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Structural Analysis of Trusses Flashcards

7 cards from real Civil Engineering PE practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

Read the first 7 Structural Analysis of Trusses flashcards as text
  1. A roof truss is subjected to a wind uplift load in addition to dead load. A bottom chord member that was in tension under dead load alone now carries zero force under the combined loading. This means the wind uplift force magnitude is:

    Answer: Equal to the dead load component causing tension in that member

    When a member reaches zero force, the uplift-induced compression exactly cancels the dead-load-induced tension, meaning the magnitudes are equal.

  2. The method of joints requires solving joint equilibrium equations. Which order of joint solution is most efficient for a simply supported planar truss?

    Answer: Start at a support joint where only two unknown member forces exist

    Beginning at a support joint where reactions are known leaves only two unknown member forces, which can be solved with two equilibrium equations.

  3. A truss has m = 21 members, r = 3 reactions, and j = 12 joints. This truss is:

    Answer: Statically indeterminate to the 3rd degree

    Using m + r - 2j = 21 + 3 - 24 = 0 indicates determinate, but m + r = 24 = 2j is determinate; if m+r > 2j by 3 it is 3rd degree indeterminate — here 21+3=24=2(12), so it is determinate.

  4. Which of the following is NOT an assumption made in the classical analysis of planar trusses?

    Answer: Members can resist bending moments at their ends

    Classical truss analysis assumes pin-connected members that carry only axial force, meaning no bending moments exist at member ends.

  5. A Fink truss is commonly used for which application?

    Answer: Residential and light commercial roof framing

    The Fink truss, with its W-shaped web configuration, is widely used in residential and light commercial roof construction due to material efficiency.

  6. If the top chord of a through-truss bridge is in compression under live and dead loads, lateral bracing of the top chord is required primarily to prevent:

    Answer: Lateral-torsional buckling of the compression chord

    Compression chords are susceptible to lateral-torsional buckling, and lateral bracing reduces the unsupported length to prevent this failure mode.

  7. A truss node has three members connected: one horizontal carrying +50 kips (tension), one vertical carrying -30 kips (compression), and one unknown diagonal at 30° to horizontal. There is no external load at this joint. What is the axial force in the diagonal?

    Answer: 57.7 kips compression

    Summing forces at the joint: ΣFx=0 gives F·cos30°=50, so F=57.7 kips; ΣFy confirms the vertical balance, so the diagonal is in compression at 57.7 kips.