Sustainable natural resource management for scientists and engineers /:
Natural resources support all human productivity. The sustainable management of natural resources is among the preeminent problems of the current century. Sustainability and the implied professional responsibility start here. This book uses applied mathematics familiar to undergraduate engineers and...
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1. Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Cambridge ; New York :
Cambridge University Press,
2009.
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Schlagworte: | |
Online-Zugang: | Volltext |
Zusammenfassung: | Natural resources support all human productivity. The sustainable management of natural resources is among the preeminent problems of the current century. Sustainability and the implied professional responsibility start here. This book uses applied mathematics familiar to undergraduate engineers and scientists to examine natural resource management and its role in framing sustainability. Renewable and nonrenewable resources are covered, along with living and sterile resources. Examples and applications are drawn from petroleum, fisheries, and water resources. Each chapter contains problems illustrating the material. Simple programs in commonly available packages (Excel, MATLAB) support the text. The material is a natural prelude to more advanced study in ecology, conservation, and population dynamics, as well as engineering and science. The mathematical description is kept within what an undergraduate student in the sciences or engineering would normally be expected to master for natural systems. The purpose is to allow students to confront natural resource problems early in their preparation. |
Beschreibung: | 1 online resource (xvii, 230 pages) |
Bibliographie: | Includes bibliographical references (pages 219-223) and index. |
ISBN: | 9780511816222 0511816227 9780511505201 0511505205 9781139129787 1139129783 |
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505 | 0 | |a 1. Sterile Resources -- 1.1. Costless Production of a Sterile Resource -- 1.2. Decision Rules -- 1.3. Discovery -- 1.4. Some Unclosed Issues -- 1.5. Recap -- 1.6. Programs -- 1.7. Problems -- 2. Biomass -- 2.1. Growth and Harvesting -- 2.2. Economic Decision Rules -- 2.3. Effort Dynamics -- 2.4. Intertemporal Decisions: The Influence of r -- 2.5. Technology -- 2.6. Recap -- 2.7. Programs -- 2.8. Problems -- 3. Stage-Structured Populations -- 3.1. Population Structure -- 3.3. Dynamics: Exogenous R -- 3.4. The Fish Farm -- 3.5. N Stages -- 3.6. Recap -- 3.7. Programs -- 3.8. Problems -- 4. The Cohort -- 4.1. Single Cohort Development -- 4.2. Example -- 4.3. Economic Harvesting -- 4.4. Uncontrolled Recruitment -- 4.5. A Cohort of Individuals -- 4.6. Recap -- 4.7. Programs -- 4.8. Problems -- 5. Water -- 5.1. Introduction -- 5.2. Water as a Productive Resource -- 5.3. Example: The Wentworth Basin -- 5.4. Integers -- 5.5. Goals -- 5.6. Dynamics. | |
505 | 8 | |a 5.7. Case Study: The Wheelock/Kemeny Basin -- 5.8. Recap -- 5.9. Programs -- 5.10. Problems -- 6. Pollution -- 6.1. Basic Processes -- 6.2. Case Study: Carbon -- 6.3. Aeration -- 6.4. Multiple Loading -- 6.5. Recap -- 6.6. Programs -- 6.7. Problems -- Appendix. Generating Random Numbers. | |
650 | 0 | |a Natural resources |x Management |x Mathematical models. | |
650 | 0 | |a Natural resources |x Environmental aspects |x Management. | |
650 | 6 | |a Ressources naturelles |x Gestion |x Modèles mathématiques. | |
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Datensatz im Suchindex
DE-BY-FWS_katkey | ZDB-4-EBA-ocn352875076 |
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adam_text | |
any_adam_object | |
author | Lynch, Daniel R. |
author_facet | Lynch, Daniel R. |
author_role | |
author_sort | Lynch, Daniel R. |
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building | Verbundindex |
bvnumber | localFWS |
callnumber-first | H - Social Science |
callnumber-label | HC85 |
callnumber-raw | HC85 .L96 2009 |
callnumber-search | HC85 .L96 2009 |
callnumber-sort | HC 285 L96 42009 |
callnumber-subject | HC - Economic History and Conditions |
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contents | 1. Sterile Resources -- 1.1. Costless Production of a Sterile Resource -- 1.2. Decision Rules -- 1.3. Discovery -- 1.4. Some Unclosed Issues -- 1.5. Recap -- 1.6. Programs -- 1.7. Problems -- 2. Biomass -- 2.1. Growth and Harvesting -- 2.2. Economic Decision Rules -- 2.3. Effort Dynamics -- 2.4. Intertemporal Decisions: The Influence of r -- 2.5. Technology -- 2.6. Recap -- 2.7. Programs -- 2.8. Problems -- 3. Stage-Structured Populations -- 3.1. Population Structure -- 3.3. Dynamics: Exogenous R -- 3.4. The Fish Farm -- 3.5. N Stages -- 3.6. Recap -- 3.7. Programs -- 3.8. Problems -- 4. The Cohort -- 4.1. Single Cohort Development -- 4.2. Example -- 4.3. Economic Harvesting -- 4.4. Uncontrolled Recruitment -- 4.5. A Cohort of Individuals -- 4.6. Recap -- 4.7. Programs -- 4.8. Problems -- 5. Water -- 5.1. Introduction -- 5.2. Water as a Productive Resource -- 5.3. Example: The Wentworth Basin -- 5.4. Integers -- 5.5. Goals -- 5.6. Dynamics. 5.7. Case Study: The Wheelock/Kemeny Basin -- 5.8. Recap -- 5.9. Programs -- 5.10. Problems -- 6. Pollution -- 6.1. Basic Processes -- 6.2. Case Study: Carbon -- 6.3. Aeration -- 6.4. Multiple Loading -- 6.5. Recap -- 6.6. Programs -- 6.7. Problems -- Appendix. Generating Random Numbers. |
ctrlnum | (OCoLC)352875076 |
dewey-full | 333.7 |
dewey-hundreds | 300 - Social sciences |
dewey-ones | 333 - Economics of land and energy |
dewey-raw | 333.7 |
dewey-search | 333.7 |
dewey-sort | 3333.7 |
dewey-tens | 330 - Economics |
discipline | Wirtschaftswissenschaften |
format | Electronic eBook |
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genre | Electronic books. |
genre_facet | Electronic books. |
id | ZDB-4-EBA-ocn352875076 |
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indexdate | 2024-10-25T16:17:07Z |
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language | English |
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publisher | Cambridge University Press, |
record_format | marc |
spelling | Lynch, Daniel R. Sustainable natural resource management for scientists and engineers / Daniel R. Lynch. Cambridge ; New York : Cambridge University Press, 2009. 1 online resource (xvii, 230 pages) text txt rdacontent computer c rdamedia online resource cr rdacarrier polychrome. rdacc http://rdaregistry.info/termList/RDAColourContent/1003 text file rdaft http://rdaregistry.info/termList/fileType/1002 Includes bibliographical references (pages 219-223) and index. Natural resources support all human productivity. The sustainable management of natural resources is among the preeminent problems of the current century. Sustainability and the implied professional responsibility start here. This book uses applied mathematics familiar to undergraduate engineers and scientists to examine natural resource management and its role in framing sustainability. Renewable and nonrenewable resources are covered, along with living and sterile resources. Examples and applications are drawn from petroleum, fisheries, and water resources. Each chapter contains problems illustrating the material. Simple programs in commonly available packages (Excel, MATLAB) support the text. The material is a natural prelude to more advanced study in ecology, conservation, and population dynamics, as well as engineering and science. The mathematical description is kept within what an undergraduate student in the sciences or engineering would normally be expected to master for natural systems. The purpose is to allow students to confront natural resource problems early in their preparation. 1. Sterile Resources -- 1.1. Costless Production of a Sterile Resource -- 1.2. Decision Rules -- 1.3. Discovery -- 1.4. Some Unclosed Issues -- 1.5. Recap -- 1.6. Programs -- 1.7. Problems -- 2. Biomass -- 2.1. Growth and Harvesting -- 2.2. Economic Decision Rules -- 2.3. Effort Dynamics -- 2.4. Intertemporal Decisions: The Influence of r -- 2.5. Technology -- 2.6. Recap -- 2.7. Programs -- 2.8. Problems -- 3. Stage-Structured Populations -- 3.1. Population Structure -- 3.3. Dynamics: Exogenous R -- 3.4. The Fish Farm -- 3.5. N Stages -- 3.6. Recap -- 3.7. Programs -- 3.8. Problems -- 4. The Cohort -- 4.1. Single Cohort Development -- 4.2. Example -- 4.3. Economic Harvesting -- 4.4. Uncontrolled Recruitment -- 4.5. A Cohort of Individuals -- 4.6. Recap -- 4.7. Programs -- 4.8. Problems -- 5. Water -- 5.1. Introduction -- 5.2. Water as a Productive Resource -- 5.3. Example: The Wentworth Basin -- 5.4. Integers -- 5.5. Goals -- 5.6. Dynamics. 5.7. Case Study: The Wheelock/Kemeny Basin -- 5.8. Recap -- 5.9. Programs -- 5.10. Problems -- 6. Pollution -- 6.1. Basic Processes -- 6.2. Case Study: Carbon -- 6.3. Aeration -- 6.4. Multiple Loading -- 6.5. Recap -- 6.6. Programs -- 6.7. Problems -- Appendix. Generating Random Numbers. Natural resources Management Mathematical models. Natural resources Environmental aspects Management. Ressources naturelles Gestion Modèles mathématiques. Ressources naturelles Aspect de l'environnement Gestion. BUSINESS & ECONOMICS Environmental Economics. bisacsh BUSINESS & ECONOMICS Green Business. bisacsh NATURE Natural Resources. bisacsh Natural resources Management Mathematical models fast Electronic books. has work: Sustainable natural resource management for scientists and engineers (Text) https://id.oclc.org/worldcat/entity/E39PCGxcvq4GVVRPTPPtJ36h73 https://id.oclc.org/worldcat/ontology/hasWork Print version: Lynch, Daniel R. Sustainable natural resource management for scientists and engineers. Cambridge ; New York : Cambridge University Press, 2009 (DLC) 2008053176 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=400761 Volltext CBO01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=400761 Volltext |
spellingShingle | Lynch, Daniel R. Sustainable natural resource management for scientists and engineers / 1. Sterile Resources -- 1.1. Costless Production of a Sterile Resource -- 1.2. Decision Rules -- 1.3. Discovery -- 1.4. Some Unclosed Issues -- 1.5. Recap -- 1.6. Programs -- 1.7. Problems -- 2. Biomass -- 2.1. Growth and Harvesting -- 2.2. Economic Decision Rules -- 2.3. Effort Dynamics -- 2.4. Intertemporal Decisions: The Influence of r -- 2.5. Technology -- 2.6. Recap -- 2.7. Programs -- 2.8. Problems -- 3. Stage-Structured Populations -- 3.1. Population Structure -- 3.3. Dynamics: Exogenous R -- 3.4. The Fish Farm -- 3.5. N Stages -- 3.6. Recap -- 3.7. Programs -- 3.8. Problems -- 4. The Cohort -- 4.1. Single Cohort Development -- 4.2. Example -- 4.3. Economic Harvesting -- 4.4. Uncontrolled Recruitment -- 4.5. A Cohort of Individuals -- 4.6. Recap -- 4.7. Programs -- 4.8. Problems -- 5. Water -- 5.1. Introduction -- 5.2. Water as a Productive Resource -- 5.3. Example: The Wentworth Basin -- 5.4. Integers -- 5.5. Goals -- 5.6. Dynamics. 5.7. Case Study: The Wheelock/Kemeny Basin -- 5.8. Recap -- 5.9. Programs -- 5.10. Problems -- 6. Pollution -- 6.1. Basic Processes -- 6.2. Case Study: Carbon -- 6.3. Aeration -- 6.4. Multiple Loading -- 6.5. Recap -- 6.6. Programs -- 6.7. Problems -- Appendix. Generating Random Numbers. Natural resources Management Mathematical models. Natural resources Environmental aspects Management. Ressources naturelles Gestion Modèles mathématiques. Ressources naturelles Aspect de l'environnement Gestion. BUSINESS & ECONOMICS Environmental Economics. bisacsh BUSINESS & ECONOMICS Green Business. bisacsh NATURE Natural Resources. bisacsh Natural resources Management Mathematical models fast |
title | Sustainable natural resource management for scientists and engineers / |
title_auth | Sustainable natural resource management for scientists and engineers / |
title_exact_search | Sustainable natural resource management for scientists and engineers / |
title_full | Sustainable natural resource management for scientists and engineers / Daniel R. Lynch. |
title_fullStr | Sustainable natural resource management for scientists and engineers / Daniel R. Lynch. |
title_full_unstemmed | Sustainable natural resource management for scientists and engineers / Daniel R. Lynch. |
title_short | Sustainable natural resource management for scientists and engineers / |
title_sort | sustainable natural resource management for scientists and engineers |
topic | Natural resources Management Mathematical models. Natural resources Environmental aspects Management. Ressources naturelles Gestion Modèles mathématiques. Ressources naturelles Aspect de l'environnement Gestion. BUSINESS & ECONOMICS Environmental Economics. bisacsh BUSINESS & ECONOMICS Green Business. bisacsh NATURE Natural Resources. bisacsh Natural resources Management Mathematical models fast |
topic_facet | Natural resources Management Mathematical models. Natural resources Environmental aspects Management. Ressources naturelles Gestion Modèles mathématiques. Ressources naturelles Aspect de l'environnement Gestion. BUSINESS & ECONOMICS Environmental Economics. BUSINESS & ECONOMICS Green Business. NATURE Natural Resources. Natural resources Management Mathematical models Electronic books. |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=400761 |
work_keys_str_mv | AT lynchdanielr sustainablenaturalresourcemanagementforscientistsandengineers |