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6 Weeks Bootcamp for Civil & Construction Engineer from Zero banner

6 Weeks Bootcamp for Civil & Construction Engineer from Zero

6 Weeks Bootcamp for Civil & Construction Engineer from Zero banner
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6 Weeks Bootcamp for Civil & Construction Engineer from Zero

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20 hrs
-
English
714 views
Akshay Kamath
Akshay KamathCivil Engineer & Mentor
  • 7-day money-back guarantee
  • Session recordings included
  • Certificate of completion
Volume pricing for groups of 5+

Why enroll

People enroll in the course “6 Weeks Bootcamp for Civil & Construction Engineers from Zero” to build a strong foundation in civil engineering in a short, structured time. It is ideal for beginners who want to start from scratch and quickly understand core concepts like construction methods, materials, basic design, and site practices. The course offers practical, real-world insights along with exposure to essential tools like AutoCAD, making learning more industry-relevant. Participants join to gain job-ready skills, improve confidence, and enhance their chances of securing entry-level roles in construction and civil engineering fields.

Is this course for you?

You should take this if

  • You work in Rail & Transport
  • You're a Civil & Structural professional
  • You prefer live, instructor-led training with Q&A

You should skip if

  • You need a different specialisation outside Civil & Structural
  • You need fully self-paced, on-demand content

Course details

6 Weeks Bootcamp for Civil & Construction Engineers from Zero is a comprehensive, beginner-friendly program designed to build a strong foundation in civil engineering and construction practices from the ground up. This bootcamp covers essential topics such as building materials, basic structural concepts, construction methods, quantity estimation, and introduction to tools like AutoCAD. Through practical examples and real-world applications, participants gain a clear understanding of how construction projects are planned and executed. Ideal for beginners, students, and career switchers, this program equips learners with the core skills, confidence, and industry knowledge needed to start a career in civil and construction engineering.

Course suitable for

Key topics covered

Week 01  - Week 02

  • How Students Can Earn Money &  Start Affiliate Marketing

  • How to Make a Powerful Resume with Proper Format

  • How to Face an Interview with Confidence

  • How to Answer Technical  Questions  With the Right Answers

  • Topics of Civil Engineering that are missed in college.

  • Basic Civil Engineering Questions

  • Questions on Concrete Technology

  •  Basic units used in construction

  • The density of Construction Materials

  • Estimation of PCC, Excavation  & Concrete Quantity

  • Code Books & their Importance

  • Types of cement, its working chemistry & Its importance in the Construction industry

  • Contractual process, site works, site handling, concrete works, rebar works, etc.

  • Structure knowledge and working at the site

  • Course Details - Week 03

      Advanced Course Which Covers Most Construction in Civil Engineering Step by Step  With Live Practical Videos.

1- Water Tank Construction

2- Petrol Bunk Construction

3- Quality Control - Work Methodology 

4- Concrete Floor Construction

5- Miscellaneous topics Related to Metro Construction l  Geo- Technical Engineering l  Tunnel l

6- Advanced  Structural  Drawing Reading of Different Buildings

All the Lectures have Been Explained With Crystal clear Concepts and Practical videos From the Site.

This is a Complete Course that will Give You an Idea about Different Fields of Civil Engineering and how different Structure is Constructed,

Topics Covered

1- Water Tank Construction

  • Placing of Raft Beam & Column Reinforcement on Raft Slab

  • Structural Drawing Reading of Raft Slab

  • Placing of Raft Concrete & Drawing Reading

2- Petrol Bunk Construction

  • Step By Step Construction Of Bunker

  • Step By Step Construction of RCC Building

  • Step By Step Steel Structure Erection

  • Practical video of Petrol Bunk Construction

  • Steel Structure Erection for Petrol Bunk

  • Bunker Construction & Complete Execution of Petrol Pump

3- Quality Control - Work Methodology  - Week 04-05

  • Excavation & Backfilling Work Statement

  • Soling Work Methodology

  • Formwork Methodology

  • Reinforcement Methodology

  • Concrete & PPC Methodology

  • Anti-Termite Treatment Methodology

  • Blockwork Methodology

  • Plastering Methodology

  • Tile Work Methodology

  • Marble Work Methodology

  • Brickwork Methodology

  • Brickwork Methodology -Part 2

  • Construction Joint Work Methodology

  • Construction Hole Work Methodology

Topics Covered! -Week 06

  1. Learn to Read House Plans - Sections & Elevations

  2. Learn to Read 3 BHK Residential Building Complete Plan

  3. Learn the Fundamentals of Vaastu & Its Applications

  4. Learn to Decide the Standard Room Sizes for a House

  5. Learn to Decide Beam Size, Column Size, and Slab thickness for Any Building in Less than 5 Minutes

  6. Learn the Fundamentals of Structural Engineering on How to Design & Detail Structural Drawings 

All the lectures have been explained with crystal clear Concepts and Practical videos from the site.

Opportunities that await you!

Career opportunities

Training details

This is a live course that has a scheduled start date.

COMPLETED

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Questions and Answers

A: For rail embankments, insufficient compaction—especially when moisture conditioning is poorly controlled—leads to non-uniform stiffness across the fill. Under repeated axle loads, this stiffness gradient drives differential settlement, which propagates upward into track geometry defects rather than causing an immediate global failure.

A: Track plinth pours are typically constrained by access windows and possession times. If construction joint locations are not explicitly detailed, site teams improvise joint placement, increasing the risk of cracking and misalignment relative to fastener anchor positions.

A: In top-down construction, intermediate slabs act as horizontal props. Delaying their casting while excavating deeper increases the unsupported excavation depth, raising effective stress relief at the base and increasing basal heave potential.

A: High angularity and low abrasion loss ensure ballast particles interlock and resist breakdown under cyclic loading and tamping. Degraded ballast generates fines, reducing drainage and accelerating track geometry deterioration.