arrow
返回

A third transition in science?

delete2023-04-14
delete24
delete
OA
AI
S
Stuart Kauffman
A
Andrea Roli *
DOI:10.1098/rsfs.2022.0063delete
delete原文链接
delete分享
delete收藏
查看原文
摘要

摘要

En 中文
Since Newton, classical and quantum physics depend upon the 'Newtonian paradigm'. The relevant variables of the system are identified. For example, we identify the position and momentum of classical particles. Laws of motion in differential form connecting the variables are formulated. An example is Newton's three laws of motion. The boundary conditions creating the phase space of all possible values of the variables are defined. Then, given any initial condition, the differential equations of motion are integrated to yield an entailed trajectory in the prestated phase space. It is fundamental to the Newtonian paradigm that the set of possibilities that constitute the phase space is always definable and fixed ahead of time. This fails for the diachronic evolution of ever-new adaptations in any biosphere. Living cells achieve constraint closure and construct themselves. Thus, living cells, evolving via heritable variation and natural selection, adaptively construct new-in-the-universe possibilities. We can neither define nor deduce the evolving phase space: we can use no mathematics based on set theory to do so. We cannot write or solve differential equations for the diachronic evolution of ever-new adaptations in a biosphere. Evolving biospheres are outside the Newtonian paradigm. There can be no theory of everything that entails all that comes to exist. We face a third major transition in science beyond the Pythagorean dream that 'all is number' echoed by Newtonian physics. However, we begin to understand the emergent creativity of an evolving biosphere: emergence is not engineering.
Keyword:
Newtonian paradigm
affordances
set theory
indefinite uses of X
constraint closure
emergent creativity of the biosphere
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

Interface Focus 封面图
Interface Focus
IF:
4
论文数:
1.0K
被引数:
3.2K

机构

I
institute for systems biology (isb)
学者数:
1.1K
论文数: 823
被引数: 9
U
University of Bologna
学者数:
4.5W
论文数: 3.8W
被引数: 4.1W
引用论文

引用论文

Complexity matters
err2022-08-08
err1
errOAAI
errAnderson, Philip
err分享
err收藏
Advanced Genetic Approaches in Discovery and Characterization of Genes Involved With Osteoporosis in Mouse and Human
err2019-04-02
err0
errOAAI
errJinbo Yuan; Jennifer Tickner; Benjamin H. Mullin; Jinmin Zhao; Zhiyu Zeng; Grant Morahan; Jiake Xu
err分享
err收藏
The curative effect of a second curettage in persistent trophoblastic disease: A retrospective cohort survey
err2005-10-01
err0
PREAI
errNienke E. van Trommel; Leon F.A.G. Massuger; René H.M. Verheijen; Fred C.G.J. Sweep; Chris M.G. Thomas
err分享
err收藏
Bristles before down: A new perspective on the functional origin of feathers
err2015-04-08
err29
errOAAI
errPersons, Walter S.; Currie, Philip J.
err分享
err收藏
学者 查看更多内容