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Systemics
In the context of systems science and systems philosophy, systemics is an initiative to study systems. It is an attempt at developing logical, mathematical, engineering and philosophical paradigms and frameworks in which physical, technological, biological, social, cognitive and metaphysical systems can be studied and modeled. The term "systemics" was coined in the 1970s by Mario Bunge and others, as an alternative paradigm for research related to general systems theory and systems science. Mario Bunge (1979). ''A World of Systems''. Dordrecht; Boston: Reidel, p. 1. See also * Autopoiesis * Cybernetics * Dynamic system * Integral theory * Meta-knowledge * Meta-system * Meta-theory * Relativism * Reliabilism * System engineering * Scientific paradigm * Socio-cognitive * System dynamics * Systemography * Systems theory Systems theory is the Transdisciplinarity, transdisciplinary study of systems, i.e. cohesive groups of interrelated, interdependent components th ...
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Charles François (systems Scientist)
Charles François (5 September 1922 – 31 July 2019) was a Belgian administrator, editor and scientist in the fields of cybernetics, systems theory and systems science, internationally known for his main work the '' International Encyclopedia of Systems and Cybernetics.'' Biography Charles François was born in Belgium in 1922, and studied consular and commercial sciences at Brussels Free University. After the Second World War he emigrated to the Belgian Congo, where he stayed from 1945 to 1960, at first as an administrative officer in government and later on creating and developing his own commercial business, also exercising journalism and the socio-political chronicle. Later, he moved to Argentina in 1963, and managed the commercial Office of the Belgian Embassy in Buenos Aires from 1966 to his retirement in 1987."Charles François; Biographical note," at ''isss.org/projects,'' Last modified: 2007/06/10. . François inspired and founded the Group for the Study of Integrat ...
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Cognitive
Cognition is the "mental action or process of acquiring knowledge and understanding through thought, experience, and the senses". It encompasses all aspects of intellectual functions and processes such as: perception, attention, thought, imagination, intelligence, the formation of knowledge, memory and working memory, judgment and evaluation, reasoning and computation, problem-solving and decision-making, comprehension and production of language. Cognitive processes use existing knowledge to discover new knowledge. Cognitive processes are analyzed from very different perspectives within different contexts, notably in the fields of linguistics, musicology, anesthesia, neuroscience, psychiatry, psychology, education, philosophy, anthropology, biology, systemics, logic, and computer science. These and other approaches to the analysis of cognition (such as embodied cognition) are synthesized in the developing field of cognitive science, a progressively auton ...
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Mario Bunge
Mario Augusto Bunge ( ; ; September 21, 1919 – February 24, 2020) was an Argentine-Canadian philosopher and physicist. His philosophical writings combined scientific realism, systemism, materialism, emergentism, and other principles. He was an advocate of "exact philosophy" and a critic of existentialist, hermeneutical, Phenomenology (philosophy), phenomenological philosophy, and postmodernism. He was popularly known for his opinions against pseudoscience. Early and personal life Bunge was born on September 21, 1919, in Florida Oeste, Buenos Aires. His mother, Marie Herminie Müser, was a German nurse who left Germany just before the beginning of World War I. His father, Augusto Bunge, also of some German descent, was an Argentine physician and socialist legislator. Mario, who was the couple's only child, was raised without any religious education, and enjoyed a happy and stimulating childhood in the outskirts of Buenos Aires. Bunge had four children: Carlos Federico and Mari ...
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Cybernetics
Cybernetics is the transdisciplinary study of circular causal processes such as feedback and recursion, where the effects of a system's actions (its outputs) return as inputs to that system, influencing subsequent action. It is concerned with general principles that are relevant across multiple contexts, including in engineering, ecological, economic, biological, cognitive and social systems and also in practical activities such as designing, learning, and managing. Cybernetics' transdisciplinary character has meant that it intersects with a number of other fields, leading to it having both wide influence and diverse interpretations. The field is named after an example of circular causal feedback—that of steering a ship (the ancient Greek κυβερνήτης (''kybernḗtēs'') refers to the person who steers a ship). In steering a ship, the position of the rudder is adjusted in continual response to the effect it is observed as having, forming a feedback loop throu ...
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Socio-cognitive
Sociocognitive or socio-cognitive is a term especially used when complex cognitive and social properties are reciprocally connected and essential for a given problem. It has been used in academic literature with three different meanings: # It can indicate a branch of science, engineering or technology, such as ''socio-cognitive research'', or ''socio-cognitive interactions'', # It can refer to the integration of the cognitive and social properties of systems, processes, functions, as well as models, or # It can describe how processes of group formation effect cognition, studied in cognitive sociology. Socio-cognitive engineering Socio-cognitive research is human factor and socio-organizational factor based, and assumes an integrated knowledge engineering, environment and business modeling perspective, therefore it is not '' social cognition'' which rather is a branch of psychology focused on ''how people process social information''. Socio-cognitive engineering (SCE) in ...
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Systems Philosophy
Systems philosophy is a discipline aimed at constructing a new philosophy (in the sense of worldview) by using systems concepts. The discipline was first described by Ervin Laszlo in his 1972 book ''Introduction to Systems Philosophy: Toward a New Paradigm of Contemporary Thought''. It has been described as the "reorientation of thought and world view ensuing from the introduction of "systems" as a new scientific paradigm". Overview Soon after Laszlo founded systems philosophy it was placed in context by Ludwig von Bertalanffy, one of the founders of general system theory, when he categorized three domains within systemics namely: # "Systems science", which is concerned with "scientific exploration and theory of "systems" in the various sciences...and general system theory as doctrine of principles applying to all systems"; # "Systems technology", which is concerned with "the problems arising in modern technology and society, comprising both the "hardware" of computers, automati ...
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Systems Science
Systems science, also referred to as systems research or simply systems, is a transdisciplinary field that is concerned with understanding simple and complex systems in nature and society, which leads to the advancements of formal, natural, social, and applied attributions throughout engineering, technology, and science itself. To systems scientists, the world can be understood as a system of systems. The field aims to develop transdisciplinary foundations that are applicable in a variety of areas, such as psychology, biology, medicine, communication, business, technology, computer science, engineering, and social sciences. Themes commonly stressed in system science are (a) holistic view, (b) interaction between a system and its embedding environment, and (c) complex (often subtle) trajectories of dynamic behavior that sometimes are stable (and thus reinforcing), while at various ' boundary conditions' can become wildly unstable (and thus destructive). Concerns about Earth-scale ...
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System Engineering
Systems engineering is an interdisciplinary field of engineering and engineering management that focuses on how to design, integrate, and manage complex systems over their Enterprise life cycle, life cycles. At its core, systems engineering utilizes systems thinking principles to organize this body of knowledge. The individual outcome of such efforts, an engineered system, can be defined as a combination of components that work in synergy to collectively perform a useful Function (engineering), function. Issues such as requirements engineering, Reliability engineering, reliability, logistics, coordination of different teams, testing and evaluation, maintainability, and many other Discipline (academia), disciplines, aka List of system quality attributes, "ilities", necessary for successful system design, development, implementation, and ultimate decommission become more difficult when dealing with large or complex projects. Systems engineering deals with work processes, optimizat ...
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Béla H
Béla may refer to: * Béla (crater), an elongated lunar crater * Béla (given name), a common Hungarian male given name See also * Bela (other) * Belá (other) * Bělá (other) Bělá may refer to: Places in the Czech Republic * Bělá (Havlíčkův Brod District), a municipality and village in the Vysočina Region * Bělá (Opava District), a municipality and village in the Moravian-Silesian Region * Bělá (Pelhřimov D ... {{DEFAULTSORT:Bela de:Béla pl:Béla ...
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Triune Continuum Paradigm
The triune continuum paradigm ('' triune'': "both three and one at the same time") is a paradigm for general system modeling published in 2002.A. Naumenko''Triune Continuum Paradigm: a paradigm for general system modeling and its applications for UML and RM-ODP'' Doctoral thesis 2581, Swiss Federal Institute of Technology – Lausanne. EPFL, June 2002. The paradigm allows for building of rigorous conceptual frameworks employed for systems modeling in various application contexts (highly tailored as well as interdisciplinary). Overview As stated in the '' Cambridge Dictionary of Philosophy'':R. Audi (general editor). The Cambridge Dictionary of Philosophy, second edition; Cambridge University Press 1999. "Paradigm, as used by Thomas Kuhn (''The Structure of Scientific Revolutions'', 1962), refers to a set of scientific and metaphysical beliefs that make up a theoretical framework within which scientific theories can be tested, evaluated and if necessary revised." The triune conti ...
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Systems Theory
Systems theory is the Transdisciplinarity, transdisciplinary study of systems, i.e. cohesive groups of interrelated, interdependent components that can be natural or artificial. Every system has causal boundaries, is influenced by its context, defined by its structure, function and role, and expressed through its relations with other systems. A system is "more than the sum of its parts" when it expresses synergy or emergent behavior. Changing one component of a system may affect other components or the whole system. It may be possible to predict these changes in patterns of behavior. For systems that learn and adapt, the growth and the degree of adaptation depend upon how well the system is engaged with its environment and other contexts influencing its organization. Some systems support other systems, maintaining the other system to prevent failure. The goals of systems theory are to model a system's dynamics, Theory of constraints, constraints, conditions, and relations; and to ...
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Systemography
Systemography (SGR) is a process where phenomena regarded as complex are purposefully represented as a constructed model of a general system. It may be used in three different ways: conceptualization, analysis, and simulation. The work of Jean-Louis Le Moigne is associated with systemography. Systemography modeling consists of building, simultaneously, the process' operational, informational and decisional systemographs in modeling phase. Ettore Bresciani Filho (2001) recommends the following order in systemography modeling: #Define the border of the system to be modeled, characterizing the border's processors responsible for the system's inputs and outputs. #Build the operational systemograph of the production system, disposing in a block diagram the production process' different stages, representing each with an operational processor. #Build the informational systemograph of the production system, disposing in a block diagram the different stages of the information's generatio ...
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