Design Of Reinforced Concrete Structures @ 45 Days

Design of Reinforced Concrete Structure(RCC), Bachelor of Engineering(BE) videos According to syllabus of Institute of Engineering(IoE), Tribhuvan University (TU)

Beginner 5 (3 Reviews ) 155 Students enrolled
Last updated Mon, 25-Nov-2024 Nepali
What will I learn?
  • After the completion of this course, students will get the complete knowledge of Design of Reinforced Concrete Structures.

Curriculum for this course
154 Lessons 45h 26m
0. How to Purchase Course from MeroSchool
1 Lessons
  • 0. How to Purchase Course from MeroSchool.mp4 00:03:30
  • 0. Marks Distribution.mp4 00:07:12
  • 1. Introduction to Footing.mp4 00:16:59
  • 2. Design of Isolated Footing.mp4 00:36:18
  • 3. Example 1.mp4 00:32:36
  • 4. Example no. 2.mp4 00:19:06
  • 5. Design of Combined Footing.mp4 00:12:43
  • 6. Design of Mat Foundation.mp4 00:14:45
  • 1. Introduction.mp4 00:16:20
  • 2. Ductility.mp4 00:19:49
  • 3. Ductility Requirement of Flexure member.mp4 00:23:08
  • 4. Ductility Requirement of Column.mp4 00:17:35
  • 1. Introduction.mp4 00:06:12
  • 2. Different Design Philosophies.mp4 00:14:47
  • 3. Characteristic Strength and Load.mp4 00:02:50
  • 4. Design Process and Basis For Design.mp4 00:09:11
  • 5. Difference Between LSM and WSM (REDO).mp4 00:11:38
  • 1. Introduction.mp4 00:07:29
  • 2. Behaviour of Beam Under Loading.mp4 00:08:18
  • 3. Some Important Terms.mp4 00:07:23
  • 4. MOR of Beam Secttion.mp4 00:16:47
  • 5. Types of Beam.mp4 00:09:51
  • 6. Numerical Type 1.mp4 00:08:12
  • 7. Numerical Type 2.mp4 00:11:28
  • 8. Numerical Type 3.mp4 00:17:47
  • 9. Numerical Type 4.mp4 00:09:12
  • 10. Advantage and Disadvantage of WSM.mp4 00:02:04
  • 1. Introduction.mp4 00:09:17
  • 2. Design Strength and Load.mp4 00:06:54
  • 3. Idealized Stress Strain Relationship.mp4 00:05:25
  • 4. Limit State of Collapse.mp4 00:07:15
  • 5. Limit State of Serviceability.mp4 00:13:05
  • 6. Example no. 1.mp4 00:09:13
  • 1. Assumptions.mp4 00:08:49
  • 2. Moment of Resistance.mp4 00:20:17
  • 3. Types of Sections.mp4 00:13:31
  • 4. Limiting Depth of Neutral Axis-.mp4 00:17:27
  • 5. Example Type 1.mp4 00:06:22
  • 6. Design of Singly Reinforced Beam.mp4 00:09:51
  • 7. Example type 2.mp4 00:19:56
  • 8. Strain Compatibility Method.mp4 00:14:14
  • 9. Example 3.mp4 00:13:42
  • 10. Doubly Reinforced Section.mp4 00:25:03
  • 11. Example 4.mp4 00:19:45
  • 12. Design of Doubly Reinforced Section.mp4 00:11:17
  • 13. Example 5.mp4 00:15:39
  • 14. Flanged beam.mp4 00:11:33
  • 15. MOR of Flanged Beam.mp4 00:14:44
  • 16. Example 6.mp4 00:08:46
  • 17. Example 7.mp4 00:12:04
  • 18. Example no. 8.mp4 00:11:34
  • 19. Example no. 9.mp4 00:24:19
  • 20. Example no. 10-1.mp4 00:17:02
  • 21. Example 11.mp4 00:19:01
  • 1. Introduction to Shear in Beam.mp4 00:25:07
  • 2. Example 1.mp4 00:12:26
  • 3. Example 2.mp4 00:16:07
  • 4. Torsion-1.mp4 00:12:31
  • 5. Design of Beam in Torsion-1.mp4 00:14:15
  • 6. Example 3.mp4 00:23:59
  • 7. Example no. 4.mp4 00:24:39
  • 8. Example no. 5.mp4 00:07:32
  • 1. Introduction.mp4 00:12:18
  • 2. Anchorage Bond.mp4 00:07:11
  • 3. Flexural Bond.mp4 00:16:06
  • 1. Requirement of Good Detailing.mp4 00:09:57
  • 2. Cover.mp4 00:06:45
  • 3. Curtailment of Flexural Requirement-1.mp4 00:13:19
  • 4. Shear Reinforcement.mp4 00:06:39
  • 5. Splicing of Reinforcement.mp4 00:09:22
  • 6. Anchorage.mp4 00:06:52
  • 7. Bar Bending Schedule.mp4 00:06:57
  • 1. Introduction-.mp4 00:11:25
  • 2. Deflection.mp4 00:10:35
  • 3. Crack Control in Design.mp4 00:06:21
  • 4. Deflection Control in Design-1.mp4 00:14:35
  • 5. Example of Deflection-.mp4 00:08:05
  • 1. Introduction.mp4 00:10:49
  • 2. Design Consideration of One Way Slab.mp4 00:11:43
  • 3. Design Steps of One Way Slab.mp4 00:25:28
  • 4. Example no.1.mp4 00:48:57
  • 5. Example no.2.mp4 00:52:43
  • 6. Design Steps of Two Way Slab.mp4 00:28:00
  • 7. Example no. 3.mp4 01:14:50
  • 8. Example no. 4.mp4 00:31:45
  • 9. Example no. 5.mp4 00:33:47
  • 10. Detailing types of slab.mp4 00:10:13
  • 11. Staircase.mp4 00:07:56
  • 12. Design Steps of Staircase.mp4 00:15:18
  • 13. Example no. 6.mp4 00:42:37
  • 14. Detail of Staircase.mp4 00:14:26
  • 1. Introduction.mp4 00:20:19
  • 2. Classification of Column.mp4 00:10:39
  • 3. Effective Length.mp4 00:21:34
  • 4. Design of Short axially loaded column.mp4 00:18:55
  • 5. Example no. 1.mp4 00:30:30
  • 6. Design of Uniaxially Loaded Column.mp4 00:22:25
  • 7. Example no. 2.mp4 00:27:22
  • 8. Design of Biaxially Loaded Column.mp4 00:22:23
  • 9. Example no. 3.mp4 00:22:54
  • 10. Design of Long Column.mp4 00:11:51
  • 11. Braced and Unbraced Column.mp4 00:11:07
  • 12. Example no. 4.mp4 00:38:21
  • 13. Example no. 5.mp4 00:36:49
  • 14. Design of Circular column.mp4 00:06:02
  • 15. Example no. 6.mp4 00:32:04
  • 2076 Ashwin|1. Q no. 1a.mp4 00:06:46
  • 2076 Ashwin|2. Q no. 1b.mp4 00:06:32
  • 2076 Ashwin|3. Q no. 2a.mp4 00:14:28
  • 2076 Ashwin|4. Q no. 2b.mp4 00:27:15
  • 2076 Ashwin|5. Q no 3.mp4 00:45:01
  • 2076 Ashwin|6. Q no. 4a.mp4 00:27:45
  • 2076 Ashwin|7. Q no. 4b.mp4 00:07:19
  • 2076 Ashwin|8. Q no. 5a.mp4 00:12:23
  • 2076 Ashwin|9. Q no. 5b.mp4 00:16:49
  • 2076 Ashwin|10. Q no. 5c.mp4 00:10:47
  • 2076 Chaitra|1. Q no. 1a.mp4 00:28:03
  • 2076 Chaitra|2. Q no. 1b.mp4 00:16:11
  • 2076 Chaitra|3. Q no. 2a.mp4 00:06:55
  • 2076 Chaitra|4. Q no 2b.mp4 00:15:11
  • 2076 Chaitra|5. Q no. 3a.mp4 00:05:42
  • 2076 Chaitra|6. Q no.mp4 00:13:44
  • 2076 Chaitra|7. Q no. 4a.mp4 00:04:30
  • 2076 Chaitra|8. Q no. 4b.mp4 00:28:36
  • 2076 Chaitra|10. Q no. 5b.mp4 00:28:41
  • 2078 Bhadra|1. Q no. 1a.mp4 00:09:42
  • 2078 Bhadra|2. Q no. 1b.mp4 00:11:35
  • 2078 Bhadra|3. Q no. 1c.mp4 00:21:31
  • 2078 Bhadra|4. Q no. 2a.mp4 00:03:52
  • 2078 Bhadra|5. Q no. 2b.mp4 00:47:00
  • 2078 Bhadra|6. Q no. 3a.mp4 00:23:29
  • 2078 Bhadra|7. Q no. 3b.mp4 00:19:38
  • 2078 Bhadra|8. Q no. 3c.mp4 00:09:28
  • 2078 Bhadra|9. Q no. 4a.mp4 00:34:32
  • 2078 Bhadra|10. Q no. 4b.mp4 00:19:40
  • 2079 Baishakh|1. Q no. 1a.mp4 00:12:29
  • 2079 Baishakh|2. Q no. 1b.mp4 00:00:47
  • 2079 Baishakh|3. Q no. 1c.mp4 00:29:03
  • 2079 Baishakh|4. Q no. 2a.mp4 00:07:43
  • 2079 Baishakh|5. Q no. 2b.mp4 00:32:28
  • 2079 Baishakh|6. Q no. 3a.mp4 00:21:51
  • 2079 Baishakh|7. Q no. 3b.mp4 00:14:14
  • 2079 Baishakh|8. Q no. 4a.mp4 00:46:14
  • 2079 Baishakh|9. Q no. 4b.mp4 00:07:53
  • 2079 Baishakh|10. Q no. 4c.mp4 00:11:18
  • 2079 Bhadra|1. Q no. 1a.mp4 00:10:20
  • 2079 Bhadra|2. Q no. 1b.mp4 00:28:50
  • 2079 Bhadra|3. Q no. 1c.mp4 00:32:40
  • 2079 Bhadra|4. Q no. 2a.mp4 00:13:12
  • 2079 Bhadra|5. Q no. 2b.mp4 01:06:35
  • 2079 Bhadra|6. Q no. 3a.mp4 00:23:32
  • 2079 Bhadra|7. Q no. 3b.mp4 00:43:15
  • 2079 Bhadra|8. Q no. 4a.mp4 00:08:13
  • 2079 Bhadra|9. Q no. 4b.mp4 00:38:46
Requirements
  • Students are required to have knowledge of structures related courses studied earlier i.e. Applied Mechanics, Strength of Materials, Theory of Structures and Steel.
Description

The videos herein are strictly based on syllabus of Institute of Engineering Tribhuvan University, Nepal promoting "e-Learning in Nepal" and are made with intention to provide guidance to the "Bachelor in Engineering(BE) appearing students", for securing good results. The course tries to cover all the lessons of Design of Reinforced Concrete Structure, with the solutions of most frequently asked questions in the final exam of BE. We strongly believe that, viewers will be benefited from these videos and the thirst of curiosity of viewers will be quenched! Feedbacks and suggestion to improve are always welcome and highly appreciated!

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