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<meta name="citation_title" content="Systems Thinking">
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'''''Lead Author:''''' ''Rick Adcock''
<meta name="citation_author" content="Pyster, Art">
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<meta name="citation_author" content="Olwell, David H.">
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This knowledge area (KA) provides a guide to knowledge about {{Term|Systems Thinking (glossary)|systems thinking}} which is the integrating {{Term|Paradigm (glossary)|paradigm}} for {{Term|Systems Science (glossary)|systems science}} and {{Term|Systems Approach (glossary)|systems approaches}} to practice.  
<meta name="citation_author" content="Hutchison, Nicole">
 
<meta name="citation_author" content="Enck, Stephanie">
 
<meta name="citation_author" content="Anthony, James F., Jr.">
 
<meta name="citation_author" content="Henry, Devanandham">
 
<meta name="citation_author" content="Squires, Alice (eds)">
 
<meta name="citation_publication_date" content="2012/11/30">
 
<meta name="citation_journal_title" content="Guide to the Systems Engineering Body of Knowledge (SEBoK)">
 
<meta name="citation_volume" content="version 1.0.1">
 
<meta name="citation_pdf_url" content="http://www.sebokwiki.org/1.0.1/index.php?title=Main_Page"></html>
 
This knowledge area (KA) provides a guide to knowledge about [[Systems Thinking (glossary) | systems thinking]] which is the integrating [[Paradigm (glossary) | paradigm]] for [[Systems Science (glossary) | systems science]] and [[Systems Approach (glossary)| systems approaches]] to practice.  
 
  
This is part of the wider [[System (glossary) | systems]] knowledge which can help to provide a common language and intellectual foundation; and make practical systems [[Concept (glossary) | concepts]], [[Principle (glossary) | principles]], [[Pattern (glossary) | patterns]] and tools accessible to [[Systems Engineering (glossary) | systems engineering]] (SE), as discussed in the [[Systems|Introduction to Part 2]].   
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This is part of the wider {{Term|System (glossary)|systems}} knowledge which can help to provide a common language and intellectual foundation, and make practical systems {{Term|Concept (glossary)|concepts}}, {{Term|Principle (glossary)|principles}}, {{Term|Pattern (glossary)|patterns}} and tools accessible to {{Term|Systems Engineering (glossary)|systems engineering}} (SE), as discussed in the [[Foundations of Systems Engineering|Introduction to Part 2]].   
  
 
==Topics==
 
==Topics==
Each part of the Guide to the SE Body of Knowledge (SEBoK) is divided into KAs, which are groupings of information with a related theme. The KAs in turn are divided into topics. This KA contains the following topics:  
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Each part of the Guide to the SE Body of Knowledge (SEBoK) is divided into KAs, which are groupings of information with a related theme. The KAs, in turn, are divided into topics. This KA contains the following topics:  
 
* [[What is Systems Thinking?]]
 
* [[What is Systems Thinking?]]
 
* [[Concepts of Systems Thinking]]
 
* [[Concepts of Systems Thinking]]
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==Introduction==
 
==Introduction==
[[Systems Thinking (glossary) | Systems thinking]] is concerned with understanding or intervening in [[Problem (glossary) | problem]] situations, based on the principles and concepts of the systems paradigm. This KA offers some basic definitions of systems thinking.  The following diagram summarizes how the knowledge is presented.
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{{Term|Systems Thinking (glossary)|Systems thinking}} is concerned with understanding or intervening in {{Term|Problem (glossary)|problem}} situations, based on the principles and concepts of the systems paradigm. This KA offers some basic definitions of systems thinking.  The following diagram summarizes how the knowledge is presented.
  
 
[[File:Fig2_Systems_Thinking_and_Systems_Science_RA.png|550px|thumb|center|'''Figure 1. Systems Thinking in the SEBoK.''' (SEBoK Original)]]
 
[[File:Fig2_Systems_Thinking_and_Systems_Science_RA.png|550px|thumb|center|'''Figure 1. Systems Thinking in the SEBoK.''' (SEBoK Original)]]
  
 
Systems thinking considers the similarities between systems from different domains in terms of a set of common systems concepts, principles and patterns:  
 
Systems thinking considers the similarities between systems from different domains in terms of a set of common systems concepts, principles and patterns:  
* A [[Principle (glossary) | principle]] is a rule of conduct or [[Behavior (glossary) | behavior]]. To take this further, a principle is a “basic generalization that is accepted as true and that can be used as a basis for reasoning or conduct” (WordWeb.com).   
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* A {{Term|Principle (glossary)|principle}} is a rule of conduct or {{Term|Behavior (glossary)|behavior}}. To take this further, a principle is a “basic generalization that is accepted as true and that can be used as a basis for reasoning or conduct” (WordWeb.com).   
*A [[Concept (glossary) | concept]] is an abstraction, or a general idea inferred or derived from specific instances.   
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*A {{Term|Concept (glossary)|concept}} is an abstraction, or a general idea inferred or derived from specific instances.   
  
 
Principles depend on concepts in order to state a “truth.” Hence, principles and concepts go hand in hand; principles cannot exist without concepts and concepts are not very useful without principles to help guide the proper way to act (Lawson and Martin 2008).  
 
Principles depend on concepts in order to state a “truth.” Hence, principles and concepts go hand in hand; principles cannot exist without concepts and concepts are not very useful without principles to help guide the proper way to act (Lawson and Martin 2008).  
  
Many sources combine both concepts and the principles based on them. The [[Concepts of Systems Thinking]] article presents concepts extracted from a variety of theory and practice sources. The [[Principles of Systems Thinking]] article, in turn, presents a summary of important principles referring back to the concepts upon which they are based is also provided.  
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Many sources combine both concepts and the principles based on them. The [[Concepts of Systems Thinking]] article presents concepts extracted from a variety of theory and practice sources. The [[Principles of Systems Thinking]] article, in turn, presents a summary of important principles referring back to the concepts upon which they are based.  
  
 
A pattern is an expression of observable similarities found in systems from different domains. Patterns exist in both natural and man-made systems and are used in systems science and systems engineering.  A summary of the different classes of patterns and the use of patterns to support a systems approach is discussed in the final [[Patterns of Systems Thinking]] article.
 
A pattern is an expression of observable similarities found in systems from different domains. Patterns exist in both natural and man-made systems and are used in systems science and systems engineering.  A summary of the different classes of patterns and the use of patterns to support a systems approach is discussed in the final [[Patterns of Systems Thinking]] article.
  
The practical application of systems thinking often employs the use of abstract system representations or [[Model (glossary) | models]].  Some mention of models is made in this KA; additionally, a more complete guide provided in [[Representing Systems with Models]].
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The practical application of systems thinking often employs the use of abstract system representations or {{Term|Model (glossary)|models}}.  Some mention of models is made in this KA; additionally, a more complete guide is provided in [[Representing Systems with Models]].
  
 
==References==
 
==References==
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===Works Cited===
 
===Works Cited===
  
Lawson, H., and J.N. Martin. 2008. "On the Use of Concepts and Principles for Improving Systems Engineering Practice". Proceedings of the 18th Annual International Council on Systems Engineering (INCOSE) International Symposium, 5-19 June 2008, Utrecht, The Netherlands.
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Lawson, H., and J.N. Martin. 2008. "On the Use of Concepts and Principles for Improving Systems Engineering Practice," in Proceedings of the 18th Annual International Council on Systems Engineering (INCOSE) International Symposium, Utrecht, The Netherlands, 5-19 June 2008.
  
WordWeb Online. n.d. Definition:Principle. Retrieved from http://www.wordwebonline.com/en/PRINCIPLE
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WordWeb Online. n.d. "Definition: Principle." Accessed Dec 3, 2014.  Available at: WordWeb Online http://www.wordwebonline.com/en/PRINCIPLE.
  
 
===Primary References===
 
===Primary References===
  
Bertalanffy, L. von. 1968. ''[[General System Theory: Foundations, Development, Applications]]''. Revised ed. New York, NY: Braziller.   
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Bertalanffy, L. von. 1968. ''[[General System Theory: Foundations, Development, Applications]].'' Revised ed. New York, NY, USA: Braziller.   
  
Checkland, P. 1999. ''[[Systems Thinking, Systems Practice]]'', New York, NY, USA: John Wiley & Sons.
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Checkland, P. 1999. ''[[Systems Thinking, Systems Practice]].'' New York, NY, USA: John Wiley & Sons.
  
 
Churchman, C. W. 1968. ''[[The Systems Approach and its Enemies]]''. New York, NY, USA: Dell Publishing.
 
Churchman, C. W. 1968. ''[[The Systems Approach and its Enemies]]''. New York, NY, USA: Dell Publishing.
  
Flood, R. L. 1999. ''[[Rethinking the Fifth Discipline]]: Learning Within The Unknowable. London UK: Routledge.
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Flood, R. L. 1999. ''[[Rethinking the Fifth Discipline]]: Learning Within the Unknowable.'' London UK: Routledge.
 
 
INCOSE. 2011. ''[[INCOSE Systems Engineering Handbook]]: A Guide for System Life Cycle Processes and Activities'', version 3.2.1. San Diego, CA, USA: International Council on Systems Engineering (INCOSE), INCOSE-TP-2003-002-03.2.1.
 
  
WordWeb Online. n.d. Definition:Principle. Retrieved from http://www.wordwebonline.com/en/PRINCIPLE
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INCOSE. 2012. ''[[INCOSE Systems Engineering Handbook]]: A Guide for System Life Cycle Processes and Activities'', version 3.2.2. San Diego, CA, USA: International Council on Systems Engineering (INCOSE), INCOSE-TP-2003-002-03.2.1.
  
 
===Additional References===
 
===Additional References===
  
Ackoff, R.L. 1971. "Towards a System of Systems Concepts". ''Management Science.'' 17(11).  
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Ackoff, R.L. 1971. "Towards a system of systems concepts," ''Management Science,'' vol. 17, no. 11.  
  
Hitchins, D. 2009. "What Are the General Principles Applicable to Systems?" INCOSE ''Insight.'' 12(4).
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Hitchins, D. 2009. "What are the general principles applicable to systems?" INCOSE ''Insight,'' vol. 12, no. 4.
  
 
Lawson, H. 2010. ''A Journey Through the Systems Landscape''. London, UK: College Publications, Kings College.
 
Lawson, H. 2010. ''A Journey Through the Systems Landscape''. London, UK: College Publications, Kings College.
  
Ramage, Magnus, and Karen Shipp. 2009. ''Systems Thinkers''. Dordrecht: Springer.
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Ramage, M. and K. Shipp. 2009. ''Systems Thinkers''. Dordrecht, The Netherlands: Springer.
  
Weinberg, Gerald M. 1975. ''An Introduction to General Systems Thinking''. New York: Wiley.
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Weinberg, G. M. 1975. ''An Introduction to General Systems Thinking''. New York, NY, USA: Wiley.
  
 
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<center>[[Systems Approaches|< Previous Article]] | [[Systems|Parent Article]] | [[What is Systems Thinking?|Next Article >]]</center>
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<center>[[Emergence|< Previous Article]] | [[Foundations of Systems Engineering|Parent Article]] | [[What is Systems Thinking?|Next Article >]]</center>
 
 
 
 
 
 
{{DISQUS}}
 
  
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<center>'''SEBoK v. 2.10, released 06 May 2024'''</center>
  
 
[[Category:Part 2]][[Category:Knowledge Area]]
 
[[Category:Part 2]][[Category:Knowledge Area]]

Latest revision as of 23:16, 2 May 2024


Lead Author: Rick Adcock


This knowledge area (KA) provides a guide to knowledge about systems thinkingsystems thinking which is the integrating paradigmparadigm for systems sciencesystems science and systems approachessystems approaches to practice.

This is part of the wider systemssystems knowledge which can help to provide a common language and intellectual foundation, and make practical systems conceptsconcepts, principlesprinciples, patternspatterns and tools accessible to systems engineeringsystems engineering (SE), as discussed in the Introduction to Part 2.

Topics

Each part of the Guide to the SE Body of Knowledge (SEBoK) is divided into KAs, which are groupings of information with a related theme. The KAs, in turn, are divided into topics. This KA contains the following topics:

Introduction

Systems thinkingSystems thinking is concerned with understanding or intervening in problemproblem situations, based on the principles and concepts of the systems paradigm. This KA offers some basic definitions of systems thinking. The following diagram summarizes how the knowledge is presented.

Figure 1. Systems Thinking in the SEBoK. (SEBoK Original)

Systems thinking considers the similarities between systems from different domains in terms of a set of common systems concepts, principles and patterns:

  • A principleprinciple is a rule of conduct or behaviorbehavior. To take this further, a principle is a “basic generalization that is accepted as true and that can be used as a basis for reasoning or conduct” (WordWeb.com).
  • A conceptconcept is an abstraction, or a general idea inferred or derived from specific instances.

Principles depend on concepts in order to state a “truth.” Hence, principles and concepts go hand in hand; principles cannot exist without concepts and concepts are not very useful without principles to help guide the proper way to act (Lawson and Martin 2008).

Many sources combine both concepts and the principles based on them. The Concepts of Systems Thinking article presents concepts extracted from a variety of theory and practice sources. The Principles of Systems Thinking article, in turn, presents a summary of important principles referring back to the concepts upon which they are based.

A pattern is an expression of observable similarities found in systems from different domains. Patterns exist in both natural and man-made systems and are used in systems science and systems engineering. A summary of the different classes of patterns and the use of patterns to support a systems approach is discussed in the final Patterns of Systems Thinking article.

The practical application of systems thinking often employs the use of abstract system representations or modelsmodels. Some mention of models is made in this KA; additionally, a more complete guide is provided in Representing Systems with Models.

References

Works Cited

Lawson, H., and J.N. Martin. 2008. "On the Use of Concepts and Principles for Improving Systems Engineering Practice," in Proceedings of the 18th Annual International Council on Systems Engineering (INCOSE) International Symposium, Utrecht, The Netherlands, 5-19 June 2008.

WordWeb Online. n.d. "Definition: Principle." Accessed Dec 3, 2014. Available at: WordWeb Online http://www.wordwebonline.com/en/PRINCIPLE.

Primary References

Bertalanffy, L. von. 1968. General System Theory: Foundations, Development, Applications. Revised ed. New York, NY, USA: Braziller.

Checkland, P. 1999. Systems Thinking, Systems Practice. New York, NY, USA: John Wiley & Sons.

Churchman, C. W. 1968. The Systems Approach and its Enemies. New York, NY, USA: Dell Publishing.

Flood, R. L. 1999. Rethinking the Fifth Discipline: Learning Within the Unknowable. London UK: Routledge.

INCOSE. 2012. INCOSE Systems Engineering Handbook: A Guide for System Life Cycle Processes and Activities, version 3.2.2. San Diego, CA, USA: International Council on Systems Engineering (INCOSE), INCOSE-TP-2003-002-03.2.1.

Additional References

Ackoff, R.L. 1971. "Towards a system of systems concepts," Management Science, vol. 17, no. 11.

Hitchins, D. 2009. "What are the general principles applicable to systems?" INCOSE Insight, vol. 12, no. 4.

Lawson, H. 2010. A Journey Through the Systems Landscape. London, UK: College Publications, Kings College.

Ramage, M. and K. Shipp. 2009. Systems Thinkers. Dordrecht, The Netherlands: Springer.

Weinberg, G. M. 1975. An Introduction to General Systems Thinking. New York, NY, USA: Wiley.


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