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devel / comp.theory / strong color theorem: most regular graphs of degree d squared are d + one colorable.

SubjectAuthor
* strong color theorem: most regular graphs of degree d squared are d +Daniel Pehoushek
`* strong color theorem: most regular graphs of degree d squared areDaniel Pehoushek
 `* strong color theorem: most regular graphs of degree d squared are d + one coloraBen Bacarisse
  `- strong color theorem: most regular graphs of degree d squared areDaniel Pehoushek

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strong color theorem: most regular graphs of degree d squared are d + one colorable.

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Subject: strong color theorem: most regular graphs of degree d squared are d +
one colorable.
From: pehoush...@gmail.com (Daniel Pehoushek)
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 by: Daniel Pehoushek - Sat, 26 Jun 2021 16:22 UTC

?

Re: strong color theorem: most regular graphs of degree d squared are d + one colorable.

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Subject: Re: strong color theorem: most regular graphs of degree d squared are
d + one colorable.
From: pehoush...@gmail.com (Daniel Pehoushek)
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 by: Daniel Pehoushek - Sat, 3 Jul 2021 11:21 UTC

On Saturday, June 26, 2021 at 12:22:24 PM UTC-4, Daniel Pehoushek wrote:
> ?
mass of the universe is m
times log m

does that account for all the "missing" mass?

Re: strong color theorem: most regular graphs of degree d squared are d + one colorable.

<87h7hbflkq.fsf@bsb.me.uk>

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From: ben.use...@bsb.me.uk (Ben Bacarisse)
Newsgroups: comp.theory
Subject: Re: strong color theorem: most regular graphs of degree d squared are d + one colorable.
Date: Sat, 03 Jul 2021 16:45:09 +0100
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 by: Ben Bacarisse - Sat, 3 Jul 2021 15:45 UTC

Daniel Pehoushek <pehoushek1@gmail.com> writes:

> On Saturday, June 26, 2021 at 12:22:24 PM UTC-4, Daniel Pehoushek wrote:
>> ?
> mass of the universe is m
> times log m
>
> does that account for all the "missing" mass?

Did you miss Malcolm's helpful reply? You don't usually see log used in
physics except when the quantity is dimensionless (for example, in
Boltzman's definition of entropy). Depending on the units used,
m.log(m) can be negative, zero, equal to m and so on.

--
Ben.

Re: strong color theorem: most regular graphs of degree d squared are d + one colorable.

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Subject: Re: strong color theorem: most regular graphs of degree d squared are
d + one colorable.
From: pehoush...@gmail.com (Daniel Pehoushek)
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 by: Daniel Pehoushek - Sun, 4 Jul 2021 06:13 UTC

On Saturday, July 3, 2021 at 11:45:12 AM UTC-4, Ben Bacarisse wrote:
> Daniel Pehoushek <pehou...@gmail.com> writes:
>
> > On Saturday, June 26, 2021 at 12:22:24 PM UTC-4, Daniel Pehoushek wrote:
> >> ?
> > mass of the universe is m
> > times log m
> >
> > does that account for all the "missing" mass?
> Did you miss Malcolm's helpful reply? You don't usually see log used in
> physics except when the quantity is dimensionless (for example, in
> Boltzman's definition of entropy). Depending on the units used,
> m.log(m) can be negative, zero, equal to m and so on.
>
> --
> Ben.
yes i saw that. he is right of course.
the logs in "newtons revised" as i call it are of some
number of star masses that count naturally
by the billions of stars. the natural logs
of billions of star masses i would guess
are around 30? maybe G' is needed?
but clearly, 'newtons revised" can
and does account for much of
the mysterious dark matter,
and merely by patching a
fundamental equation.
however, i am not yet
preparing my nobel
acceptance speech....

ben, thanks for caring about my sanity.
it has been a mild issue in the distant
past, but nowadays i take a 2 mg
stability pill each and every day.
it works very well.

is olcott some type of russian spam automaton?
his replies to others are a) few and b) crap.

thanks again, daniel


devel / comp.theory / strong color theorem: most regular graphs of degree d squared are d + one colorable.

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