COMPARATIVE ANALYSIS OF THE COMPRESIVE STRENGTH OF CONCRETE PRODUCED WITH COARSE AGGREGATES FROM DIFFERENT LOCATION IN EDO STATE - Project Ideas | Grossarchive.com

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CHAPTER ONE 1.1 INTRODUCTION This work was to present in one weight, the fundamental and practical information in the filed of the comparative analysis of the strength of concrete made from various aggregate which may be useful to people involve in civil and structural... Continue Reading
ABSTRACT The work has gone a long way in determining strength of concrete made of various aggregates such as granites stone, black gravel, washed gravel and surface gravel. Some factors such as porosity of the  aggregate temperature causing loss of water plate form for mixing of concrete mix affect the workability and eventually the strength of... Continue Reading
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INTRODUCTION This work was obligated to present in one. The fundamental and practical information in the filed of the comparative analysis of the strength of concrete made from various aggregate which may be useful to people involve in civil and structural engineering and particularly, those that found pleasure in the design and related structure.... Continue Reading
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TABLE OF CONTENTS DECLARATION..........................................................................................................................ii APPROVAL............................................................................................................................... iii... Continue Reading
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ABSTRACT The purpose of this project work is to assess the strength of No-fines concrete pavement. No-Fines concrete is use in low traffic volume, pathways, sidewalk and parking lots. No-fines concrete is produced by using ordinary Portland cement, coarse aggregates, and water. In this study, Two (2) batches of no-fines concrete each with two... Continue Reading
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This project work aims at formulating Scheffe’s mathematical model which prescribes concrete mix ratios for a desired compressive strength of periwinkle shell aggregate concrete and obtaining the combination of water, cement, river sand and periwinkle shell which will produce the optimum strength. The model was formulated from first principle... Continue Reading
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