...there are two different ways to measure this cosmic expansion rate, and they don’t agree. One method looks deep into the past by analyzing cosmic microwave background radiation, the faint afterglow of the Big Bang. The other studies Cepheid variable stars in nearby galaxies, whose brightness allows astronomers to map more recent expansion.
You’d expect both methods to give the same answer. Instead, they disagree—by a lot. And this mismatch is what scientists call the Hubble tension...Webb’s data agrees with Hubble’s and completely rules out measurement error as the cause of the discrepancy. It’s now harder than ever to explain away the tension as a statistical fluke. This inconsistency suggests something big might be missing from our understanding of the universe - something beyond current theories involving dark matter, dark energy, or even gravity itself. When the same universe appears to expand at different rates depending on how and where you look, it raises the possibility that our entire cosmological model may need rethinking.
The majority of physics is done with very high precision. This is especially true for fundamental values that apply to everything. For example know the mass of an electron with an error of 0.3 parts per billion. I think this discrepancy is evidence of a significant hole in cosmology theory.
Yes i agree that, doing physics in a very well controlled laboratory, physicist can measure things accurately.
Unfortunately we don't have a laboratory big enough to reproduce a big bang and study it in a controlled fashion. So, in cosmology, measurement are difficult and not so precise 😋.