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Design of Reinforced Concrete Structures (IS: 456-2000) (Third Edition)

N. Krishna Raju

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ISBN 10: 8123909896 / ISBN 13: 9788123909899
Published by CBS Publishers & Distributors Pvt. Ltd., 2015
New Condition: New Soft cover
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Preface to the Third Edition Preface to the Second Edition Preface to the First Edition I. GENERAL FEATURES OF REINFORCED Concrete : 1. Introduction 2. Design Loads 3. Materials for Reinforced Concrete 4. Code Requirements of Reinforcements in Structural Concrete Members 5. Specifications of Cover Requirements for Steel Reinforcements II. ELASTIC OR WORKING STRESS THEORY OF REINFORCED CONCRETE SECTIONS : 1. Elastic Theory of R.C. Sections 2. Neutral Axid Depth and Moment of Resistance of Section 3. Balanced, Underreinforced and Overreinforced Sections 4. Analysis Examples 5. Examples for Practice III. PRINCIPLES OF LIMIT STATE DESIGN : 1. Philosophy of Limit State Design 2. Principles of Limit States 3. Safety Factors 4. Characteristic and Design Loads 5. Characteristic and Design Strengths IV. ULTIMATE Strength OF REINFORCED CONCRETE SECTIONS : 1. General Aspects 2. Ultimate Flexural Strength of Rectangular Sections 3. Ultimate Flexural Strength of Flanged Sections 4. Ultimate Flexural Strength of Doubly Reinforced Sections 5. Ultimate Shear Strength of Reinforced Concrete Sections 6. Ultimate Torsional Strength of Reinforced Concrete Sections 7. Examples for Practice V. SERVICEABILITY LIMIT STATES : 1. General Aspects 2. IS : 456-2000 Code Deflection Limits 3. Calculation of Deflections (Theoretical Method) 4. Cracking in Structural Concrete Members 5. Examples 6. Examples for Practice VI. LIMIT STATE DESIGN OF BEAMS : 1. General Features 2. Selection of Cross Sectional Dimensions 3. Singly Reinforced Beams 4. Doubly Reinforced Beams 5. Flanged Beams 6. Cantilever Beams 7. Continuous Beams 8. Examples for Practice VII. LIMIT STATE DESIGN OF SLABS : 1. General Aspects 2. Design of One Way Slabs 3. Design of Two Way Slabs 4. Design of Cantilever Slabs 5. Design of Continuous Slabs 6. Design of Flat Slabs 7. Yield Line Analysis of Slabs 8. Examples for Practice VIII. LIMIT STATE DESIGN OF COLUMNS AND FOOTINGS : 1. General Aspects 2. Effective Length 3. Loads on Columns 4. Slenderness Limits for Columns 5. Minimum Eccentricity 6. Design of Short Axially Loaded Columns 7. Design of Compression Members with Helical Reinforcement 8. Columns Subjected to Combined Axial Load and Uniaxial Bending 9. Columns Under Compression and Biaxial Bending 10. Slender Columns 11. Design of Footings 12. Design Examples 13. Examples for Practice IX. DESIGN OF STAIR CASES : 1. General Features 2. Types of Stair Cases 3. Loads on Stair Cases 4. Effective Span of Stairs 5. Distribution of Loading on Stairs 6. Design Examples 7. Examples for Practice X. DESIGN OF RETAINING Walls : 1. General Features 2. Wall Proportions 3. Design Principles 4. Counterfort Retaining Walls 5. Design Example (Cantilever Retaining Wall) 6. Design Example (Counterfort Retaining Wall) 7. Examples for Practice XI. PILE AND RAFT FOUNDATIONS : 1. Structural Design of R.C. Piles 2. Pile Cap 3. Raft Foundations 4. Design Examples 5. Examples for Practice XII. WORKING STRESS METHOD OF DESIGN : 1. General Principles of Working Stress Design 2. Design of Slabs 3. Design of Beams 4. Design of Column and Footingsz 5. Design of Retaining Walls 6. Design of Stair Cases 7. Design of Domes 8. Design of Water Tanks 9. Examples for Practice Printed Pages: 290. Bookseller Inventory # 35044

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Bibliographic Details

Title: Design of Reinforced Concrete Structures (IS...

Publisher: CBS Publishers & Distributors Pvt. Ltd.

Publication Date: 2015

Binding: Softcover

Book Condition:New

Edition: 3rd edition.

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