Soil mechanics : calculations, principles, and methods / Victor N. Kaliakin.
By: Kaliakin, Victor N [author.]
Publisher: Oxford : Butterworth-Heinemann, an imprint of Elsevier, 2017Copyright date: ©2017Description: xiii, 447 pages : illustrations ; 23 cmContent type: text Media type: unmediated Carrier type: volumeISBN: 9780128044919; 0128044918Subject(s): Soil mechanics | Soil physics | Soil mechanics | Soil physicsDDC classification: 624.1/5136 LOC classification: TA710 | .K265 2017Item type | Current location | Home library | Call number | Status | Date due | Barcode | Item holds |
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COLLEGE LIBRARY | COLLEGE LIBRARY SUBJECT REFERENCE | 624.15136 K1247 2017 (Browse shelf) | Available | CITU-CL-48271 |
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624.15136 C738 2000 Computer simulation of earthquake effects : proceedings of sessions of Geo-Denver 2000 / | 624.15136 D26 2014 Principles of geotechnical engineering / | 624.15136 D2601 2018 Principles of geotechnical engineering / | 624.15136 K1247 2017 Soil mechanics : calculations, principles, and methods / | 624.15136 L74 2003 Soil properties : testing, measurement, and evaluation / | 624.15136 L74 2004 Soils and foundations / | 624.15136 M4646 2016 Mechanics & characteristics of soil / |
Includes bibliographical references and index.
Example problems involving phase relations for soils -- Example problems related to soil identification and classification -- Example problems related to compaction of soils -- Stresses, strains and elastic response of soils -- Example problems involving in situ stresses under hydrostatic conditions -- Example problems involving one-dimensional fluid flow in soils -- Example problems involving two-dimensional fluid flow in soils -- Example problems related to compressibility and settlement of soils -- Example problems related to time rate of consolidation -- Example problems related to shear strength of soils.
This book provides expert insights into the nature of soil mechanics through the use of calculation and problem-solving techniques. This informed reference begins with basic principles and calculations, illustrating physical meanings of the unit weight of soil, specific gravity, water content, void ratio, porosity, saturation, and their typical values. This is followed by calculations that illustrate the need for soil identification, classification, and ways to obtain soil particle size distribution, including sizes smaller than 0.075mm, performance, and the use of liquid and plastic limit tests. The book goes on to provide expert coverage regarding the use of soil identification and classification systems (both Unified Soil Classification System and AASHTO), and also includes applications concerning soil compaction and field applications, hydraulic conductivity and seepage, soil compressibility and field application, and shear strength and field application-- Source other than Library of Congress.
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