>radio interface (RF) chips that traditionally were off limits to all but the most advanced chip makers like Qualcomm. These chips rival CPUs in complexity.
This is interesting, I want to know more about why are they so complex?
For what, fat binaries? That's pretty much what Mach-O format had from inception under NeXTSTEP, and survived until now. As it was said in the sibling comment, iOS 9 is introducing a way to cut exactly the slice you need for a particular device.
iOS apps are shipped as fat binaries, so for one, part of that 100mb app is duplicated slices of binaries for armv7, arm64 and possibly, but not likely, armv7s.
Android apps enjoy bytecode that is getting JIT-ed on install.
Well then, how about charging more for faster flights, to account for fuel? I mean, domestic business class isn't that great, but people who pay others people money for it would presumably go for a faster flight.
It's based on Pentium 4 core which was extremely overclock-able, plus it's a single core, which makes it easier to get to that stable enough for a screenshot state.
If you don't actually touch the faucet and let the water run for a few seconds before drinking it, what's the danger? Anything that the dog would've put on it would be washed away, no?
So here's the thing. They will release Apple Music for Android... and there's full stdlib of Swift support for Linux? Could it be that the Android app is partly Swift?