Skip to content

It will be noticed that the fundamental theorem proved…

“It will be noticed that the fundamental theorem proved above bears some remarkable resemblances to the second law of thermodynamics. Both are properties of populations, or aggregates, true irrespective of the nature of the units which compose them; both are statistical laws; each requires the…” quote by Ronald A. Fisher
Download Open image
““It will be noticed that the fundamental theorem proved above bears some remarkable resemblances to the second law of thermodynamics. Both are properties of populations, or aggregates, true irrespective of the nature of the units which compose them; both are statistical laws; each requires the constant increase of a measurable quantity, in the one case the entropy of a physical system and in the other the fitness, measured by m, of a biological population. As in the physical world we can conceive the theoretical systems in which dissipative forces are wholly absent, and in which the entropy consequently remains constant, so we can conceive, though we need not expect to find, biological populations in which the genetic variance is absolutely zero, and in which fitness does not increase. Professor Eddington has recently remarked that 'The law that entropy always increases—the second law of thermodynamics—holds, I think, the supreme position among the laws of nature'. It is not a little instructive that so similar a law should hold the supreme position among the biological sciences. While it is possible that both may ultimately be absorbed by some more general principle, for the present we should note that the laws as they stand present profound differences—-(1) The systems considered in thermodynamics are permanent; species on the contrary are liable to extinction, although biological improvement must be expected to occur up to the end of their existence. (2) Fitness, although measured by a uniform method, is qualitatively different for every different organism, whereas entropy, like temperature, is taken to have the same meaning for all physical systems. (3) Fitness may be increased or decreased by changes in the environment, without reacting quantitatively upon that environment. (4) Entropy changes are exceptional in the physical world in being irreversible, while irreversible evolutionary changes form no exception among biological phenomena. Finally, (5) entropy changes lead to a progressive disorganization of the physical world, at least from the human standpoint of the utilization of energy, while evolutionary changes are generally recognized as producing progressively higher organization in the organic world.””

Ronald A. Fisher

About This Quote

This interpretation was drafted with AI assistance. It is one reading of the quote, not the author's own explanation.

The passage draws parallels between entropy in thermodynamics and fitness in biology, noting both are statistical laws but differ fundamentally.

In simple terms: Entropy and fitness are similar statistical laws with key differences.

Key Takeaway

Understand both concepts while recognizing their limits.

Themes

science biology thermodynamics entropy fitness

Mood

analytical intellectual inquisitive

Type

explanatory comparative

When to use this quote

  • academic lectures
  • research discussions
  • science education

Key Concepts

statistical mechanics evolutionary theory philosophy of science

Questions to Reflect On

  • How do entropy and fitness compare?
  • What limits exist in applying physical laws to biology?
A Different Perspective

Complexity may be oversimplified for lay readers.

★ ★ ★ ★ ★ No ratings yet

More by Ronald A. Fisher

Explore all 2 Ronald A. Fisher quotes

More Biology quotes

Browse all 3,034 Biology quotes