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1:38
6–27 Determine force in members DC, HC, HI of truss and state if members are tension or compression
2.4K views
11 months ago
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3:58
Determine the horizontal and vertical components at each pin. The suspended cylinder weighs 80 lb.
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3:49
*6–20. Determine force in member of truss, state if in tension or compression. Set P1=20kN, P2=10kN.
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Jun 26, 2025
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2:37
5–11. Determine the reactions at the supports.
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3:39
Determine force in each member and if members are in tension or compression. Set P1=40 kN,P2=20 kN
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2:32
The hoist supports the 125-kg engine. Determine the force along member DB and along member FB.
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2:29
Determine the location y of centroid of the channel’s cross-sectional area and the moment of inertia
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1:41
If the max force any member can support is 8 and 6 kN determine the max force P supported at joint D
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2:07
*6–28. Determine force in members ED, EH, and GH of truss and if members in tension or compression.
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2:00
*5–12. Determine the horizontal and vertical components of reaction at the pin A and at the rocker B
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2:03
The cable exerts 6kN. Determine the placement x of the boom so this force creates a maximum moment.
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2:21
6–83. Determine the horizontal and vertical components of force that the pins exert on member ABD.
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1:41
Two men exert forces on ropes. Determine the moment about point A. Which way will the pole rotate?
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5–10. Determine the reactions at the supports.
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1:16
*6-64. Determine the force P required to hold the 50-kg mass in equilibrium.
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Determine the force P needed to suspend the 100-lb weight. Also, what are cord reactions at A and B?
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Feb 18, 2025
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2:35
6–66. Determine the horizontal and vertical components of force at pins A and D.
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6-61. Determine the force P required to hold the 100-lb weight in equilibrium.
758 views
11 months ago
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