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Constructor theory

机译:构造理论

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摘要

Constructor theory seeks to express all fundamental scientific theories in terms of a dichotomy between possible and impossible physical transformations- those that can be caused to happen and those that cannot. This is a departure from the prevailing conception of fundamental physics which is to predict what will happen from initial conditions and laws of motion. Several converging motivations for expecting constructor theory to be a fundamental branch of physics are discussed. Some principles of the theory are suggested and its potential for solving various problems and achieving various unifications is explored. These include providing a theory of information underlying classical and quantum information; generalising the theory of computation to include all physical transformations; unifying formal statements of conservation laws with the stronger operational ones (such as the ruling-out of perpetual motion machines); expressing the principles of testability and of the computability of nature (currently deemed methodological and metaphysical respectively) as laws of physics; allowing exact statements of emergent laws (such as the second law of thermodynamics); and expressing certain apparently anthropocentric attributes such as knowledge in physical terms.
机译:建构理论试图通过可能和不可能的物理转换之间的二分法来表达所有基础科学理论,即可能发生的转换和不能发生的转换。这与普遍的基本物理学概念有所不同,后者是用来预测初始条件和运动定律将会发生什么。讨论了期望构造函数理论成为物理学基本分支的几种趋同动机。提出了该理论的一些原理,并探讨了其解决各种问题和实现各种统一的潜力。这些包括提供有关经典信息和量子信息的信息理论;概括计算理论以包括所有物理变换;将保护法的正式声明与更强大的操作性声明(例如,永动机的裁定)统一起来;将可测试性和自然可计算性原则(目前分别视为方法论和形而上学)表达为物理定律;允许准确陈述紧急定律(例如热力学第二定律);并表达某些明显以人类为中心的属性,例如物理术语的知识。

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