Wouldn't be the first time I misunderstood what Stu was talking about.  It
was in the lecture he gave at um6p, ah, here,
https://youtu.be/GTQJqpkVd84?t=1820, I guess it's in this paper:
https://arxiv.org/pdf/2106.15271.pdf

-- rec --

On Mon, Apr 3, 2023 at 4:09 PM Frank Wimberly <wimber...@gmail.com> wrote:

> The real numbers are an uncountable set.
>
> ---
> Frank C. Wimberly
> 140 Calle Ojo Feliz,
> Santa Fe, NM 87505
>
> 505 670-9918
> Santa Fe, NM
>
> On Mon, Apr 3, 2023, 3:14 PM Roger Critchlow <r...@elf.org> wrote:
>
>> I'm just noodling around.
>>
>> So it's a collection of innumerable elements which can't be a
>> mathematical set, so you can't use the mathematics founded on sets to
>> analyze it, so what's the paper doing using set based mathematics to count
>> the number of elements in M_t?
>>
>> -- rec --
>>
>>
>> On Sat, Apr 1, 2023 at 12:57 PM Stephen Guerin <
>> stephen.gue...@simtable.com> wrote:
>>
>>>
>>>
>>> On Sat, Apr 1, 2023, 8:29 AM Roger Critchlow <r...@elf.org> wrote:
>>>
>>>>
>>>> I tried to get Bard to talk with me about the adjacent possible (AP)
>>>> the other day.  It agreed that the AP could not be represented as a
>>>> mathematical set, but it continued to talk about the AP as if it were a
>>>> set.  So it suggested formulating the AP as a graph, or a tree, or as the
>>>> states of a dynamical system.  I pushed for a non-set formalism and it gave
>>>> me fuzzy sets.  I guess I have to try harder.
>>>>
>>>
>>> Roger, Cool. Can you say more about a different formalization you're
>>> after?
>>>
>>> Stu's Theory Of The Adjacent Possible is currently formalized with an
>>> exponentially increasing set
>>>
>>> https://arxiv.org/abs/2204.14115#
>>>
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