RCC Structures (ESE)

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Language: Hinglish

Instructors: Devesh Pathak

Validity Period: 120 days

₹4000 50.02% OFF

₹1694.07 excluding GST

 

Why this course?

Description

 Design of Concrete and Masonry structures:

Limit state design for bending, shear, axial compression and combined forces; Design of beams, Slabs, Lintels, Foundations, Retaining walls, Tanks, Staircases; Principles of pre-stressed concrete design including materials and methods; Earthquake resistant design of structures; Design of Masonry Structure.

Course Curriculum

Introduction
All about Steel used in Rcc (34:00)
Type Of Structural Steel in RCC (35:00)
Beam Designing
Limit State Method
2.1 LSM-Introduction (32:00)
2.2 Assumption (57:00)
2.3 Beam Designig (basic terms) (30:00)
2.4 Singly RF Beam-analysis part1 (41:00)
2.5 Singly Reinforced Beam Analysis Part 2 (36:00)
2.6 Type of Sections (28:00)
2.7 Singly RF Beam-Analysis Practice Numerical (26:00)
2.8 SINGLY RF beam Designing (18:00)
2.9 singly RF beam Designing-practice Numerical (31:00)
2.10 Beam Designing IS code recommendations (49:00)
2.11 SUMMARY Singly R/F beam (17:00)
Doubly Reinforced Beam
2.12 Doubly Reinforced Concrete beam -Analysis (44:00)
2.13 Doubly Reinforced beam analysis -practice numerical (23:00)
2.14 Doubly Reinforced beam -Designing (22:00)
2.15 doubly reinforced beam design-practice numerical (26:00)
Flanged Section Beam
2.16 T Beam Introduction (22:00)
2.17 T Beam Analysis Procedure (43:00)
2.18 T-beam analysis (Practice Numerical) (32:00)
2.19 T-beam Analysis ESE Prev. Yr Conventional (11:00)
Working Stress Method
2.20 wsm method Introduction (25:00)
2.21 singly reinforced beam analysis Procedure (34:00)
2.22 singly reinforced beam designing Procedure (26:00)
2.23 singly reinforced beam analysis Practice numerical (19:00)
2.24 Singly reinforced Beam Designing Practice Numerical (19:00)
2.25 Doubly reinforced beam Analysis Procedure (35:00)
2.26 Doubly reinforced beam Analysis Practice Numerical (18:00)
2.27 Doubly reinforced beam Designing Procedure (23:00)
2.28 Doubly reinforced beam Designing Practice Numerical (27:00)
ESE Solution Beam 1 (32:00)
ESE Solution Beam 2 (17:00)
ESE Solution Beam 3 (23:00)
ESE Solution Beam 4 (17:00)
ESE Solution Beam 5 (28:00)
ESE Solution Beam 6 (33:00)
ESE Pre Beam 1 (33:00)
ESE Pre Beam 2 (24:00)
ESE Pre Beam 3 (38:00)
Shear Designing
1 Introduction (21:00)
2 shear Designing introduction IS code (58:00)
3 Shear Designing-Practice Numerical (49:00)
4 ESE Solution Beam 1 (57:00)
5 ESE Solution beam 2 (52:00)
6 Shear Designing-practice numerical (21:00)
7 Shear DEsigning-Practice Numerical 2 (14:00)
8 ESE Prev. yr. solution-Shear Designing (40:00)
Bond Strength & Development Length
1 Bond-Introduction (12:00)
2 development Length & Anchorage Value (concept & formula) (32:00)
3 development Length & Anchorage Value practice numerical (30:00)
4 Anchorage Length Concept (22:00)
5 Bond dsign Equation-Practice Numerical (10:00)
6 Anchorage Length -Practice Numerical (9:00)
7 ESE prev yr solution -Anchorage Length (20:00)
Torsion
1 Torsion Designing-introduction (21:00)
2 torsion design procedure (44:00)
3 torsion design practice numerical (57:00)
ESE Pre Shear Torsion & Bond Stress 1 (36:00)
ESE Pre Shear Torsion & Bond Stress 2 (31:00)
ESE Pre Shear Torsion & Bond Stress 3 (28:00)
Slab Designing
1. Slab Designing -Introduction (11:00)
2 Slab Designing-IS Recommandation (25:00)
3 One Way Slab-Design Procedure (43:00)
4 One Way Slab Designing practice numerical (63:00)
5 ESE prev yr Solution slab 1 (52:00)
6 ESE prev yr Solution slab 2 (29:00)
7 Two Way Slab-Design Procedure (26:00)
8 ESE prev yr Solution Two Way slab (36:00)
ESE Pre Beam & Slab 1 (40:00)
ESE Pre Beam & Slab 2 (36:00)
ESE Pre Beam & Slab 3 (45:00)
Column Designing
1 Column INTRO (19:00)
2 COLUMN Designing IS Recommandation (41:00)
3 rectangular column design-practice numerical (34:00)
4 column designing circular section design procedure (40:00)
5 Circular column-practice numerical (47:00)
6 ESE prev yr Solution column designing (28:00)
7 axially loaded column with uniaxial bending -design procedure (20:00)
8 axially loaded column with uniaxial bending practice numerical 1 (24:00)
9 axially loaded column with uniaxial bending practice numerical 2 (14:00)
10 axially loaded column with Biaxial bending -design procedure (17:00)
11 axially loaded column with Biaxial bending -Practice Numerical (36:00)
12 ESE Prev yr. solution -column designing (20:00)
13 ESE Prev. Yr. Solution -Column Designing (27:00)
14 Ese Question (27:00)
15 Pu-Mu Intreaction Curve (24:00)
Footing Designing
Introduction Footing (24:00)
Critical Section In footing (16:00)
Practice Numerical (46:00)
ESE prev yr Solution footing (62:00)
ESE Pre Column & Footing 1 (42:00)
ESE Pre Column & Footing 2 (23:00)
ESE Pre Column & Footing 3 (30:00)
Material Properties
Material Property (52:00)
Material Property II (32:00)
Prestress Concrete
1 prestress Basic Concepts (24:00)
2 Method Of Prestress Concrete (19:00)
3 Stress Concept (28:00)
4 Practice Numerical (37:00)
5 Load balancing concept part 1 (17:00)
6 Load Balancing Concept Part 2 (19:00)
7 losses of prestress part1 (35:00)
8 losses of prestress part2 (25:00)
9 losses of prestress part3 (22:00)
10 losses of prestress Practice numerical-1 (15:00)
11 losses of prestress Practice numerical-2 (24:00)
ESE Questions Prestress 1 (19:00)
ESE Questions Prestress 2 (17:00)
ESE Questions Prestress 3 (15:00)
ESE Questions Prestress 4 (24:00)
ESE Questions Prestress 5 (27:00)
ESE Questions Prestress 6 (39:00)
GATE Questions
Material Properties
Limit State Method I
Limit State Method II
Bond & Shear I
Bond & Shear II
Beams & Slabs
Columns
Footings
Prestressed Concrete I
Prestressed Concrete II

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