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1 Deterministic and Stochastic Population Models |
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1 | (12) |
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1.1 Malthus Equation and Stochastic Malthus Equations |
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1 | (3) |
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1.2 Basic Properties for SDE Models |
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4 | (3) |
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1.3 SDEs and Partial Differential Equations |
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7 | (6) |
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12 | (1) |
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2 Linear Structured Population Based on SDE |
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13 | (36) |
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2.1 Age-Structured Population Model with Individual Stochasticity |
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14 | (3) |
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2.2 Path Integral Representation and Classical Life Schedule |
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17 | (7) |
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2.2.1 Path Integral Representation and Analytical Mechanics in Demography |
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17 | (4) |
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2.2.2 Lagrangian and Hamiltonian Expressions in Path Integral |
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21 | (3) |
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2.3 Characteristic Function and Eigenfunctions |
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24 | (8) |
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2.3.1 Characteristic Function and Asymptotic Population Behavior |
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25 | (2) |
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2.3.2 Eigenfunctions and Feynman-Kac Formula |
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27 | (5) |
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2.4 Demographic Indicators |
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32 | (2) |
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2.5 Application to a Semelparity Model |
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34 | (15) |
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46 | (3) |
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3 Non-linear Structured Population Models |
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49 | (16) |
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49 | (2) |
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3.2 Non-linear Multi-state Population Model |
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51 | (1) |
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3.3 Stability of Stationary Population |
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52 | (5) |
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3.3.1 Stationary Population |
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52 | (2) |
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3.3.2 Characteristic Equation for Local Stability |
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54 | (3) |
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57 | (8) |
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3.4.1 Resource Acquisition Competition Model and Stationary Population |
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57 | (2) |
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3.4.2 Local Stability of Stationary Population in Semelparous Species |
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59 | (4) |
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63 | (2) |
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4 Life History Evolution and Adaptive Stochastic Controls |
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65 | (22) |
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4.1 Basic Theorem for Adaptive Life History |
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65 | (3) |
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4.2 Optimal Stopping Problem in Life Histories |
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68 | (3) |
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4.3 Adaptive Reproductive Timing for Semelparous Species |
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71 | (1) |
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4.4 Optimal Life Schedule Problem and Hamilton--Jacobi--Bellman Equation |
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72 | (5) |
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75 | (2) |
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4.5 Reconsideration of r/K Selection Theory |
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77 | (10) |
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4.5.1 Adaptive Resource Utilization Model in Optimal Foraging Problem |
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77 | (3) |
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4.5.2 Complicated Relationship among Demographic Indices under the Density Effect |
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80 | (4) |
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84 | (1) |
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84 | (3) |
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5 Application to External Stochasticity |
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87 | (12) |
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5.1 External Stochasticity and Perturbation Method |
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87 | (12) |
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97 | (2) |
Epilogue: Population Dynamics from the Perspective of Individual Stochasticity |
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99 | |