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Lecture
Unsaturated Soils: Water Retention and Mechanical Behavior
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Related lectures (33)
Geomechanics: Suction and Shear Strength
Covers suction, shear strength, desiccation consequences, and retaining structures in unsaturated soils.
Critical State Concept: Unsaturated Soils
Explores the critical state concept in geomechanics, focusing on unsaturated soils and Terzaghi's effective stress validity.
Retaining Structures: Geomechanics
Explores the design and analysis of retaining structures, lateral earth pressure, and unsaturated soils.
Soil Shear Resistance and Failure Criteria
Explains the Von Mises, Drucker-Prager, Mohr-Coulomb, and Cam-Clay failure criteria in soil mechanics.
Geomechanics: Basic Concepts
Introduces basic geomechanics concepts, stress paths, and the critical state concept.
Soil Mechanics: Plasticity and Failure Criteria
Explores soil mechanics, plasticity, failure criteria, and soil behavior models.
Consolidation - Drained/Undrained
Explores drained and undrained soil conditions, laboratory tests, and the significance of effective stress and pore pressure.
Oedometer Test: Principles and Analysis
Explores the principles and procedures of the oedometer test, including sample preparation, data interpretation, and soil property determination.
Geomechanics: Course Introduction
Introduces the study of geomechanics, covering the behavior of soils, rocks, and concrete in civil engineering applications.
Modified Cam Clay Model
Covers the Modified Cam Clay Model, stress paths, pore pressure, settlements, and applications in geotechnical problems.
Mechanical Tests in Soil Mechanics
Covers the organization and types of mechanical tests in soil mechanics, including laboratory and in situ tests.
Soil Deformation: Construction Interruptions and Settlement Assessment
Explores soil deformation, construction interruptions, settlement assessment, and overconsolidation in soil mechanics and underground flows.
Design and Verification of a Bearing Slab
Covers the design and verification process of a bearing slab for concrete bridges, including methods for calculating bending moments and shear force.
In-plane behaviour: URM walls
Explores the seismic behavior and strength capacity of URM walls, including effective stiffness and drift capacity.
Soil Mechanics: Oedometer Testing and Soil Deformation
Explores soil mechanics, oedometer testing, and soil deformation principles, including Young's modulus and overconsolidation effects.
Capstan Phenomenon: Understanding Force Amplification
Explores the capstan phenomenon, showcasing how force amplification enables lifting heavy masses with minimal effort.
Geomechanics: Basic Concepts
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Introduces basic concepts of geomechanics, stress paths, effective stress, and shear strength analysis through laboratory testing.
Critical State Concept
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Explores the critical state concept in geomechanics, covering stress paths, shear strength, and soil behavior under different stress conditions.
Shear Behavior: Evaluation and Laws
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Explores material behavior in shear, shear forces, stress, equilibrium, shear laws, tension/compression, plane shear, shear rate, constrained slip, and shear strength.
Shock Waves and Brittle Material Response
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Covers shock waves, brittle material response, phase transformation, and Hugoniot relationships in materials under stress.
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