Problem 2: A beam is made of four rectangular boards nailed together as shown. Note that the nails at C are aligned horizontally, while the nails at D are aligned vertically. Each nail can support a shear force F, = 100 lb, and the entire beam cross section is subjected to an internal shear force V = 710 lb. (a) Determine the maximum spacing, s, for the horizontal nails. (b) Determine the maximum spacing, s', for the vertical nails. in. 10 in. 10 in. 1.5 in. 1 in. 1 in. 2 in.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Problem 2: A beam is made of four rectangular boards nailed together as shown. Note that the
nails at C are aligned horizontally, while the
nails at D are aligned vertically. Each nail
can support a shear force Fs = 100 lb, and
the entire beam cross section is subjected to
an internal shear force V = 710 lb.
(a) Determine the maximum spacing, s, for
the horizontal nails.
(b) Determine the maximum spacing, s', for
the vertical nails.
in.
10 in.
A
10 in.
BL
1 in.
KE
1.5 in.
1 in.
2 in.
Transcribed Image Text:Problem 2: A beam is made of four rectangular boards nailed together as shown. Note that the nails at C are aligned horizontally, while the nails at D are aligned vertically. Each nail can support a shear force Fs = 100 lb, and the entire beam cross section is subjected to an internal shear force V = 710 lb. (a) Determine the maximum spacing, s, for the horizontal nails. (b) Determine the maximum spacing, s', for the vertical nails. in. 10 in. A 10 in. BL 1 in. KE 1.5 in. 1 in. 2 in.
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