ADVANCED SOIL MECHANICS
Material type: TextPublication details: WASHINGTON: HEMISPHERE PUBLISHING CORP., 1985Description: 511 P. ILLUST 21cmSubject(s):- 05313
Item type | Current library | Collection | Call number | Copy number | Status | Notes | Date due | Barcode | |
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Monograf | JPS HQ Library Main Library | General Collections | GEOT.SOIL 624.13 DAS (Browse shelf(Opens below)) | Available | Sumbangan drp Audit Prestasi | 1000030831 | |||
Monograf | JPS HQ Library Main Library | General Collections | GEOT.SOIL 624.13 DAS (Browse shelf(Opens below)) | 1 | Available | 1000000197 |
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GEOT.SOIL 624.13 BRI DESIGN PARAMETERS IN GEOTECHNICAL ENGINEERING VOL.3 | GEOT.SOIL 624.13 BRI DESIGN PARAMETERS IN GEOTECHNICAL ENGINEERING VOL.4 | GEOT.SOIL 624.13 BRO THE STABILITY OF SLOPES | GEOT.SOIL 624.13 DAS ADVANCED SOIL MECHANICS | GEOT.SOIL 624.13 DAS ADVANCED SOIL MECHANICS | GEOT.SOIL 624.13 DEP SOIL MECHANICS: DESIGN MANUAL 7.1 | GEOT.SOIL 624.13 DUN STRENGTH, STRESS-STRAIN & BULK MODULUS PARAMETERS FOR FINITE ELEMENT ANALYSES OF STRESSES .../ |
1. Soil aggregate. 1.1 Introduction. 1.2 Weight volume relationship. 1.3 Grain size distribution of soils. 1.4 Clay minerals. 1.5 Consistency of cohesive soils. 1.6 Soil classification 1.7 Compactions. 1.8 Volume changes of soils. 1.9 Effective stress. 2. Permeability and seepage. 2.1 Permeability. 2.2 Seepage. 3. Stresses in soil mass. 3.1 Two-dimensional problems. 3.2 Three-dimensional problems. 4. Pore water pressure due to undrained loading. 4.1 Pore water pressure developed due to isotropic stress application. 4.2 Pore water pressure due to uniaxial loading. 4.3 Pore water pressure under trialxial conditions. 4.4 Henkel's modification of pore water pressure equation. 5. Consolidation. 5.1 Fundamentals of consolidation. 5.2 Consolidation by sand drains. 6. Evaluation of soil settlement. 6.1 Introduction. 6.2 Immediate settlement. 6.3 Primary consolidation settlement. 6.4 Secondary consolidation settlement. 6.5 Stress-path methods of settlement calculation. 7. Shear strength of soils. 7.1 Mohr-coulomb failure criteria. 7.2 Shearing strength of granular soils. 7.3 Shear strength of cohesive soils. 7.4 Other theoretical considerations.
ENG
05313
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