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An entropic approach to living systems

Author

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  • Tiezzi, Enzo
  • Pulselli, Riccardo Maria

Abstract

This paper discusses how recent thermodynamic theories, primarily based on Prigogine's evolutionary physics, give rice to a new science for understanding the nature of living systems. Contributes by researchers such as Vermodsky, Lovelock, Ulanowicz, Barbieri, Jørgensen and Svirezhev enhanced the key role of thermodynamics to lead the foundation for a new description of nature. They highlighted the theoretical basis of an unexplored set of scientific tools for a deeper insight into the evolutionary nature of living systems.

Suggested Citation

  • Tiezzi, Enzo & Pulselli, Riccardo Maria, 2008. "An entropic approach to living systems," Ecological Modelling, Elsevier, vol. 216(2), pages 229-231.
  • Handle: RePEc:eee:ecomod:v:216:y:2008:i:2:p:229-231
    DOI: 10.1016/j.ecolmodel.2008.03.029
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    Citations

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    Cited by:

    1. Rodríguez, Ricardo A. & Delgado, Juan D. & Herrera, Ada Ma. & Riera, Rodrigo & Navarro, Rafael Ma. & Melián, Carlos & Dieguez, Lorenzo & Quirós, Ángel, 2013. "Effects of two traits of the ecological state equation on our understanding of species coexistence and ecosystem services," Ecological Modelling, Elsevier, vol. 265(C), pages 1-13.
    2. Burkhard, Benjamin & Fath, Brian D. & Müller, Felix, 2011. "Adapting the adaptive cycle: Hypotheses on the development of ecosystem properties and services," Ecological Modelling, Elsevier, vol. 222(16), pages 2878-2890.
    3. Riera, Rodrigo & Fath, Brian D. & Herrera, Ada M. & Rodríguez, Ricardo A., 2023. "Concerns regarding the proposal for an ecological equation of state: an assessment starting from the organic biophysics of ecosystems (OBEC)," Ecological Modelling, Elsevier, vol. 484(C).
    4. Rodríguez, Ricardo A. & Herrera, Ada Mª & Quirós, Ángel & Fernández-Rodríguez, María J. & Delgado, Juan D. & Jiménez-Rodríguez, Antonia & Fernández-Palacios, José Mª & Otto, Rüdiger & Escudero, Carlos, 2016. "Exploring the spontaneous contribution of Claude E. Shannon to eco-evolutionary theory," Ecological Modelling, Elsevier, vol. 327(C), pages 57-64.
    5. Rodríguez, Ricardo A. & Herrera, Ada Ma. & Santander, Jacobo & Miranda, Jezahel V. & Fernández-Rodríguez, María J. & Quirós, Ángel & Riera, Rodrigo & Fernández-Palacios, José Mª. & Otto, Rüdiger & Esc, 2015. "Uncertainty principle in niche assessment: A solution to the dilemma redundancy vs. competitive exclusion, and some analytical consequences," Ecological Modelling, Elsevier, vol. 316(C), pages 87-110.
    6. Rodríguez, Ricardo A. & Herrera, Ada Ma. & Riera, Rodrigo & Delgado, Juan D. & Quirós, Ángel & Perdomo, María E. & Santander, Jacobo & Miranda, Jezahel V. & Fernández-Rodríguez, María J. & Jiménez-Rod, 2015. "Thermostatistical distribution of a trophic energy proxy with analytical consequences for evolutionary ecology, species coexistence and the maximum entropy formalism," Ecological Modelling, Elsevier, vol. 296(C), pages 24-35.
    7. Marchi, Michela & Jørgensen, Sven Erik & Bécares, Eloy & Corsi, Ilaria & Marchettini, Nadia & Bastianoni, Simone, 2011. "Dynamic model of Lake Chozas (León, NW Spain)—Decrease in eco-exergy from clear to turbid phase due to introduction of exotic crayfish," Ecological Modelling, Elsevier, vol. 222(16), pages 3002-3010.
    8. Skene, Keith R., 2013. "The energetics of ecological succession: A logistic model of entropic output," Ecological Modelling, Elsevier, vol. 250(C), pages 287-293.

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