Clay y = 17.2 kN/m³ ф = 0° c = 30 kN/m² 10 m Base soil 3.3 m 5000 kN 2.0 m Clay The factor of safety (rounded off to two decimal places) against sliding failure of the retaining wall after ignoring the passive earth pressure will be

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Chapter2: Loads On Structures
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Clay
Y = 17.2 kN/m³
Ф = 0°
c = 30 kN/m²
10 m
Base soil
3.3 m
5000 kN
ALTOPOMEROM
2.0 m Clay
The factor of safety (rounded off to two decimal
places) against sliding failure of the retaining wall
after ignoring the passive earth pressure will be
Transcribed Image Text:Clay Y = 17.2 kN/m³ Ф = 0° c = 30 kN/m² 10 m Base soil 3.3 m 5000 kN ALTOPOMEROM 2.0 m Clay The factor of safety (rounded off to two decimal places) against sliding failure of the retaining wall after ignoring the passive earth pressure will be
A retaining wall of height 10 m with clay backfill
is shown in the figure (not to scale). Weight of the
retaining wall is 5000 kN per m acting at 3.3 m from
the toe of the retaining wall. The interface friction
ER
angle between base of the retaining wall and the
base soil is 20. The depth of clay in front of the
retaining wall is 2.0 m. The properties of the clay
backfill and the clay placed in front of the retaining
wall are the same. Assume that the tension crack
is filled with water. Use Rankine's earth pressure
theory. Take unit weight of water, Y = 9.81 kN/m³
Yw
Transcribed Image Text:A retaining wall of height 10 m with clay backfill is shown in the figure (not to scale). Weight of the retaining wall is 5000 kN per m acting at 3.3 m from the toe of the retaining wall. The interface friction ER angle between base of the retaining wall and the base soil is 20. The depth of clay in front of the retaining wall is 2.0 m. The properties of the clay backfill and the clay placed in front of the retaining wall are the same. Assume that the tension crack is filled with water. Use Rankine's earth pressure theory. Take unit weight of water, Y = 9.81 kN/m³ Yw
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