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Structural Analysis and Design Flashcards

6 cards from real Building Engineering practice questions. Tap to flip, then mark Knew It or Still Learning โ€” missed cards come back until you master them.

Read the first 6 Structural Analysis and Design flashcards as text
  1. What is a shear wall and what forces does it resist?

    Answer: A vertical structural panel that resists lateral (horizontal) forces in its plane

    Shear walls act as vertical cantilever beams to resist in-plane lateral forces from wind and seismic events, transferring them to the foundation.

  2. What is the purpose of rebar stirrups in a reinforced concrete beam?

    Answer: To resist diagonal shear stresses and confine longitudinal reinforcement

    Stirrups are closed loops of smaller diameter steel placed perpendicular to the beam span to resist diagonal tension cracking caused by shear forces.

  3. What is the concept of tributary area in structural load calculations?

    Answer: The floor area whose load is supported by a particular structural member

    Tributary area is the portion of floor or roof area assigned to each beam or column for load calculation purposes, based on the halfway point between adjacent members.

  4. What type of loading causes a beam to twist about its longitudinal axis?

    Answer: Torsional loading

    Torsion occurs when loads are applied off the beam's shear center, causing the member to twist and inducing shear stresses that must be resisted by the cross-section.

  5. What is the purpose of expansion joints in a large building structure?

    Answer: To allow thermal expansion and contraction without inducing stresses

    Expansion joints break the structure into independent segments that can expand and contract freely with temperature changes, preventing thermal stresses that could crack structural elements.

  6. What does the term 'ductility' mean in the context of seismic structural design?

    Answer: The ability of a structure to deform inelastically without sudden failure

    Ductile structures absorb seismic energy through controlled inelastic deformation (yielding) rather than brittle fracture, protecting occupants even when the structure is damaged.