Comprehensive RCC Design using IS 456 : 2000 (LSM)
Comprehensive RCC Design using IS 456 : 2000 (LSM), available at $49.99, has an average rating of 4.75, with 44 lectures, based on 95 reviews, and has 450 subscribers.
You will learn about RCC in detail according to IS 456 : 2000 using Limit State Method. Difference in WSM, LSM and ULM design philosophy Under reinforced, Over reinforced and Balanced section Flexural design of beams – Singly and Doubly reinforced Flexural design of Tee Beams Shear in Beams Torsion in Beams Design of one way and two way Slabs Design of Columns – Uniaxial and Biaxial bending Footing design This course is ideal for individuals who are Students pursuing bachelors or Masters in Civil Engineering. or Site Engineers or Design Engineers or RCC Designers It is particularly useful for Students pursuing bachelors or Masters in Civil Engineering. or Site Engineers or Design Engineers or RCC Designers.
Enroll now: Comprehensive RCC Design using IS 456 : 2000 (LSM)
Summary
Title: Comprehensive RCC Design using IS 456 : 2000 (LSM)
Price: $49.99
Average Rating: 4.75
Number of Lectures: 44
Number of Published Lectures: 44
Number of Curriculum Items: 44
Number of Published Curriculum Objects: 44
Original Price: ₹2,899
Quality Status: approved
Status: Live
What You Will Learn
- RCC in detail according to IS 456 : 2000 using Limit State Method.
- Difference in WSM, LSM and ULM design philosophy
- Under reinforced, Over reinforced and Balanced section
- Flexural design of beams – Singly and Doubly reinforced
- Flexural design of Tee Beams
- Shear in Beams
- Torsion in Beams
- Design of one way and two way Slabs
- Design of Columns – Uniaxial and Biaxial bending
- Footing design
Who Should Attend
- Students pursuing bachelors or Masters in Civil Engineering.
- Site Engineers
- Design Engineers
- RCC Designers
Target Audiences
- Students pursuing bachelors or Masters in Civil Engineering.
- Site Engineers
- Design Engineers
- RCC Designers
Myself a qualified design engineer and a professor in eminent institution brings you this engaging series lecture on design of reinforced concrete structures. This series is specially designed for graduating engineers and practicing engineers and is based on IS 456 : 2000 code. It covers important topics in RCC design including its design philosophies, design of singly and doubly reinforced beams, shear reinforcement, torsion reinforcement, slabs, columns and footings Along with this you will also get practical knowledge that you need to have for working on site.
Course Curriculum
Chapter 1: Introduction to Design Philosophies in RCC
Lecture 1: RCC Design Introduction
Lecture 2: WSM Introduction
Lecture 3: WSM Part 2
Lecture 4: WSM Part 4
Lecture 5: LSM Part 1
Lecture 6: LSM Part 2
Lecture 7: Ultimate Load Method – Part 1
Chapter 2: Singly Reinforced Section
Lecture 1: LSM Numerical Type 1
Lecture 2: LSM Numerical Type Problem 2
Lecture 3: LSM Singly Reinforced Design Numerical
Lecture 4: LSM Singly Reinforced Design Numerical 2
Chapter 3: Doubly Reinforced Sections
Lecture 1: LSM Doubly Reinforced Section
Lecture 2: LSM Doubly Reinforced Numerical Type 1
Lecture 3: LSM Doubly Reinforced Numerical Type 1 – Problem 2
Lecture 4: LSM Doubly Reinforced Design Numerical 1
Lecture 5: LSM Doubly Reinforced Design Numerical 2
Lecture 6: LSM Doubly Reinforced Design Numerical 3
Chapter 4: Flanged Sections
Lecture 1: Tee Beam
Lecture 2: Tee Beam Part 2
Lecture 3: Tee Beam Numerical 1
Lecture 4: Tee Beam Numerical 2
Chapter 5: Shear Reinforcement
Lecture 1: Shear Reinforcement Theory – Part 1
Lecture 2: Shear Reinforcement Theory – Part 2
Lecture 3: Shear Reinforcement Numerical 1
Lecture 4: Shear Reinforcement Numerical 2
Lecture 5: Shear Reinforcement Numerical 3
Chapter 6: Torsion
Lecture 1: Torsion Theory and Numerical
Chapter 7: Slabs
Lecture 1: Slabs Theory Part 1
Lecture 2: Slabs Theory Part 2
Lecture 3: One Way Slab Numerical
Lecture 4: Two Way Slab Theory
Lecture 5: Two Way Slab Numerical
Chapter 8: Columns
Lecture 1: Columns Theory -1
Lecture 2: Columns Numerical 1
Lecture 3: Columns Numerical 2
Lecture 4: Circular Column with Helical Reinforcement
Lecture 5: Columns with bending and axial load
Lecture 6: Column Design Numerical 1
Lecture 7: Column Design Numerical 2
Lecture 8: Column Design Numerical 3
Chapter 9: Footings
Lecture 1: Footings Theory
Lecture 2: Footings Numerical 1
Lecture 3: Footings Numerical 2
Lecture 4: Footings Numerical 3
Instructors
-
Tanvesh Dabholkar
Chartered Structural Engineer
Rating Distribution
- 1 stars: 1 votes
- 2 stars: 0 votes
- 3 stars: 6 votes
- 4 stars: 31 votes
- 5 stars: 57 votes
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