Earlier quoted context omitted.
Quantum computing is a typical example of taking a model (QM), further than it was ever intended to. Instead of recognizing the fallacy, they blindly accept its promises : cramming an infinite computational power using very little mass. They then uses the excuse that it's extremely complicated to build to cover for the lack of results demonstrating the model is holding its promises. After a few decades, they will ach…
Is there a way to find how far a model stays valid other than taking it further than it was ever intended to? I personally like to think that physics can be explained by a discrete finite automaton so quantum computers are not possible, but believing this would be more stupid than believing the opposite. Whichever alternative is true, there is a good reason to try to build quantum computer, because the process itself…
When you build a model, you build it to map the range of behaviors you are interested in. When mathematical infinities of any kind (like infinite computational power) emerge it's usually a strong hint that the model is not applicable, not an invitation to fantasize about the things you will be able to achieve following your model outside of its region of trust.
You question your hypothesis and then look for an alternative model that is more probable. You don't spend your resources doubling down on blind model following.
Assuming some priors and Bayesian updating your beliefs about how the world works is probably a better strategy.
I am not a Physicist so I don't have skin in this game, but the QM scene really look like a mix between snake oil vendor and religion, and doing more of this "science" by marketing firms isn't really any scientist should wish for.