Teaching and learning from preschoolers
The universe is replete with complex evolving systems, but the existing macroscopic physical laws do not seem to adequately describe these systems.
Recognizing that the identification of conceptual equivalencies among disparate phenomena were foundational to developing previous laws of nature, we approach a potential "missing law" by looking for equivalencies among evolving systems. We suggest that all evolving systems -- including but not limited to life -- are compose of diverse components that can combine into configurational states that are then selected for or against based on function.
When we identify the fundamental sources of selection -- static persistence, dynamic persistence, and novelty generation -- and propose a time-asymmetric law that states that the functional information of a system will increase over time when subjected to selection for function(s).
Let's suppose . . . that you're awake and active in the world -- as opposed to sleeping or resting -- for a mere eight hours a day. Suppose furthermore that a tiny 'event' of some sort occurs at the rate of once per second during those hours: you see someone in the street, you read or hear a sentence, or have a thought, and so on . . . Crunch the numbers on that basis, and it turns out you can expect to experience a one-in-a-million occurrence -- the kind of odds most of us would call miraculous -- roughly every 35 days.