Theoretical Soil Mechanics: With Practical Applications to Soil Mechanics and Foundation Engineering
Contents:  1. Conventional coatings -- 2. Sophisticated Coating -- 3. Inorganic zinc coatings -- 4. Recent developments in antifoulings -- 5. The economy of smooth hulls -- 6. Surface preparation -- 7. Automatic de-rusting equipment for hull steel preparation -- 8. Do we paint too frequently? -- 9. Conventional vs sophisticated coatings.  1. Underwater cleaning -- Shipyard experience and problems on bulk carrier anticorrosion protection -- 3. Underwater coatings - a shipowner's view -- 4. Corrosion control in VLCCs -- 5. Tank linings -- 6. Practical aspects of coating and problems with coated tanks -- 7. Practical experience with coatings -- 9. Impressed current cathodic protection in ships -- 10. Galvanic anode cathodic protection of ships -- 11. Cathodic protection systems - comparative costs.
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PREFACE and ACKNOWLEDGMENTS V
CONCEPTS OF STRESS AND STRESS CONDITION
THEORY OF ELASTICITY EQUATIONS IN TwoDIMENSIONAL PROBLEMS
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acting amplitude angle applied arctan assumed axis base bearing body calculated coefficient cohesive compressive stress concentrated condition constant coordinates critical damping deformations depth derived determined differential equation direction displacement dynamic edge elastic engineering equal equation equilibrium example expressed footing force foundation frequency Fr÷hlich function given gives ground surface Hence horizontal inclined increase internal friction isobars kg/cm▓ limit linear load load magnitude major principal stress mass material maximum means medium method motion normal stress Note obtain particles periodic plane plastic flow plastic zones plot position pressure principal stress problem REFERENCES respect rupture surface curve sand shear stress shown in Fig single soil mechanics solution spiral strain stress components stress distribution stress trajectories strip Substitution Table tangent uniformly vertical stress vibration weight