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Lecture
Mechanical Construction I: Mechanical Behavior & Assemblies
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Related lectures (53)
Transmission: Functions
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Explores movement transformation in mechanisms, angle transmission, and different types of transmissions and couplings.
Mechanical Construction I: Basics and Assemblies
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Covers the basics of mechanical construction and assembly techniques using tools like circlips and shaft keys.
Mechanical Construction Basics
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Introduces the basics of mechanical construction, focusing on international standards, drawing frameworks, and graphical elements.
Mechanical Construction I: Basics and Applications
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Explores the basics of mechanical construction, focusing on threaded holes, screw dimensioning, and assembly solutions.
Mechanical Construction I: Fundamental Principles of Dimensioning
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Delves into the fundamental principles of dimensioning and cutting in mechanical construction, emphasizing quality and cost-effectiveness.
Mechanism Design: Flexible Guiding and Energy Analysis
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Explores a mechanical solution with a four-bar linkage mechanism and flexible guiding.
Mechanical Construction I: Assembly Solutions
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Discusses static assembly solutions in mechanical construction, emphasizing obstacle-based connections over static friction.
Constraints in Structural Mechanics: Determinacy and Indeterminacy
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Discusses hyperstatic and hypostatic systems, focusing on constraints and their impact on structural mechanics.
Mechanical Systems: Friction and Bolted Assemblies
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Discusses friction laws and bolted assemblies in mechanical systems, emphasizing their applications in engineering design and analysis.
Flexible Guiding: Design Principles
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Explores flexible guiding principles for rectilinear movements and suppression of internal degrees-of-freedom in mechanisms, including corner cube mechanisms and butterfly pivot.
Suspension Design for EPFL Racing Team
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Discusses the design of a high-performance suspension system for a formula student race car, emphasizing teamwork and technical skills.
Advanced Physics I
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Explores kinematics, vectors, non-Cartesian coordinates, and the motion of charged particles in electric and magnetic fields.
Continuum Mechanics: Forces and Deformation
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Covers the basics of continuum mechanics, including forces transmission, energy conservation, and body motion geometry.
Design of Mechanisms: Buckled Beam Mechanisms
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Covers the design and application of flexure mechanisms using buckled beams in engineering.
Structural Mechanics Principles: Equilibrium and Stability
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Explores the principles of structural mechanics, including internal loads, equilibrium stability, and the superposition principle.
Untitled
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Kinematic Chains and Dynamics of Mechanical Systems
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Explores kinematic chains, dynamics of mechanical systems, laws of space, and speed characterization.
Structures and Mechanisms: Opening a Box
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Explores the analysis of structures and mechanisms through a sample problem of opening a box with a string-held lid.
Buckling of Straight Beams
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Explores the buckling phenomenon in straight beams due to material breakage or buckling stress being exceeded.
Mechanical Systems Dynamics: Modeling and Analysis
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Explores the dynamics of mechanical systems, emphasizing modeling techniques and the impact of deformation and inertia forces.
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