the notions of ‘being’ and ‘becoming’ are unified within a single conceptual framework.”
(p. 414)
25. Kondepudi D (2008) Introduction to Modern Thermodynamics. Wiley, Hoboken, New Jersey
26. Poincaré H (1913) Science and Hypothesis. The Science Press, Lancaster, PA (pp. 122–123)
27. Lotka AJ (1922) Natural selection as a physical principle. Proceedings of National Academy
of Science (PNAS) 8 (No. 6):151–154
28. Wang LS (2013) Exergy or the entropic drive. Int J Exergy 12 (No.4):491–521
29. Wang LS (2014) Entropy growth is the manifestation of spontaneity. J Thermodyn 2014 (9
pages; 7 December 2014) 387698
30. Peirce CS (1868) On a new list of categories. Proceedings of the American Academy of arts
and Sciences 7: 287–298 (presented May 14, 1867)
31. Burch R (1991) A Peircean Reduction Thesis: Foundations of Topological Logic. Texas
Univ. Press
32. Thomson W (Lord Kelvin) (1911) Mathematical and Physical Papers of William Thomson
1:1–571. Cambridge Univ Press
33. Smith C, Wise MN (1989) Energy and Empire: A Biographical Study of Lord Kelvin.
Cambridge Univ Press
34. Young J (2015) Heat, work and subtle fluids: a commentary on Joule (1850) ‘On the
mechanical equivalent of heat’. Phil Trans R Soc A 373 (Issue 2039): 20140348
35. Uffink J (2001) Bluff your way in the Second Law of Thermodynamics. Stud Hist Phil Sci
Part B: 2001 Studies in Hist and Philo of Modern Physics 32(No.2):305–395
36. Planck M (1969) Treatise on Thermodynamics, 3
rd edition. Dover, New York
37. Emden R (1938) Why do we have winter heating? Nature 141:908–909
38. Floyd J (2007) Thermodynamics, entropy and disorder in futures studies. Futures 39
(2007):1029–1044
References
233
(p. 414)
25. Kondepudi D (2008) Introduction to Modern Thermodynamics. Wiley, Hoboken, New Jersey
26. Poincaré H (1913) Science and Hypothesis. The Science Press, Lancaster, PA (pp. 122–123)
27. Lotka AJ (1922) Natural selection as a physical principle. Proceedings of National Academy
of Science (PNAS) 8 (No. 6):151–154
28. Wang LS (2013) Exergy or the entropic drive. Int J Exergy 12 (No.4):491–521
29. Wang LS (2014) Entropy growth is the manifestation of spontaneity. J Thermodyn 2014 (9
pages; 7 December 2014) 387698
30. Peirce CS (1868) On a new list of categories. Proceedings of the American Academy of arts
and Sciences 7: 287–298 (presented May 14, 1867)
31. Burch R (1991) A Peircean Reduction Thesis: Foundations of Topological Logic. Texas
Univ. Press
32. Thomson W (Lord Kelvin) (1911) Mathematical and Physical Papers of William Thomson
1:1–571. Cambridge Univ Press
33. Smith C, Wise MN (1989) Energy and Empire: A Biographical Study of Lord Kelvin.
Cambridge Univ Press
34. Young J (2015) Heat, work and subtle fluids: a commentary on Joule (1850) ‘On the
mechanical equivalent of heat’. Phil Trans R Soc A 373 (Issue 2039): 20140348
35. Uffink J (2001) Bluff your way in the Second Law of Thermodynamics. Stud Hist Phil Sci
Part B: 2001 Studies in Hist and Philo of Modern Physics 32(No.2):305–395
36. Planck M (1969) Treatise on Thermodynamics, 3
rd edition. Dover, New York
37. Emden R (1938) Why do we have winter heating? Nature 141:908–909
38. Floyd J (2007) Thermodynamics, entropy and disorder in futures studies. Futures 39
(2007):1029–1044
References
233
