The gate in Fig. 3-50a (shown in raised position) weig gravity is 1.5 ft from the left face and 2.0 ft above the does the gate just begin to swing up (rotate counterclo Ro 2 S0h ond eoncider 1 ft

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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9:06
A researchgate.net
3.61
The gate in Fig. 3-50a (shown in raised position) weigi
gravity is 1.5 ft from the left face and 2.0 ft above the
does the gate just begin to swing up (rotate counterclo
I Refer to Fig. 3-50b and consider 1 ft of length. F =
(2)(350) – (5 – ho/3)(31.2h%) =0, ho=2.30 ft.
Water
5 ft
Fig. 3-50(a)
76
O CHAPTER 3
For the gate described in Prob. 3.61 and Fig. 3-
shown in Fig. 3-50a.
3.62
I See Fig. 3-51. F = yhA = (62.4)(h)[(5)(1)] =
(1.5)(350) + (h/3)(31.2h²) – (2.5)(312h) = 0, h
Transcribed Image Text:9:06 A researchgate.net 3.61 The gate in Fig. 3-50a (shown in raised position) weigi gravity is 1.5 ft from the left face and 2.0 ft above the does the gate just begin to swing up (rotate counterclo I Refer to Fig. 3-50b and consider 1 ft of length. F = (2)(350) – (5 – ho/3)(31.2h%) =0, ho=2.30 ft. Water 5 ft Fig. 3-50(a) 76 O CHAPTER 3 For the gate described in Prob. 3.61 and Fig. 3- shown in Fig. 3-50a. 3.62 I See Fig. 3-51. F = yhA = (62.4)(h)[(5)(1)] = (1.5)(350) + (h/3)(31.2h²) – (2.5)(312h) = 0, h
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