Solution Manual for Engineering Applications in Sustainable Design and Development, 1st Edition

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  • ISBN-10 ‏ : ‎ 1133629776
  • ISBN-13 ‏ : ‎ 978-1133629771
  • Author: Bradley Striebig; Adebayo A. Ogundipe

ENGINEERING APPLICATIONS IN SUSTAINABLE DESIGN AND DEVELOPMENT is an invaluable resource for today’s engineering student. Focusing on pressing contemporary issues, the text puts product design in the context of models of sustainability. Relevant case studies from across the globe will be of interest to engineers in training, and active learning exercises in each chapter help students learn to apply theory to real world situations.

Table of contents:

  1. Ch 1: Sustainability, Engineering, and Design
  2. 1.1 Introduction
  3. 1.2 Human Development Index
  4. 1.3 Sustainable Development and Social Ethics
  5. 1.4 Sustainable International Development and the Essential Needs of the Poor
  6. 1.5 Engineering and Developing Communities
  7. 1.6 Definitions of Sustainability
  8. 1.7 Populations and Consumption
  9. 1.8 Technical Approaches to Quantifying Sustainability
  10. 1.9 The Difficulty of Environmental Valuation
  11. 1.10 Summary
  12. Ch 2: Analyzing Sustainability Using Engineering Science
  13. 2.1 Introduction
  14. 2.2 Elemental Analysis
  15. 2.3 Solubility and Henry’s Law Constant
  16. 2.4 The Ideal Gas Law
  17. 2.5 Chemistry of Natural Systems
  18. 2.6 Equilibrium Models for Estimating Environmental Impacts
  19. 2.7 Environmental Fate and Partitioning of Chemicals
  20. 2.8 Summary
  21. Ch 3: Biogeochemical Cycles
  22. 3.1 Introduction
  23. 3.2 Biogeochemical Cycles
  24. 3.3 The Hydrologic Cycle
  25. 3.4 Water Repositories
  26. 3.5 Pathways of Water Flow
  27. 3.6 Precipitation
  28. 3.7 Watersheds and Runoff
  29. 3.8 Water Budget
  30. 3.9 Mass Balance and System Boundaries
  31. 3.10 Summary
  32. Ch 4: Water Quality Impacts
  33. 4.1 Introduction
  34. 4.2 The Water Crisis
  35. 4.3 Water Quality Parameters
  36. 4.4 Modeling the Impacts of Water Pollutants
  37. 4.5 Water Treatment Technologies
  38. 4.6 Summary
  39. Ch 5: Impacts on Air Quality
  40. 5.1 Introduction
  41. 5.2 Health Effects of Air Pollutants
  42. 5.3 Estimating Emissions of Air Pollutants
  43. 5.4 Dispersion of Air Pollutants
  44. 5.5 Global Impacts of Air Pollutants
  45. 5.6 Summary
  46. Ch 6: The Carbon Cycle and Energy Balances
  47. 6.1 Introduction
  48. 6.2 Climate Science History
  49. 6.3 Carbon Sources and Emissions
  50. 6.4 The Carbon Cycle, Carbon Flow Pathways, and Repositories
  51. 6.5 Global Energy Balance
  52. 6.6 Global Energy Balance and Surface Temperature Model
  53. 6.7 Greenhouse Gases and Effects
  54. 6.8 Climate Change Projections and Impacts
  55. 6.9 Carbon Dioxide Mitigation, Capture, and Sequestration
  56. 6.10 Summary
  57. Ch 7: Models for Sustainable Engineering
  58. 7.1 Introduction
  59. 7.2 What Do We Mean by Sustainability?
  60. 7.3 The Nature of Natural Resources
  61. 7.4 Footprint Indicators of Sustainability
  62. 7.5 Waste Management and Material Life Cycles
  63. 7.6 Ecological Design
  64. 7.7 Sustainable and Green Engineering
  65. 7.8 Summary
  66. Ch 8: Energy Conservation and Developmen
  67. 8.1 Introduction
  68. 8.2 Energy and Society
  69. 8.3 Energy and the Environment
  70. 8.4 Direct and Embodied Energy
  71. 8.5 Opportunities for Energy Sustainability
  72. 8.6 Appropriate Technology, Scale, and Distributed Energy
  73. 8.7 Energy Policy
  74. 8.8 The Water-Energy Nexus
  75. 8.9 Summary
  76. Ch 9: Industrial Ecology
  77. 9.1 Introduction
  78. 9.2 The IPAT Equation
  79. 9.3 Resource Allocation
  80. 9.4 Technology, Emissions, and Impacts
  81. 9.5 Risk Assessment and Analysis
  82. 9.6 Industrial Metabolism
  83. 9.7 Eco-Industrial Parks
  84. 9.8 Summary
  85. Ch 10: Life Cycle Analysis
  86. 10.1 Introduction
  87. 10.2 Life Cycle Thinking
  88. 10.3 Life Cycle Assessment Framework
  89. 10.4 Materials Flow Analysis
  90. 10.5 Embodied Energy
  91. 10.6 Impact Assessment
  92. 10.7 Summary

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