Both upper and lower sections of the building were built the same way -- except that the upper would be built of progressively lighter material, and also suffered all the fires. Point being that one is not a "block" while the other is merely "floors". They are both one or the other. Take your pick.
No. If you don't understand then try it this way, what was in motion and what wasn't? The entire upper block was in motion, the lower section wasn't.
If one portion cannot handle the impact, then neither can the other.
No,again this is just the wrong way to think about it. Ignore the Bazant model and the destruction of the upper block for a minute and simply consider what was moving. It's the upper block that has kinetic energy, it's this energy that destroys the lower, one floor at a time. The lower section was stationary and only designed to hold the upper block when it was stationary.
We see the upper block largely disintegrating. The impact it experiences (if we follow the Bazant/NIST scenario, and suspend our observation that in fact the upper block gets destroyed in mid air) is not just 15 floors on 90, but 90 floors on 15.
No, we have 15 floors falling on 1 floor at a time, over and over again. 15 floors moving meeting with 1 stationary floor. Floors below the impact zone can't lend any strength to the ones being pummeled by the 15 floors in motion.
For simplification purposes you could essentially lay out each of the lower floors and drop a 15 story section onto the first one, a 16 story onto the next and so on. That's the nature of a "cascade" failure.
The rubble supposedly created (and the volume that isn't ejected laterally) does not have the power to crush down the rest of the building because it is disassociated material. Sure, you could have floor failure, perhaps over several floors, but this wouldn't be able to tear down the entire building symmetrically, pulverizing all material, and at the rate of six floors per second.
No this is incorrect. I'm not sure where you learned this but it's wrong. "Disassociated" material as you call it still has MASS. Do you know any physics? Where does shape or rigidity come into the equations of motion? How does it affect kinetic energy or work? It doesn't, physics unlike the human mind doesn't distinguish between shape or consistency, a pound of feathers and a pound of lead, doesn't matter.
You would have a more organic, asymmetrical collapse where you could pretty easily see or at least tell what was happening.* You'd probably end up having floors caving in like they did in other buildings; floor assemblies hanging from the core, and you would have a much more significant core remnant that actually stayed standing and didn't disintegrate in mid-air 20 seconds after the rest.
Again this is just an artifact of the human mind. You believe because you want to the WTC was some solid monlithic entity. It wasn't, it was made up of millions of tiny pieces that all failed one after the other.
I'm sure the rubble principle would be pretty easy to model, using a scale metal structure with a comparable height and framework with "floors" attached at both core and periphery, and dropping some debris of similar composition, or perhaps a bunch of rocks, onto the floors. See what happens to the structure.
Some rocks? lol, these are boulders, hills and mountains, not rocks.
I can see you suffer from a common failing, that of scale. You should take a look into the effects and limitations of scaling. I think it would benefit you greatly.