✈️⚙️ Tracking mass is critical for engineering accuracy, and this video covers the transition from old-school manual property tracking to modern automated tools. What you’ll learn in this tutorial: Individual vs. System Level Tracking: How to view mass properties for single components or the entire sub-assembly [00:47]. Visualizing Center of Gravity: Learning how to display CG in X, Y, and Z directions and isolating specific axes [01:20]. Real-time Mass Updates: Watch how moving a component within an assembly instantly shifts the center of gravity [04:13]. Handling Design Changes: How to identify 'unreliable' mass data after a design update and how to refresh the status [05:47]. User-Defined Mass for Vendor Parts: How to manually assert mass values for supplied parts without 3D geometry calculations [06:22]. Whether you're working in AutoCAD, SolidWorks, or Siemens NX, understanding these core principles of mass property assertion and calculation is essential for any Mechanical Engineering student or professional. Don't forget to Like and Subscribe for more CAD tutorials and engineering insights! #CAD #MechanicalEngineering #SolidWorks #SiemensNX #EngineeringDesign #LandingGear #3DModeling #MassProperties