Two wood box beams (beams A and B) have the same outside dimensions (200mm x 360mm) and the same thickness (t=20 mm) throughout, as shown in the Figure (3). Both beams are formed by nailing, with each nail having an allowable shear load of (250 N). The beams are designed for a shear force (V = 4.0 kN). (A) What is the maximum longitudinal spacing (SA) for the nails in beam (A)? (B) What is the maximum longitudinal spacing (SB) for the nails in beam (B)? (C) What is the largest shearing stress

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter10: Statically Indeterminate Beams
Section: Chapter Questions
Problem 10.4.33P: The cantilever beam AB shown in the figure is an S6 × 12.5 steel I-beam with E = 30 × 106 psi. The...
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Two wood box beams (beams A and B) have the same outside dimensions (200mm x 360mm) and the same thickness (t=20 mm) throughout, as shown in the Figure (3). Both beams are formed by nailing, with each nail having an allowable shear load of (250 N). The beams are designed for a shear force (V = 4.0 kN).
(A) What is the maximum longitudinal spacing (SA) for the nails in beam (A)?
(B) What is the maximum longitudinal spacing (SB) for the nails in beam (B)?
(C) What is the largest shearing stress

Q7: Two wood box beams (beams A and B) have
the same outside dimensions (200mm x 360mm)
and the same thickness (t=20 mm) throughout, as
shown in the Figure (3). Both beams are formed
by nailing, with each nail having an allowable
shear load of (250 N). The beams are designed for
a shear force (V = 4.0 kN).
(A) What is the maximum longitudinal spacing
(SA) for the nails in beam (A)?
(B) What is the maximum longitudinal spacing
(SB) for the nails in beam (B)?
(C) What is the largest shearing stress
B
360
mm
360
mm
20 mm
20 mm
200 mm
200 mm
Transcribed Image Text:Q7: Two wood box beams (beams A and B) have the same outside dimensions (200mm x 360mm) and the same thickness (t=20 mm) throughout, as shown in the Figure (3). Both beams are formed by nailing, with each nail having an allowable shear load of (250 N). The beams are designed for a shear force (V = 4.0 kN). (A) What is the maximum longitudinal spacing (SA) for the nails in beam (A)? (B) What is the maximum longitudinal spacing (SB) for the nails in beam (B)? (C) What is the largest shearing stress B 360 mm 360 mm 20 mm 20 mm 200 mm 200 mm
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