High-Rise Building Structural Design
Learn Complete High-Rise Building Structural Design Through Practical, Industry-Oriented Training
- Learn how to work on real high-rise building projects — from understanding architectural drawings and structural planning to structural modelling, analysis, design and detailing.
- Get practical exposure to the complete structural design workflow using industry-relevant software and project-based training.
- Learn. Design. Analyse. Build Your Structural Engineering Career.
At Learning Beyond, we help you bridge the gap between academic knowledge and practical structural engineering through project-based learning.
- Learn High-Rise Building, Industrial Steel & Water Tank Designing Practically
- Get 3-4 Years of experience knowledge
- Weekly LIVE doubt sessions by industryexperts
- Learn anytime, anywhere
- click Sign Up to attend free LIVE webinar
What You’ll Learn:
In this High-Rise Building Structural Design program, you will learn the complete process of structural design of a multi-storey building.
- Understanding Architectural Drawings
- Structural Planning
- Selection of Structural Systems
- Load Calculations
- Dead Load & Live Load
- Wind Load
- Seismic Load
- Load Combinations
- Structural Modelling
- Structural Analysis
- Design of Slabs
- Design of Beams
- Design of Columns
- Design of Shear Walls
- Staircase Design
- Foundation Design
- Structural Detailing
- Preparation of Structural Drawings
- Interpretation of Analysis & Design Results
- Industry-Oriented Design Approach
Course Curriculum:
Click “+” to expand below sections
| CODE NO. | SECTIONS/TOPIC/LECTURES | DURATION |
| 50 | OVERVIEW | Â |
| Â | 51.Life cycle of projects | 01:01:31 |
| Â | Â | Â |
| 100 | STRUCTURAL STABILITY | Â |
| View Demo | 101. Understanding the Secrets of Structural Stability (Part 1) | 00:12:26 |
| View Demo | 102. Understanding the Secrets of Structural Stability (Part 2) | 00:07:51 |
| View Demo | 103. Understanding the Secrets of Structural Stability (Part 3) | 00:16:32 |
| Â | 104. Understanding the Secrets of Structural Stability (Part 4) | 00:20:13 |
| Â | 105. Understanding the Secrets of Structural Stability (Part 5) | 00:25:25 |
| Â | 106. Understanding the Secrets of Structural Stability (Part 6) | 00:20:15 |
| Â | 107. Understanding the Secrets of Structural Stability (Part 7) | 00:17:44 |
| Â | Â | Â |
| 150 | DEFLECTION OF STRUCTURES | Â |
| View Demo | 151. Understanding the Deflection of Structures Practical Insights for Civil Engineers (Part 1) | 00:23:11 |
| View Demo | 152. Understanding the Deflection of Structures Practical Insights for Civil Engineers (Part 2) | 00:11:24 |
| View Demo | 153. Understanding the Deflection of Structures Practical Insights for Civil Engineers (Part 3) | 00:11:00 |
|  | 154. Understanding the Deflection of Structures Practical Insights for Civil Engineers (Part 4) | 00:17:20 |
|  | 155. Understanding the Deflection of Structures Practical Insights for Civil Engineers (Part 5) | 00:11:50 |
|  | 156. Understanding the Deflection of Structures Practical Insights for Civil Engineers (Part 6) | 00:04:35 |
|  | 157. Understanding the Deflection of Structures Practical Insights for Civil Engineers (Part 7) | 00:16:41 |
|  | 158. Understanding the Deflection of Structures Practical Insights for Civil Engineers (Part 8) | 00:14:00 |
| Â | Â | Â |
| 200 | FORCES AND EFFECTS | Â |
| Â | 201. GENERAL BASICS OF STRUCTURE | 00:13:48 |
| Â | 202. DEAD LOAD (CAUSES) | 00:33:47 |
| Â | 203. FORCE AND EFFECTS | 00:21:59 |
| Â | 204. Moment | 00:28:37 |
| View Demo | 205. Equlibrium part 1 | 00:05:48 |
| Â | 206. Equilibrium part 2 | 00:25:14 |
| Â | Â | Â |
| 250 | SUPPORTS | Â |
| View Demo | 251. Supports part 1 | 00:24:33 |
| Â | 252. supports part 2 | 00:19:04 |
| Â | 253. Supports Part 3 | 00:30:25 |
| Â | 254. Support part 4 | 00:20:16 |
| Â | Â | Â |
| 300 | ANALYSIS | Â |
| View Demo | 301. Analysis 1 | 00:22:44 |
| Â | 302. Analysis 2 | 00:20:41 |
| Â | 303. Analysis 3 | 00:20:59 |
| Â | 304. Analysis 4 | 00:20:12 |
| Â | Â | Â |
| 350 | SHEAR FORCE & BENDING MOMENT | Â |
| View Demo | 351. Free Body Diagram | 00:08:15 |
| Â | 352. Shear Force & BMD 1 | 00:30:48 |
| Â | 353. Shear Force & BMD 2 | 00:32:54 |
| Â | 354. Shear Force & BMD 3 | 00:18:43 |
| Â | 355. Shear Force & BMD 4 | 00:10:55 |
| Â | 356. Shear Force & BMD 5 | 00:21:47 |
| Â | Â | Â |
| 400 | LOAD AND LOAD PATH | Â |
| Â | 401. Load and Lod Path (Part-1) | 00:14:02 |
| Â | 402. Load and Lod Path (Part-2) | 00:25:46 |
| Â | 403. Load and Lod Path (Part-3) | 00:27:47 |
| Â | 404. Load and Lod Path (Part-4) | 00:11:07 |
| Â | 405. Load and Lod Path (Part-5) | 00:30:05 |
| Â | 406. Load and Lod Path (Part-6) | 01:59:41 |
| CODE NO. | SECTIONS/TOPIC/LECTURES | DURATION |
| 1000 | ARCHITECTURAL DRAWING | Â |
| View Demo | 1001. ARCHITECTURAL DRAWING STUDY (PART-1) | 01:35:37 |
| View Demo | 1002. ARCHITECTURAL DRAWING STUDY (PART-2) | 00:49:40 |
| Â | 1003. ARCHITECTURAL DRAWING STUDY (PART-3) | 00:07:07 |
| Â | Â | Â |
| 1150 | STRUCTURAL GA & CONCEPT DRAWINGS | Â |
| View Demo | 1151.STRUCTURAL GA STUDY (PART-1) | 00:20:59 |
| View Demo | 1152.STRUCTURAL GA STUDY (PART-2) | 01:35:20 |
| Â | 1153.STRUCTURAL GA STUDY (PART-3) | 00:46:26 |
| Â | 1154.STRUCTURAL GA STUDY (PART-4) | 00:14:32 |
| Â | Â | Â |
| 1200 | STRUCTURAL DESIGN PARAMETERS | Â |
| View Demo | 1201. STRUCTURAL DESIGN PARAMETERS | 00:16:21 |
| View Demo | 1202. SERVICABILITY & DEFLECTION CRITERIA | 00:30:35 |
| Â | 1203. MATERIAL STRENGTH & STRESSES | 00:13:27 |
| Â | 1204. SYNERGY (ARCHITECTURAL REQUIEREMENTS) | 00:05:28 |
| Â | Â | Â |
| 1300 | ETAB SOFTWARE & G+6 BUILDING MODELLING | Â |
| View Demo | 1301. ETAB MODELLING OF G+6 BUILDING | 01:25:44 |
| Â | 1302. DESIGN BASIS REPORT (DBR) OF G+6 BUILDING | 00:19:12 |
| Â | 1303. EQUIVALENT STATIC ANALYSIS METHOD BY IS1893 | 01:02:43 |
| Â | 1304. ETAB MODELLING WITH SEISMIC EQ. STATIC LOAD AS PER IS1893 | 00:16:30 |
| Â | 1305.RESPONSE SPECTRUM ANALYSIS METHOD BY IS1893 | 00:56:17 |
| Â | 1306. ETAB MODELLING WITH RESPONSE SPECTRUM LOAD AS PER IS1893 | 00:28:40 |
| Â | 1307. WIND LOAD AS PE IS CODE AND APPLICATION IN ETAB MODEL | 01:50:32 |
| Â | Â | Â |
| 1400 | RCC DESIGN_MANUAL AND EXCEL | Â |
| View Demo | 1401. FOOTING DESIGN | 00:35:18 |
| Â | 1402. COLUMN DESIGN | Â |
| Â | 1403. BEAM DESIGN | 01:48:18 |
| Â | 1404. SLAB DESIGN | Â |
| Â | Â | Â |
| 1500 | RCDC SOFTWARE | Â |
| View Demo | 1501.MDB FILE AND SLAB DESIGN RCDC | 01:30:33 |
| Â | 1502.BEAM DESIGN RCDC | 02:05:38 |
| Â | 1503.COLUMN DESIGN RCDC | 01:19:17 |
| Â | 1504.FOOTING DESIGN RCDC | 01:38:18 |
| Â | Â | Â |
| 1550 | SAFE SOFTWARE & FOUNDATION DESIGN | Â |
| View Demo | 1551.ISOLATED FOOTING BY SAFE-PART 1 | 01:54:33 |
| Â | 1552. ISOLATED FOOTINGÂ BY SAFE PART-2 | 01:35:53 |
| Â | 1553.COMBINED FOOTING BY SAFE | 01:27:58 |
| Â | 1554.IMPORT FROM ETABS TO SAFE | 01:45:50 |
| Â | Â | Â |
| 1600 | HIGH RISE BUILDING ANALYSIS | Â |
| Â | 1601. HIGH RISE BUILDING ARCHITECTURAL DRAWING STUDY (PART-1) | 01:59:24 |
| Â | 1602. HIGH RISE BUILDING ARCHITECTURAL DRAWING STUDY (PART-2) | 00:06:45 |
| View Demo | 1603. HIGH RISE BUILDING STRUCTURAL DRAWING STUDY | 01:59:32 |
| Â | 1604. HIGH RISE BUILDING ETAB MODEL STUDY (PART-1) | 00:15:34 |
| View Demo | 1605. HIGH RISE BUILDING ETAB MODEL STUDY (PART-2) | 00:43:56 |
| Â | 1606. HIGH RISE BUILDING OUTPUT DBR (OUTPUT RESUTLTS) PART-1 | 00:16:41 |
| Â | 1607. HIGH RISE BUILDING OUTPUT DBR (OUTPUT RESUTLTS) PART-2 | 01:44:38 |
| Â | 1608. HIGH RISE BUILDING OUTPUT DBR (OUTPUT RESUTLTS) PART-3 | 01:49:24 |
| Â | 1609. HIGH RISE BUILDING OUTPUT DBR (OUTPUT RESUTLTS) PART-4 | 00:25:11 |
| Â | 1610. HIGH RISE BUILDINGÂ SOFTT STORY (PART-1) | 00:44:51 |
| Â | 1611. HIGH RISE BUILDINGÂ SOFTT STORY (PART-2) | 00:36:00 |
| Â | Â | Â |
| 1800 | AUTOCAD SOFTWARE | Â |
| Â | 1801. DRAWING BASICS | 01:33:00 |
| Â | 1802. AUTOCAD SESSION-1 | 00:44:25 |
| Â | 1803. AUTOCAD SESSION-2 | 01:11:45 |
| Â | 1804. AUTOCAD SESSION-3 | 01:05:01 |
| Â | 1805. AUTOCAD SESSION-4 | 01:02:53 |
| Â | 1806. AUTOCAD SESSION-5 | 01:10:50 |
| Â | 1807. AUTOCAD SESSION-6 | 01:12:12 |
| Â | 1808. AUTOCAD SESSION-7 | 01:06:05 |
| CODE NO. | SECTIONS/TOPIC/LECTURES | FORMAT |
| 1 | DESIGN SPREADSHEETS | Â |
| Â | 01. RCC DESIGN SHEETS | Â |
| Â | BEAM DESIGN (RCC) | EXCEL |
| Â | BIAXCOLUMN DESIGN (RCC) | EXCEL |
| Â | BIAXCOLUMN+TENSION DESIGN (RCC) | EXCEL |
| Â | CIRCULAR COLUMN DESIGN (RCC) | EXCEL |
| Â | CIRCULAR COLUMN+TENSION DESIGN (RCC) | EXCEL |
| Â | ColEffLength (ANALYSIS) | EXCEL |
| Â | FOOTING DESIGN WSM | EXCEL |
| Â | IS456 CLAUSES | EXCEL |
| Â | IS456 RCC DESIGN | EXCEL |
| Â | RECT COLUMN UNIAXIAL M DESIGN (RCC) | EXCEL |
| Â | RECTCOLUMN+TENISION DESIGN (RCC) | EXCEL |
| Â | SLAB DESIGN (RCC) | EXCEL |
| Â | SubFrame (ANALYSIS) | EXCEL |
| Â | 02. STEEL STRUCTURE DESIGN SHEETS | Â |
| Â | STEEL BEAM DESIGNÂ | EXCEL |
| Â | Z PURLIN TABLE 1 | JPEG |
| Â | Z PURLIN TABLE 2 | JPEG |
| Â | 03. WATER TANK DESIGN SHEETS | Â |
| Â | CRACKWIDTH DESIGN | EXCEL |
| Â | IS 3370-19665 WATERTANK DESIGN | EXCEL |
| Â | WATER TANK DESIGN | EXCEL |
| Â | Â | Â |
| 2 | IS CODES | Â |
| Â | 1. EARTHQUAKE | Â |
| Â | ASCE 7-16 | |
| Â | IS 1893.1.2016_EQ GENERAL BUILDING | |
| Â | IS 1893.1_2002_EQ GENERAL BUILDING | |
| Â | IS 13920_1993_DUCTILE DETAILING | |
| Â | IS 13920_2016_DUCTILE DETAILING | |
| Â | IS 13920-2016 IIT EXPLAINATORY PROBLEMS | |
| Â | 2. LOADING OTHER THAN EQ | Â |
| Â | IS 875_Part1_DEAD LOAD | |
| Â | IS 875_Part2_LIVE LOAD | |
| Â | IS 875_Part3.1987_WIND LOAD | |
| Â | IS 875_Part4_SNOW LOAD | |
| Â | IS 875_Part5_SPECIAL LOADS OTHER THAN EQ LOADS | |
| Â | IS 875-part-3_2015_WIND LOAD | |
| Â | Wind load IS 875 Examples IIT | |
| Â | 3. CONCRETE STRUCTURES | Â |
| Â | IS 456 – 2000_RCC STRUCTURES | |
| Â | IS 2911.1.1.2010_CONCRETE PILES | |
| Â | IS 2911.1.1.DRIVEN CAST IN-SITU CONCRETE PILE | |
| Â | IS 2911.1.2.BORED CAST IN-SITU PILE | |
| Â | SP34_RCC DETAILING | |
| Â | 4. STEEL STRUCTURES | Â |
| Â | 3935_COMPOSITE STRUCTURES | |
| Â | IS 800-1984_STEEL STRUCTURE WSM | |
| Â | IS 800-2007_STEEL STRUCTURE LSM | |
| Â | SP6_1_STEEL SECTION TABLES | |
| Â | 5. WATER TANKS | Â |
| Â | IS 1893-2-2014_EQ FOR WATER TANKS | |
| Â | IS 3370.1.2009_STORAGE TANKS GENERAL REQ. | |
| Â | IS 3370.2.2009_RCC TANKS | |
| Â | IS 3370_1_1965_STORAGE TANKS GENERAL REQ. | |
| Â | IS 3370_2_1965_RCC TANKS | |
| Â | IS 3370_4_TANK DESIGN CO.EFFICIENT TABLES | |
| Â | PCA TABLE_CIRCULAR TANKS WITHOUT PRESTRESSING | |
| Â | PCA TABLE_DESIGN OF RECTANGULAR TANKS | |
| Â | Sesmic design of water tank_IITK Examples | |
| Â | 6. TALL BUILDINGS (HRB) | Â |
| Â | IS 16700.2017_CRITERIAS OF TALL BUILDINGS | |
| Â | IS16700_2023_CRITERIAS OF TALL BUILDINGS | |
| Â | Â | Â |
| 3 | Â MANUAL CALCULATIONS | Â |
| Â | 01. RCC DESIGN | Â |
| Â | 2 PILE CAP RCC DESIGN | |
| Â | 3 PILE CAP RCC DESIGN | |
| Â | 4 PILE CAP RCC DESIGN | |
| Â | BEAM MOMENT CAPACITY-M20,FE500 | EXCEL |
| Â | COLUMN AXIAL CAPACITY TABLE | EXCEL |
| Â | DESIGN OF DOUBLY RF RCC BEAM | |
| Â | DESIGN OF ONE WAY RCC SLABS | |
| Â | DESIGN OF RCC BIAXIAL COLUMN | |
| Â | DESIGN OF RCC FOOTING | |
| Â | DESIGN OF SINGLY RF RCC BEAM | |
| Â | DESIGN OF SQUARE RCC FOOTING | |
| Â | DESIGN OF TWO WAY RCC SLABS | |
| Â | RCC RETAINING WALL DESIGN | |
| Â | 02. STEEL STRUCTURE DESIGN | Â |
| Â | BATTENED COLUMN DESIGN (STEEL) | |
| Â | BEAM COLUMN DESIGN (STEEL) | |
| Â | BENDING MEMBER DESIGN (STEEL) | |
| Â | COLUMN BASE PLATE DESIGN (STEEL) | |
| Â | COMPRESSION MEMBER DESIGN (STEEL) | |
| Â | GANTRY GIRDER DESIGN (STEEL) | |
| Â | MEZZANINE FLOOR DESIGN (STEEL) | |
| Â | SPLICE PLATE DESIGN (STEEL) | |
| Â | TENSION MEMBER DESIGN (STEEL) | |
| Â | 03. WATER TANK DESIGN | Â |
| Â | CIRCULAR TANK DESIGN | |
| Â | WATER TANK INTRODUCTION | |
| Â | Â | Â |
| 4 | Â DBR | Â |
| Â | CIRCULAR ESR DBR | |
| Â | G+5 RCC DBR | |
| Â | HRB INPUT DBR | |
| Â | HRB OUTPUT DBR | |
| Â | INTZE TANK DBR | |
| Â | STP DBR | |
| Â | UG FIRE TANK DBR | |
| Â | UGWT DBR | |
| Â | WAREHOUSE DBR | |
| Â | Â | Â |
| 5 | Â STRUCTURAL DRWINGS | Â |
| Â | 01. RCC STRUCTURES | Â |
| Â | G+5 RCC DRAWINGS | DWG |
| Â | G+20_HRB RCC DRAWINGS | DWG |
| Â | TRIMIX | DWG |
| Â | 02. STEEL STRUCTURES | Â |
| Â | CANOPY | DWG |
| Â | GA WAREHOUSE | DWG |
| Â | PEB SHED | DWG |
| Â | 03. WATER STRUCTURES | Â |
| Â | CIRCULAR TANK | DWG |
| Â | CLARIFIER DRAWINGS | |
| Â | ESR DRAWINGS | DWG |
| Â | OWHT Drawing. | DWG |
| Â | SCCC STP | DWG |
| Â | UG TANK. | DWG |
| Â | Â | Â |
| 6 | Â ARCHITECTURAL DRAWINGS | Â |
| Â | 01. RCC STRUCTURES | Â |
| Â | G+20 ARCH DRAWINGS | BAK |
| Â | G+20 ARCH DRAWINGS | DWG |
| Â | 03. WATER STRUCTURES | Â |
| Â | STP FUNCTIONAL DRAWING | BAK |
| Â | STP FUNCTIONAL DRAWING | DWG |
| Â | Â | Â |
| 7 | Â ANALYSIS | Â |
| Â | BEAM AND FRAME STAAD PRO | |
| Â | FRAME ANALYSIS ASSIGNMENT | |
| Â | LOAD & LOAD PATH | |
| Â | N TYPE TRUSS ANALYSIS | |
| Â | SFD & BMD | |
| Â | Â | Â |
| 8 | Â SOFTWARES | Â |
| Â | 01. ETABS | Â |
| Â | ETAB NOTES | |
| Â | G+5 PROBLEM GA MODEL | EDB |
| Â | HRB ETABS 30.09 R10 | EDB |
| Â | 02. SAFE | Â |
| Â | COMBINED FOOTING | FDB |
| Â | G+5 FOUNDATION | FDB |
| Â | ISOLATED FOOTING AXI (2) | FDB |
| Â | RAFT_FOUNDATION | FDB |
| Â | RAFT_FOUNDATION_WITH_DROP | FDB |
| Â | SAFE NOTES PPT | |
| Â | SAFE Notes SESSIONS PPT | |
| Â | 03. STAAD PRO | Â |
| Â | CANOPY MODEL | STD |
| Â | Circular Tank MODEL | STD |
| Â | Clarifier MODEL | STD |
| Â | ESR FOOTING MODEL | STD |
| Â | INTZE TANK MODEL | STD |
| Â | OVERHEAD TANK MODEL | STD |
| Â | PEB SHED MODEL | STD |
| Â | STP MODEL | STD |
| Â | TRIMIX FLOOR MODEL | STD |
| Â | 04. RCDC | Â |
| Â | G+5 COLUMN GRAVITY | RCDX |
| Â | G+5 FOOTING WITH GRAVITY LOADING | RCDX |
| Â | RCDC Notes | |
| Â | 05. AUTOCAD | Â |
| Â | AutoCad Shorcut keys | JPG |
| Â | Â | Â |
| 9 | Â OTHER DISCIPLINES | Â |
| Â | GEOTECHNICAL REPORT | |
| Â | Â | Â |
| 10 | Â BOOKS | Â |
| Â | 01. RCC STRUCTURES | Â |
| Â | RC DESIGN BOOK 1 | |
| Â | RC DESIGN BOOK 2 | |
| Â | Advanced Reinforced Concrete Design | |
| Â | 02. STEEL STRUCTURES | Â |
| Â | Design of Steel Structures Vol 1 | |
| Â | Design of Steel Structures Vol 2 | |
| Â | Design of Steel Structures | |
| Â | Limit State Design Of Steel Structures | |
| Â | 03 WATER STRUCTURES | Â |
| Â | PCA TABLE_Design_Rectangular_Tanks | |
| Â | PCA_Circular Tanks Without prestressing | |
| Â | 04. EARTHQUAKE | Â |
|  | Earthquake Behaviour | |
| Â | Â | Â |
| 11 | Â BUILDING EQ ANALYSIS OUTPUT | Â |
| Â | DRIFT & TORSIONAL IRREGULARITY | |
| Â | EQ STATIC SEISMIC ANALYSIS BY IS CODE | |
| Â | Overturning Check | EXCEL |
| Â | P-DELTA & POUNDING EFFECT | |
| Â | P-Delta SCCC | EXCEL |
| Â | RESPONSE SPECTRUM ANALYSIS | |
| Â | SOFT STOREY | |
| Â | Soft Story Irreg. | EXCEL |
| Â | Torsional Irregularity Check | EXCEL |
| Â | Â | Â |
| 12 | PEB | Â |
| Â | DBR PEB | WORD |
| Â | PEB SHED STAAD MODEL | STD |
| Â | PEB SHED DRAWING | DWG |
| Â | COLUMN DESIGN RCDC | RCDX |
| Â | FOOTING DESING RCDC | RCDX |
| Â | PURLIN CAPACITY TABLE | |
| Â | Z PURLIN CAPACITY TABLE 1 | JPEG |
| Â | Z PURLIN CAPACITY TABLE 2 | JPEG |
SignUp to Attend free Live Webinar:
Who Should Enroll:
- BE / BTech / MTech / PHD Civil & Structural Engineering
- Freshers and job seeekers
- Site engineers who want to move towards design & consultancy
- Working professionals who want to upgrade software skills at their own pace
- Faculty members who want to upgarde practical knowledge
- MPSC, UPSC Students
- Govt. Employees (Civil Engineers)
What You Get When You Enroll:
Recorded video lectures with lifetime access
Weekly LIVE doubt-solving sessions led by industry experts.
Downloadable PDFs (notes, basic design sheets, reference material)
Access duration: Lifetime access to recordings
Learning mode: 100% online, self-paced video lessons
Language: English / Hinglish
Access to a WhatsApp group for technical disscussionÂ
Why this course is usefull to you?
- You can get a job in reputed MNC’sÂ
- Working proffessionals can upgrade their skills practically
- One can switch career from site engineeering to structural engineering job
- Students can start their own structural consultancyÂ
- This course gives opportunities to work in forign countries like UAE, UK, USA, Gulf nations, Europe etc.
Requirements (Minimum System Requirements):
• Laptop or Desktop (Windows OS recommended)
• Minimum 8 GB RAM (16 GB recommended for smoother performance)
• Minimum 256 GB SSD (or sufficient free storage space)
• Intel i5 (or equivalent) processor or higher
• Stable internet connection for LIVE mentoring sessions
• Basic understanding of civil/structural engineering concepts
Enroll Now – Start Learning Today
Get instant access to all recorded modules and start learning immediately.
Once you enroll, we will email you the access link and complete instructions.
FAQs
This is an exclusive training cum experience program along with softwares. This will help to develop your soft skills, practical experience, and conceptual knowledge and finally get experience of 4 civil engineering sectors. You will get experience (Worth of 3-4 years of experience knowledge) and software training certificates.
Lifetime access, learn anytime, anywhere according to your schedule
Yes. You will receive your access link by email.
This course has weekly LIVE doubt solving Sessions led by Industry Experts & Lifetime Technical Support
Laptop is recommended along with internet connection. Minimum core i5 processor, 64bit operating system and 4GB RAM required
Â
- Design basis report
- Books
- Study notes
- PPTs
- Excel programs
- Word documents
- drawings
- Recorded videos
- IS CODES
- All notes are in pdf, word & ppt format