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Class Elements of Mechanical Engineering

  • Presentation

    Presentation

    Learn how to apply Mechanics as a tool in the analysis of engineering systems, developing its capabilities of study multi-component systems, in a rational and coherent way, transmitting the concepts of the mechanics of rigid bodies, which can be used to model in a correct and appropriate way the real systems or their components.

  • Code

    Code

    ULHT41-11519
  • Syllabus

    Syllabus

    CP1. General Characteristics: Mechanics, fundamental concepts, units of measure, SI of units, numerical calculations, general analysis procedures.
    CP2. Force vectors: scalars and vectors, vector operations, vector addition of forces, Cartesian vectors, position vectors, scalar product.
    CP3. Equilibrium of a Particle: equilibrium condition, free body diagram, coplanar and three-dimensional force systems.
    CP4. Resulting from a system of forces: moment of a force, vector product, the beginning of moments, moment of a binary, simplification.
    CP5. Balance of a Rigid Body: equilibrium conditions, free body diagram, equilibrium equations, static determination.
    CP6. Structural Analysis: trusses, methods of nodes and sections, structures and machines.
    CP7. Internal Forces: equations and diagrams of cutting effort and deflector moment, relationships with distributed load.
     

  • Objectives

    Objectives

    Having as fundamental objective, to enable the student to be able to from real mechanical structures or systems, submitted to efforts, to create free body models that describe their mechanical behavior in static equilibrium, the following learning objectives (OA) are listed:
    OA1. Transmit to students the knowledge of the mechanics of rigid bodies and that they can use to model the real systems or their components.
    OA2. Understand and know how to apply static equilibrium conditions in structural components and mechanical systems.
    OA3. Perform the analysis of reticulated structures.

  • References

    References

    • R. C. Hibbeler, Mecânica para Engenharia - Estática, 12ed. Pearson, 2011
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