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Diploma in Civil Engineering Fundamentals for Construction

Diploma in Civil Engineering Fundamentals for Construction banner
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Diploma in Civil Engineering Fundamentals for Construction

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25 hrs
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English
1028 views
Akshay Kamath
Akshay KamathCivil Engineer & Mentor
  • 7-day money-back guarantee
  • Session recordings included
  • Certificate of completion

Why enroll

The course covers essential topics such as building materials, structural basics, surveying, concrete technology, and construction practices. It helps learners understand how projects are planned, designed, and executed on-site. Ideal for beginners, diploma students, and entry-level professionals, this course builds technical knowledge, improves practical understanding, and prepares participants for careers in construction, site engineering, and project supervision.

Is this course for you?

You should take this if

  • You work in Infrastructure & Construction
  • 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

This Course is a All in One course Covering Wide range of Topics to Crack Entry level Interviews

  1. CONCRETE TECHNOLOGY

  2. AUTOCAD-2016 -Basics

  3. STAAD PRO -Basics

  4. QUICK THUMB RULE FOR ESTIMATION

  5. BASIC OF ESTIMATION & RUNNING BILLS GENERATIONS

  6. BASICS OF CONSTRUCTION PRACTICES

  7. CAREER OPPORTUNITIES FOR CIVIL ENGINEERS

  8. BASIC OF ESTIMATION

  • CONCRETE TECHNOLOGY -The basic Concepts of cement, concrete , types of Cement & all its Practical related  Things are discussed in this topics

  • BASIC OF ESTIMATION - 

  This topic covers the material calculation like cement, sand & coarse Aggregate for any construction project .

  This topic also deals with Plinth Area, Built up Area, carpet Area and all its Practical importance.

  This Topic deals with Contracts , Documents Required for Contracts, Tenders  etc.

  Learn to Prepare Running Bills, Abstract  Sheet , Measurement Sheets, & Rate Escalation sheets

  Learn to Prepare valuation of a Property  for Bank Loan

  • AUTOCAD -2016 -  This Topic covers all the Basic Commands & shortcut Commands for Auto Cad -2016 with Practical Approach .

  Learn to Draw house plans after learning all these commands 

  All Shortcut Commands of Auto-CAD        

  • BASICS OF CONSTRUCTION PRACTICE-

Learn to decide beam sizes in construction Project

Learn to decide Column Sizes in construction Project

Learn to design Slab Thickness in construction Project

Learn to Orient & Place column for Any Project

Learn to Prepare Measurement Book at Construction Project.

Learn to Prepare  Running Bills & Material escalation Sheets

All  Basic Concepts required to Gain Knowledge in Civil Engineering 

Course suitable for

Key topics covered

- All Basic of Civil Engineering Required for Cracking Entry Level Interviews

- Career Opportunities in Civil Engineering - Shape your Future From Here

- Concrete Technology , Types of Cement , Role of Ingredients in cement

- Plinth Area, Carpet Area, Super Built Up Area & Set Back Area

- Calculation of cement , Sand & Aggregate for any Projects

- AutoCAD -2016 - All Basic Commands + Shortcut Commands ( 5 Hours Content )

- List of Software's , young Graduates Should know to Gain Good Job

- Different Types of Bills in Construction Projects

- All thumbs Rules for Material calculation at Construction Site

- Estimation & Its types in Real Projects

Opportunities that await you!

Career opportunities

Training details

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

Why people choose EveryEng

Industry-aligned courses, expert training, hands-on learning, recognized certifications, and job opportunities-all in a flexible and supportive environment.

What learners say about this course

Yogendra Sagar Mishra
Yogendra Sagar Mishra
May 3, 2026

Fast ramp for beginners; the Mix Design module using the IS 10262 worksheet example stuck, especially the step where water-cement ratio shifts after slump checks. It's mostly practical, but I wasn't sold on the curing section—wished there was more on field obs and acceptance criteria, like a CI gate before pouring into prod.

Suman Adhikari
Suman Adhikari
Feb 25, 2026

Initially, I wasn’t sure what to expect from this course. Coming from rail projects, a beginner-level building internship sounded basic, but the site exposure was useful in unexpected ways. The daily work around formwork, rebar detailing, and concrete pours highlighted how small deviations cascade at system level, similar to how poor track geometry or ballast drainage shows up later as ride quality issues in railtransport. One challenge was translating drawings into on-site decisions, especially when site conditions didn’t match the plans. That’s a familiar edge case from rail jobs where signaling interfaces or OHE clearances force late-stage design tweaks. Coordination between civil, safety, and QA teams felt closer to industry practice than classroom learning, even if the pace was slower. A practical takeaway was learning how site checklists and method statements actually protect downstream trades, much like maintaining platform clearances to rolling stock avoids operational constraints later. The internship also reinforced how buildings near rail corridors must respect vibration, load paths, and future expansion, which often gets underestimated. Overall, the course wasn’t flashy, but it grounded fundamentals in real constraints. I can see this being useful in long-term project work.

COMPLETED

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Questions and Answers

A: A points at crack angle and location near the support, matching shear stress paths and missing confinement. B would show vertical cracks at mid-span first. C gives fine, map-like cracks without load correlation. D would shift cracks through columns and slabs, not isolate the beam end.

A: A ties directly to durability and corrosion kinetics under chlorides. B confuses strength with durability; cover thickness doesn't raise fck. C is a site convenience argument, not a code driver. D mixes up mix design with exposure classification.

A: A follows the volume breakdown: cement share over total proportion times dry volume. B drops the dry volume factor, a common site error. C adds margin not part of mix math. D ignores aggregate proportioning altogether.

A: A sits outside PPE control; only shoring or sloping breaks that load path. B, C, and D are exactly what helmets are meant to manage at low energy levels.