Earlier quoted context omitted.
It’s 2^1729 digits, (vastly) more digits than there are atoms in the universe. The vastly bit is kind of an understatement. Each stable isotope is indistinguishable from every other carbon isotope. So, you can probably encode a few bits per atom assuming you can somehow read this data. However they are talking vastly larger numbers of digits here. Where there are only ~10^80 digits worth of atoms in the visible unive…
You forgot about ordering. 8 binary bits in order can encode 256 states, as if every bit was capable of encoding 32 states.
Which is why I suggest comparing it to the number of bits required to encode the universe. If all you wanted was to store a single arbitrary number and could read write the universe you could do anything out to 2^(10^(80 * k)) where k is larger than 1 but I suspect below 100.