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Water Supply Engineering / Subhash Verma , Varinder Kanwar , Siby John

By: Contributor(s): Material type: TextTextLanguage: English Publication details: Noida : vikas publishing house , 2015Description: 266 pages : Illustrated ; 24 cmISBN:
  • 9789325984257
Subject(s): LOC classification:
  • TD345 .V47 2015
Summary: This book completely covers a one-semester course on potable water supply systems in a single, compact volume for undergraduate students. It covers all the three main topics—sources of water supply, water treatment and water distribution. Using the latest tools and methods, it conceptualizes and formulates the resource allocation problems, and deals appropriately with the complexity of constraints in the demand and available supplies of water
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Item type Current library Call number Copy number Status Barcode
Books Books Fayza Aboulnaga Central Library | مكتبة فايزة أبو النجا المركزية بالحرم الجامعي TD345 .V47 2015 (Browse shelf(Opens below)) C. 1 Available 10011181
Books Books Fayza Aboulnaga Central Library | مكتبة فايزة أبو النجا المركزية بالحرم الجامعي TD345 .V47 2015 (Browse shelf(Opens below)) C. 2 Available 10011283
Browsing Fayza Aboulnaga Central Library | مكتبة فايزة أبو النجا المركزية بالحرم الجامعي shelves Close shelf browser (Hides shelf browser)
TD345 .J665 2010 Water Sustainability : A Global Perspective / TD345 .K27 2010 Urban Water Engineering and Management / TD345 .S55 2003 地球水資源の管理技術 / TD345 .V47 2015 Water Supply Engineering / TD345 .V47 2015 Water Supply Engineering / TD345 .V54 2009 Water Supply and pollution Control / TD345 .V54 2009 Water Supply and pollution Control /

Includes index

Includes bibliographic references

This book completely covers a one-semester course on potable water supply systems in a single, compact volume for undergraduate students. It covers all the three main topics—sources of water supply, water treatment and water distribution. Using the latest tools and methods, it conceptualizes and formulates the resource allocation problems, and deals appropriately with the complexity of constraints in the demand and available supplies of water

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