Tên sách: Concise Hydraulis
Tác giả: Prof. Dawei Han
Ngôn Ngữ: English
Định dạng: PDF
Số trang: 182
Nguồn: bookboon.com
Contents
Preface
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9
|
|
1
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Fundamentals
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10
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1.1
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Properties of Fluids
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10
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1.2
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Flow Description
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11
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1.3
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Fudamental Laws of Physics
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12
|
2
|
Hydrostatics
|
15
|
2.1
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Pressure
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15
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2.2
|
Manometer
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16
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2.3
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Pressure Force on Plane Surface
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17
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2.4
|
Pressure Force on Curved Surface
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18
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2.5
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Flotation
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19
|
3
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Energy Equation
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27
|
3.1
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Basic Formula
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27
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3.2
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Applications
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28
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4
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Momentum Equation
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34
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4.1
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The Principle
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34
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4.2
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Applications
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35
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5
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Pipe Flow
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43
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5.1
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Introduction
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43
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5.2
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Energy losses in pipe flow
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44
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5.3
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Local losses (or Minor losses)
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47
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5.4
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Grade Line
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47
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5.5
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Combination of pipes
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47
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5.6
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Energy Loss in Non-circular Pipes
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48
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6
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Physical Modelling
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53
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6.1
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Background
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53
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6.2
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Dimensional Analysis
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53
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6.3
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Analysis of Experimetal Data
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56
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6.4
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Model and Similarity
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57
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7
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Open Channel Flow
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63
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7.1
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What is “Open Channel Flow”
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63
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7.2
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Channel Geometric Properties
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64
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7.3
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Calculation of Hydraulic Radius and Hydraulic Mean Depth
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66
|
8
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Uniform Flow
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73
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8.1
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Introduction
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73
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8.2
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Laminar or Turbulent Flow
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73
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8.3
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Energy Loss Equations
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74
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8.4
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Computation of Uniform Flow
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76
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9
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Chanel Design
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83
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9.1
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Channel Design
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83
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9.2
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Compound Channel
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83
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9.3
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The Best Hydaraulic Section
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86
|
10
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Critical Flow
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94
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10.1
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Small Wave in Open Channel
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94
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10.2
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Critical Flow
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94
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10.3
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Critical Flow Computation
|
96
|
11
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Rapidly Varied Flow
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103
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11.1
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Sudden Transitions
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103
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11.2
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Depth of Flow
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104
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11.3
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Height of Hump
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106
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11.4
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Specific Energy
|
107
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12
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Hydaraulic Jump
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114
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12.1
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Jump Equation
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114
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12.2
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Hydraulic Jump in Rectangular Channel
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117
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12.3
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Hydraulic Jump in Trapezoidal Channel
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117
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12.4
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Hydraulic Jump in Sloping Channel
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119
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13
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Hydraulic Structures
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124
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13.1
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Flumes (Venturi)
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124
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13.2
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Weirs (Broad – crested weir)
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126
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13.3
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Energy dissipators
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127
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13.4
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Sluice Gates
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129
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14
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Gradually Varied Flow
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133
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14.1
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Equation of Gradually Varied Flow
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133
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14.2
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Classification of Surface Profiles
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135
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14.3
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Flow Profile Sketch
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136
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14.4
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Flow transitions
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138
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15
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Computation of Flow Profile
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142
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15.1
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Introduction
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142
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15.2
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Numeircal integration methods
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142
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15.3
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Computation Procedure throught an Example
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144
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15.4
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Further Computational Information
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146
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16
|
Unsteady Flow
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152
|
16.1
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Basic Types
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152
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16.2
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Rapidly Varied Unsteady Flow
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153
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16.3
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Gradually Varied Unsteady Flows
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155
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16.4
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Software packages
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159
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17
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Hydraulic machinery
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164
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17.1
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Hydropower and Pumping Station
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164
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17.2
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Turbines
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166
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17.3
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Pump and Pipeline
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169
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18
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Appendix: Further Reading
Resources
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182
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