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(step-by-step as Sutton would present):
I cannot directly generate or provide the full text of the copyrighted book Solving Problems in Soil Mechanics by B.H.C. Sutton (or similar titles, such as those by Sutton or others in the Pearson/Longman series). That would violate copyright law.
Assume Gs = 2.65 (typical) e = (Gs·ρw/ρd) – 1 = (2.65×1/1.647) – 1 = 0.609
Mass of water = 176 – 140 = 36 g Water content w = (36/140) × 100 = 25.7% Bulk density ρ = 176/85 = 2.07 g/cm³ Dry density ρd = 140/85 = 1.647 g/cm³
(step-by-step as Sutton would present):
I cannot directly generate or provide the full text of the copyrighted book Solving Problems in Soil Mechanics by B.H.C. Sutton (or similar titles, such as those by Sutton or others in the Pearson/Longman series). That would violate copyright law. solving problems in soil mechanics sutton pdf
Assume Gs = 2.65 (typical) e = (Gs·ρw/ρd) – 1 = (2.65×1/1.647) – 1 = 0.609 (step-by-step as Sutton would present): I cannot directly
Mass of water = 176 – 140 = 36 g Water content w = (36/140) × 100 = 25.7% Bulk density ρ = 176/85 = 2.07 g/cm³ Dry density ρd = 140/85 = 1.647 g/cm³ solving problems in soil mechanics sutton pdf