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⏱ 2 oras 42 min📚 27 aralin🎧 Audio version
Applied Strength of Materials and Theory of Machines
Master the fundamental concepts of stress, strain, kinematics, and dynamics to systematically analyze and solve core mechanical engineering problems.
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Tungkol sa kursong ito
Many aspiring engineers struggle to bridge the gap between theoretical mechanics and practical problem solving. This course provides a clear, systematic approach to mastering the foundational concepts of structural mechanics and machine dynamics.
By the end of this course, you will have a robust understanding of both Strength of Materials (SOM) and Theory of Machines (TOM). You will be able to confidently apply fundamental equations to analyze structural loads, material failure criteria, and the motion and forces within mechanical linkages.
What you'll learn:
* Understand the concepts of stress, strain, and material properties under various loading conditions including tension, compression, and shear.
* Apply equilibrium equations to calculate internal forces, shear force, and bending moments in beams and simple structures.
* Analyze kinematic concepts including displacement, velocity, and acceleration for mechanisms such as linkages, cams, and gear trains.
* Practice fundamental dynamic analysis, including the calculation of inertia forces, torque, power transmission, and balancing rotating masses.
* Determine deflection, torsion, and buckling criteria for standard engineering components using established formulas and methods.
* Learn systematic methods for simplifying complex problems using fundamental assumptions and boundary conditions.
This text-based course begins by defining core terminology and assumptions in mechanics. It then progresses through fundamental statics and material behavior (SOM) before shifting to the analysis of motion, forces, and power transmission in mechanisms (TOM), concluding with advanced problem-solving techniques.
This course is designed for absolute beginners and students seeking a strong foundation in mechanical engineering principles. No prior knowledge of advanced mechanics or calculus beyond basic proficiency is required.
Start building your foundational knowledge in mechanical analysis today.
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