Environmental Engineer's Mathematics Handbook
The unique approach to advanced mathematics in the Environmental Engineer's Mathematics Handbook emphasizes the relationship between the principles in natural processes and those employed in engineered processes. The text covers the principles, practices, and mathematics involved in the design...
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CRC Press
2009
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Thư viện Trường Đại học Đà Lạt |
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Environmental Sciences |
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Environmental Sciences Spellman, Frank Whiting, Nancy Environmental Engineer's Mathematics Handbook |
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The unique approach to advanced mathematics in the Environmental Engineer's Mathematics Handbook emphasizes the relationship between the principles in natural processes and those employed in engineered processes. The text covers the principles, practices, and mathematics involved in the design and operation of environmental engineering works. It also presents engineering modeling tools and environmental algorithm examples.
The Environmental Engineer's Mathematics Handbook is both a textbook and reference tool for practitioners involved in the protection and management of air, water, and land resources. This book brings together a complete range of relevant topics, from physical properties and chemical reactions of pollutants to extensive coverage of wastewater treatment, biosolids, and stormwater engineering in a single text. It presents engineering principles, concepts, definitions, descriptions, statistical concepts, and derivations in an intuitive manner. Building on a strong foundation, the text develops modeling tools, environmental algorithms, and other calculations for air and water pollution assessment, management, and control used by environmental and civil engineers on a daily basis.
Using a common-sense approach, this crucial reference ensures that students and engineers have the necessary mathematical tools within easy reach for designing systems to protect air, water, and land resources. |
format |
Book |
author |
Spellman, Frank Whiting, Nancy |
author_facet |
Spellman, Frank Whiting, Nancy |
author_sort |
Spellman, Frank |
title |
Environmental Engineer's Mathematics Handbook |
title_short |
Environmental Engineer's Mathematics Handbook |
title_full |
Environmental Engineer's Mathematics Handbook |
title_fullStr |
Environmental Engineer's Mathematics Handbook |
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Environmental Engineer's Mathematics Handbook |
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environmental engineer's mathematics handbook |
publisher |
CRC Press |
publishDate |
2009 |
url |
https://scholar.dlu.edu.vn/thuvienso/handle/DLU123456789/1160 |
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1819766782911578112 |
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oai:scholar.dlu.edu.vn:DLU123456789-11602009-10-13T01:37:03Z Environmental Engineer's Mathematics Handbook Spellman, Frank Whiting, Nancy Environmental Sciences The unique approach to advanced mathematics in the Environmental Engineer's Mathematics Handbook emphasizes the relationship between the principles in natural processes and those employed in engineered processes. The text covers the principles, practices, and mathematics involved in the design and operation of environmental engineering works. It also presents engineering modeling tools and environmental algorithm examples. The Environmental Engineer's Mathematics Handbook is both a textbook and reference tool for practitioners involved in the protection and management of air, water, and land resources. This book brings together a complete range of relevant topics, from physical properties and chemical reactions of pollutants to extensive coverage of wastewater treatment, biosolids, and stormwater engineering in a single text. It presents engineering principles, concepts, definitions, descriptions, statistical concepts, and derivations in an intuitive manner. Building on a strong foundation, the text develops modeling tools, environmental algorithms, and other calculations for air and water pollution assessment, management, and control used by environmental and civil engineers on a daily basis. Using a common-sense approach, this crucial reference ensures that students and engineers have the necessary mathematical tools within easy reach for designing systems to protect air, water, and land resources. FUNDAMENTAL COMPUTATIONS/MODELING Introduction Introduction Conversion Factors Conversion Factors: Practical Examples Soil Test Results Conversion Factors Basic Math Operations Introduction Basic Math Terminology and Definitions Sequence of Operations Percent Significant Digits Powers & Exponents Averages (Arithmetic Mean) Ratio Dimensional Analysis Threshold Odor Number (TON) Geometrical Measurements Force, Pressure, & Head Calculations Review of Advanced Algebra Key Terms/Concepts Summary Environmental Modeling Introduction Media Material Content Phase Equilibrium and Steady State Math Operations and Laws of Equilibrium Chemical Transport Systems A Final Word on Environmental Modeling Algorithms and Environmental Engineering Introduction Algorithms: What are they? Expressing Algorithms General Algorithm Applications Environmental Engineering Algorithm Applications FUNDAMENTAL SCIENCE & STATISTICS REVIEW Fundamental Chemistry & Hydraulics Introduction Fundamental Chemistry Fundamental Hydraulics Chapter 6 Statistics Review Statistical Concepts Measure of Central Tendency Basic Statistical Terms DMR Calculations Standard Deviation MATH CONCEPTS: AIR POLLUTION CONTROL Air Pollution Fundamentals Introduction Gases Particulate Matter Pollution Emission Measurement Parameters Standard Corrections Gaseous Emission Control Introduction Absorption Adsorption Incineration Condensation Particulate Emission Control Particulate Emission Control Basics Particulate Size Characteristics & General Characteristics Flow Regime of Particle Motion Particulate Emission Control Equipment Calculations Wet Scrubbers for Emission Control Introduction Wet Scrubber Collection Mechanisms and Efficiency (Particulates) Wet Scrubber Collection Mechanisms and Efficiency (Gaseous Emissions) Assorted Venturi Scrubber Example Calculations MATH CONCEPTS: WATER QUALITY Running Waters Balancing the 'Aquarium' Is Dilution the Solution? Discharge Measurement Time of Travel Dissolved Oxygen (DO) Biochemical Oxygen Demand Oxygen Sag (Deoxygenation) Stream Purification: A Quantitative Analysis Still Waters Still Water Systems Still Water System Calculations Still Water Surface Evaporation Groundwater Groundwater and Aquifers Aquifer Parameters Groundwater Flow General Equations of Groundwater Flow Basic Hydraulics Introduction Basic Concepts Flow/Discharge Rate: Water in Motion Bernoulli's Theorem Calculating Major Head Loss Characteristics of Open-Channel Flow Open-Channel Flow Calculations Water Treatment Process Calculations Introduction Water Source & Storage Calculations Water Storage Coagulation, Mixing & Flocculation Sedimentation Calculations Water Filtration Calculations Water Chlorination Calculations Chemical Use Calculations MATH CONCEPTS: WASTEWATER ENGINEERING Wastewater Calculations Introduction Preliminary Treatment Calculations Primary Treatment Calculations Biosolids Pumping Trickling Filter Calculations Rotating Biological Contactors (RBCs) Activated Biosolids Oxidation Ditch Detention Time Treatment Ponds Chemical Dosage Calculations Biosolids Production & Pumping Calculations Biosolids Thickening Stabilization Biosolids Dewatering & Disposal Land Application Calculations Biosolids to Compost Wastewater Lab Calculations MATH CONCEPTS: STORMWATER ENGINEERING Stormwater Engineering Calculations Introduction Stormwater Terms and Acronyms Hydrologic Methods Runoff Hydrographs Runoff and Peak Discharge Calculation Method General Stormwater Engineering Calculations Summary Cited References 2009-10-13T01:37:03Z 2009-10-13T01:37:03Z 2004 Book 156670681 https://scholar.dlu.edu.vn/thuvienso/handle/DLU123456789/1160 en application/octet-stream CRC Press |