> There is nothing "obviously wrong" about the standard Copenhagen interpretation
Can you tell me how to calculate whether a system of particles will cause another system of particles to collapse or not?
Can you tell me under what circumstances a system of particles will evolve unitarily or not?
Can you shade the region of the spacetime diagram of EPR where the wavefunction is collapsed? How about in a delayed choice quantum eraser experiment?
If you tell me "you're not allowed to ask those questions" (or "hm, I never thought of that!"), then you're directly illustrating the complaint here about physics!
The common narrative is that Copenhagen, many worlds, and the other interpretations of QM are all equivalent, but they are not. Copenhagen adds an extra physical event-- collapse-- where the wavefunction is suddenly nonunitary. The burden is on Copenhagen to tell me how and when this happens, and in fact to prove that it happens at all. Many worlds, on the other hand, predicts the same phenomenon-- the apparent collapse of a wavefunction to an eigenstate-- without adding unitarity violation, or any other phenomena at all beyond the normal, extremely well-verified mechanics of multi-particle system scattering; it merely treats the environment is a multi-particle quantum system.
Many worlds is the null hypothesis (no, the extra worlds are not extra suppositions, they are predictions of known physical laws), and the burden is on Copenhagen to show that unitarity violation exists, and the burden is extremely high (possibly insurmountable?) for EPR and eraser experiments.
When Copenhagen was devised, most believed that there was some "underlying state" in QM, and that measurement told you something about what the underlying state was. Bell's theorem should have sent a shockwave through the community which forced everyone to reevaluate fundamental assumptions and self-correct wrong ideas. But by accident of history, John Bell was too shy to publish in a major journal, and no one even read his result for four years. The implications of Bell's theorem were slow to diffuse through the community, and so the disruptive moment of reckoning that should have happened never came. By the time it was well-accepted, the narrative in physics had become "you're not allowed to ask about what quantum mechanics means, just shut up and calculate", and so the cognitive dissonance was cast aside. Annealing this attitude and this misstep away is taking excruciating decades.
EDIT: I also don't mean to imply that there aren't deep and beautiful things in modern physics. There are! But physics is concertedly avoiding asking deep questions in areas where (I strongly believe) it is most important. The claim that "the meaning of QM is outside the scope of science" is exemplary, I think, of that attitude.