SITUATION 3 For the concrete gravity dam shown, unit weight of concrete is 24 kN/m3. Considering 1-m length of dam and neglecting uplift, calculate the following: 10. Total force exerted by water on dam. c. 196.42 kN d. 240.35 kN a. 154.78 kN b. 176.58 kN 11. Resisting moment. c. 1119 kN-m d. 1265 kN-m a. 956 kN-m b. 1085 kN-m 12. FOS against overturning a. 3.17 b. 2.25 c. 1.99 d. 3.65 0.6 m 7 m 6 m 4.2 m

Principles of Foundation Engineering (MindTap Course List)
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Chapter14: Sheet-pile Walls
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SITUATION 3
For the concrete gravity dam shown, unit weight of concrete is 24
kN/m3. Considering 1-m length of dam and neglecting uplift,
calculate the following:
10. Total force exerted by water on dam.
c. 196.42 kN
d. 240.35 kN
a. 154.78 kN
b. 176.58 kN
11. Resisting moment.
c. 1119 kN-m
d. 1265 kN-m
a. 956 kN-m
b. 1085 kN-m
12. FOS against overturning
a. 3.17
b. 2.25
c. 1.99
d. 3.65
0.6 m
7 m
6 m
4.2 m
Transcribed Image Text:SITUATION 3 For the concrete gravity dam shown, unit weight of concrete is 24 kN/m3. Considering 1-m length of dam and neglecting uplift, calculate the following: 10. Total force exerted by water on dam. c. 196.42 kN d. 240.35 kN a. 154.78 kN b. 176.58 kN 11. Resisting moment. c. 1119 kN-m d. 1265 kN-m a. 956 kN-m b. 1085 kN-m 12. FOS against overturning a. 3.17 b. 2.25 c. 1.99 d. 3.65 0.6 m 7 m 6 m 4.2 m
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