But there must be a good technical reason for it - if I -a software person- can
think of something like that, I'm sure they already thought of it too.
The rings have to be exposed, that's how they work.
Consider a hypothetical cable that's flexible, but fragile. Fold it in half, and it explodes violently, killing your customers and inspiring such a mighty class-action lawsuit that it leaves your company a smoking grease stain on the surface of the Earth; and leaves a five year stretch on your resume really hard to explain at future job interviews.
So you add reinforcing ribs to the cable. Now when your suicidal users try to bend the cable in half, the ribs mash into each other, preventing the minimum bend radius from being violated, and thus preserving shareholder value.
But your designers spit out their macchiatos in shock on seeing your brilliant solution, and start waving their smooth, untouched by actual work, hands around; demanding that you cover up the cable strain relief with a thin plastic tube.
Well, that's kinda tricky. You can use thick plastic, and prevent the cable from bending entirely, or you can use thin plastic, which will buckle over the unsupported areas when bent, since of course a concentric circle has a smaller circumference, and look really obvious and terrible. There's no way to cover it and still have it work.
But the blingy solution breaks anyway, and is also ugly, beyond being dangerous.
Parent's point was that if we assume Apple is optimizing for showroom appearance, better to put the bling over the function bits and let the going break after a few months, instead of having only bling and letting the bling break and kill the device and user with it.
Consider a hypothetical cable that's flexible, but fragile. Fold it in half, and it explodes violently, killing your customers and inspiring such a mighty class-action lawsuit that it leaves your company a smoking grease stain on the surface of the Earth; and leaves a five year stretch on your resume really hard to explain at future job interviews.
So you add reinforcing ribs to the cable. Now when your suicidal users try to bend the cable in half, the ribs mash into each other, preventing the minimum bend radius from being violated, and thus preserving shareholder value.
But your designers spit out their macchiatos in shock on seeing your brilliant solution, and start waving their smooth, untouched by actual work, hands around; demanding that you cover up the cable strain relief with a thin plastic tube.
Well, that's kinda tricky. You can use thick plastic, and prevent the cable from bending entirely, or you can use thin plastic, which will buckle over the unsupported areas when bent, since of course a concentric circle has a smaller circumference, and look really obvious and terrible. There's no way to cover it and still have it work.