Skip to main content

Privacy & Policy

Privacy Policy

Last Updated: [Date]

Bosak Civil Construction ("we") operates https://bosakcivilconstruction.blogspot.com. This page informs you of our policies regarding data collection through Blogger's platform.

Information Collection

We collect minimal personal information when you voluntarily:

  • Submit comments
  • Use contact forms
  • Subscribe to updates

Blogger Services

This site uses Google Blogger, which may collect:

  • Cookies for functionality
  • Analytics data (via Google Analytics)
  • IP addresses and browser information
Refer to Google's Privacy Policy for details.

Third-Party Links

Our blog may contain links to external sites. We have no control over their content or privacy practices.

Policy Updates

We may update this policy periodically. Changes become effective immediately upon posting.

Contact: For privacy concerns, email us at generalwork123456@gmail.com

Comments

Popular posts from this blog

How to Transfer RL by Using Auto Level – Step-by-Step Guide

  How to Transfer RL by Using Auto Level – Step-by-Step Guide In the field of civil engineering, transferring Reduced Level (RL) is one of the most essential tasks when it comes to leveling and ensuring accuracy in elevation. Whether you're working on a building foundation, roadwork, or land survey, knowing how to transfer RL using an auto level is a basic but crucial skill. Bosak Civil Construction explore what RL means, why it's important, and how to transfer it accurately using an auto level. This guide is beginner-friendly and written in a practical tone so anyone can understand it easily. Reduce Level ■ What is RL (Reduced Level)? Reduced Level (RL) is the vertical distance of a point above or below a fixed reference point, usually called the benchmark. It helps in determining the height or depth of different points on a site. RLs are crucial for: 》Laying foundations 》Constructing floors at correct heights 》Ensuring slope and drainage in roads 》Comparing levels across l...

How to Find Excavation Depth from NGL – Step-by-Step Guide

How to Find Excavation Depth from NGL – Step-by-Step Guide Excavation is one of the most crucial stages in any civil construction project. Whether you are constructing a building, a road, or any other infrastructure, knowing the depth of excavation from Natural Ground Level (NGL) is essential. It ensures proper foundation placement, structural safety, and cost control. How To Find Excavation Depth from NGL: Watch Now Excavation Depth From NGL RL Watch Full Video: Click Here. In this blog, we’ll understand what NGL is, the process to calculate excavation depth from it, and a real-life example to clarify the concept. What is Natural Ground Level (NGL)? NGL stands for Natural Ground Level, which is the original, undisturbed surface level of the ground before any construction activity or excavation begins. Think of NGL as the ‘zero level’ or reference level on site before you dig or build. Why is Excavation Depth Important? Knowing the correct excavation depth helps in: • Achieving the exa...

How To Calculate Footing Excavation Depth

 Footing Excavation Depth ✅️Meaning of Footing Excavation:  इसका मतलब होता है NGL (Natural Ground Level) से लेकर Footing के bottom level तक कि गहराई। Formula:  Excavation Depth =NGL-Bottom Of Footing Footing Excavation Depth  Excavation depth कुछ महत्त्वपूर्ण बातों पर निर्भर करते हैं, जो जनाना बहुत ही ज़रूरी है। 🔅Type of soil --- Hard है कि Soft chech करना है। 🔅Building Load according to G+1,G+2, G+3.....etc. 🔅Safe Bearing Capacity (SBC) 🔅See OR Check Water Table Label. Watch Video: Click Here दोस्तो, अब Footing Excavation Depth Calculation प्रमुख Steps को देखेंगे: Step-1.  पहले Natural Ground Level पाता करना होगा। अगर NGL नहीं दिया होगा तो 100.0m मान लेंगे। Step-2. Plinth Level Fixed करना : Generally Plinth level 0.45m to 0.60m above रखा जाता है। Let Plinth level =+0.60m Step-3. Foundation Depth: Foundation depth निम्न बातों पर निर्भर करती है- A. Soft Soil के लिए  1.5m - 2.0m B. Medium Soil के लिए 1.2m -1.5m C. Hard Soil। के लिए 1.0m - 1.2m Example: L...