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Бояршинов
Бровкин Михаил Николаевич
Бояршинов Борис Сергеевич
теория гравитации
тёмная материя
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  • ruRussian
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00:00:01
how hello dear audience and visiting in the
00:00:04
Irkutsk region at the winter station, I
00:00:06
understand correctly ohu Mikhail Nikolaevich
00:00:10
brovki, so to speak, he’s doing
00:00:13
science and here he is visiting us for the second time
00:00:16
and he now wants to talk about
00:00:18
gravity and the dark essence associated with it
00:00:22
as I said but has a medium
00:00:24
not dark arts about dark matter
00:00:27
what is now commonly called dark
00:00:29
matter yes well please have the floor so
00:00:33
hello dear friends today I
00:00:37
would like to continue the
00:00:38
first conversation that we had about
00:00:41
half a month ago my husband a month
00:00:44
ago and I remember exactly in general, I then
00:00:47
talked about my hypothesis dedicated to,
00:00:51
so to speak, the world order, that is, the
00:00:56
structure of space, so now just
00:01:00
a second, I’ll include here what I need
00:01:10
.
00:01:14
so I said it will show pictures of
00:01:17
attention so you are now giving me
00:01:19
access to access is already open to you, that is, you
00:01:23
can already can access is open
00:01:26
often screen demonstration any of the most
00:01:30
daring pictures you can show me
00:01:32
the most daring one we will not we are in pharmacies and the
00:01:35
physical sense of the word so just
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a second so now it’s clear that I ca
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n’t see yours on it, maybe we’ll
00:01:48
start with the first picture, that is, I’ll
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remind you, open the first one to remind
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our viewers what it means for some reason the code
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is showing me so wait for
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something and now we’ve exchanged
00:02:04
ours in some places so well,
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show me again like this screen demonstration so
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you can see the picture you can see the picture now you
00:02:17
could see your picture they are of my
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cat with his tongue hanging out
00:02:21
so great here they are cells worth money,
00:02:24
not how to say by the way the audience
00:02:27
told me that a pixel is a volumetric pixel
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they are called voxel and in fact, but
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this is like a new concept for me, I’m
00:02:34
kind of familiar with pixels,
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but if it’s convenient, I can call them
00:02:38
voxel ami, which means that the structure of
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our space is assumed to be
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absolute, which means consisting of
00:02:50
bank volumetric pixels or
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voxels yes Here, each pixel of
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the bank is up to the Planck
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size, which means it has 1 one of two
00:03:03
states, that is, each cell can
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have a state of 0 or a state of, let’s say,
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one, the state one is
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active and, as it were,
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forms our material space,
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that is, on the basis of these
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active voxels, but I will
00:03:23
call them a salami jerk; assigned on the basis of these
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active voxels, a
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volumetric structure is built, a spatial
00:03:30
structure, and each voxel is connected.
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I believe that this connection is inseparable,
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that is, it cannot break; it
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connects with each of its neighbors, but we have
00:03:43
already discussed this issue that
00:03:47
these trade tetrahedrons are involved in this construction,
00:03:50
so let's say yes, but they are
00:03:53
wrong ketroy yes because from
00:03:54
regular tetrahedrons it is impossible to
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simply fill the space and,
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accordingly, Picasso and Doric
00:04:01
elements based on these tetrahedrons,
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and thanks to this topology, thanks to
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this floor, the topology in our material
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space which is based on these
00:04:14
voxels, heterogeneity is formed, that
00:04:17
is, locally at each point, so to speak,
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spatial structures are formed,
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heterogeneity is formed if you imagine these
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connections in blue, marked
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if you imagine them in the form of ideal
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springs and replace them, let’s say, then in
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such a space it
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will inevitably arise distortion at each point,
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that is, these connections will be either g
00:04:45
from or slave or stretched, and this
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one follows from your model itself
00:04:51
because
00:04:54
it is impossible to fill the space of the icosahedron my with regular ones
00:04:55
and they are all a little deformed and a
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little deformed,
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I will now show you a dozen times wait, in
00:05:03
principle, my last time, this is what everyone
00:05:04
said there, anyone who doesn’t remember can
00:05:07
go and look at the link,
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for sure there will be a link for me at the bottom,
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yes, it’s called a probable
00:05:14
theory of everything, but I wouldn’t call it a
00:05:16
theory, it’s as if it could be called a
00:05:19
hypothesis anyway,
00:05:21
they increased yes, now wait,
00:05:23
I can’t for some reason
00:05:26
the pictures won’t open for me, but here they are and I
00:05:28
see our pictures, so now, so
00:05:33
now you can see, yes,
00:05:34
strada, if not four-fifths, yes, that is,
00:05:37
these
00:05:38
connections, I called them quanta in quanta and that
00:05:42
is, as if volumetric, you quanta means to
00:05:44
volume, sort of related to quanta, that
00:05:46
is, each connection is an ideal spring
00:05:49
and all the springs are, as it were, unique notes in
00:05:52
the sense of the same identical count and
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this is how we make up
00:05:57
the space before and at the moment
00:05:59
when we begin, let’s say, the time of
00:06:03
the origin of the universe before, let’s say,
00:06:05
they are, as it were, released into these nodes in
00:06:10
space, a
00:06:12
redistribution of all the energy is obtained in such a
00:06:14
way that we have now I’m so here I wo
00:06:19
n’t be anymore, probably we get a
00:06:22
distribution into quanta immediately after the
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origin of the universe then there is this
00:06:27
here this zero and zero is delta x that
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is, we count thoughts not tense into a
00:06:34
quantum go beyond one then to the right or
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to the left for us yes we either get more or
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less yes if we have a plus it is
00:06:45
delta x increment to delta x
00:06:47
that is, here I consider them as
00:06:49
springs according to Hooke’s law, here I
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have written this e to the power of minus
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one over two from harat something very
00:06:57
reminiscent of this is normal 1st department of gou
00:07:00
spo distribution means normal
00:07:02
distribution by size, that is, the
00:07:07
most sizes are in us zero so let's say
00:07:09
yes when we let go let's say yes distance
00:07:12
distance zero
00:07:16
increments beer I don't look
00:07:19
if you imagine springs to springs then when we
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made up the space and let go we have
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on and most of all it will be
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to me tense in quantum not
00:07:32
stretched and not growing accordingly
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if we multiply by that is, this is our
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distribution, the water is blue, this is
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the distribution, and if we multiply for the song along the
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horizontal axis, as they are
00:07:44
supposed to be, or they are stretched to the right to
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hold and to the left, but this x square is
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multiplied by is and by this very
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thing this turns into energy and not
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all checks, so it turns out like this 2
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2 humps I curve to 2 humps curve that
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is, we have in space
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the energy of stretched yes we will accept it
00:08:09
as that is, stretch it
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on the right side receiving rains in compressed
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to and on the left compressed and this energy
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will be considered as if positive and
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as if negative, that is, we
00:08:20
can consider it as if positive as if
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negative, yes, but it’s like, okay,
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let it go before that, it’s conventions, it’s
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quite normal, it’s fine, it’s
00:08:30
good, that is, roughly speaking, if we
00:08:33
just take two springs in a vice,
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clamp them until we
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clamp them in a vice and
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move them,
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that is, we can either compress the springs,
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let’s say, or stretch them, but as
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soon as we move the central point
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to the central point, we
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will have additional energy,
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that is in the form of compressing or stretching 1
00:08:55
will stretch the other push up to
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but the energy is still on if
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positive bags to this the essence of this
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energy began to live will be but the sum will be
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0 by the way it is crafted yes if
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if we have
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springs connected in series and here are the places
00:09:12
of connections you move at the same time glad the woman
00:09:15
is stretched and the other is compressed until everything
00:09:18
is correct, that is, we will conditionally just
00:09:20
not appear until conditionally we will
00:09:23
consider one energy, let’s say the energy of
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stretched to negative energy from
00:09:28
compressed will be considered as positive
00:09:30
so well, here I am and I
00:09:33
have depicted it purely for my
00:09:36
readers on my clean channel Let’s just say the
00:09:39
initial position of
00:09:41
the energy, yes, that is, there are
00:09:44
such things here, they have an infinity of a
00:09:48
certain level of energy, that is,
00:09:50
quanta on one energy on the other, zero,
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but by the way, I didn’t show it, but in total
00:09:56
it turns out so let’s say zero, that is,
00:09:59
if we subtract all the energies of the stretched ones
00:10:04
modulo the energy we have compressed throughout the
00:10:07
entire universe, so let’s say, will be 0, well, how
00:10:09
will it be in this way, yes, but here it’s
00:10:15
purely me, too, let’s not dwell on this, so
00:10:17
I sort of
00:10:21
calculated,
00:10:22
that is, I calculated, yes, let’s look,
00:10:25
imagine, imagine what we have
00:10:27
locally in one place there is a
00:10:30
wall of stretched and compressed
00:10:32
springs, thanks to their
00:10:35
internal energy until thanks to their
00:10:37
internal energy, they want to 1
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straighten and the other, that is, on the contrary, to
00:10:42
compress until so and now we have a
00:10:45
kind of energy between these themselves and
00:10:49
it turns out
00:10:51
compressed and stretched, that is, they
00:10:56
just want to straighten this space in order to
00:10:58
be in equally equal
00:11:01
conditions, yes, that’s what I did, I
00:11:06
calculated
00:11:07
[music]
00:11:08
if now it’s a little difficult for us here,
00:11:12
it means if in one area a little bit
00:11:19
both are side by side and stretched compressed stretch
00:11:22
to for you, you are quanta, and in another, compress it a little,
00:11:26
that is, if let’s say at a distance,
00:11:28
let me tell you now, probably so that
00:11:30
this picture is complex, now I
00:11:33
mean, look, we’ll
00:11:37
imagine that we have the initial moment of
00:11:39
the emergence of the universe before we have
00:11:42
everything space were compressed, stretched, compressed,
00:11:45
stretched, you see, yes, they are
00:11:46
marked in blue and yellow,
00:11:48
and if we calculate the energy,
00:11:52
let’s say, stretched relative to the 0
00:11:56
state, that is, we have this, as it were,
00:11:57
zero state, you quantum is not
00:11:59
tense, that is, if we calculate the
00:12:03
energy,
00:12:04
the sum of the energy from the stretched and from the
00:12:07
squeezed quantum we will get
00:12:11
some value, let’s assume the
00:12:13
difference between these energies, but if we
00:12:15
simultaneously stretch a little in one place
00:12:18
and in such a way that we, so to
00:12:21
speak, compressed will be equal to the
00:12:24
neutral position, you see, yes, I
00:12:26
drew in in one place, that means we
00:12:31
will only have energy that is
00:12:33
stretched into quanta and, accordingly, in
00:12:37
another place in another place we will,
00:12:40
on the contrary, compress all of you quanta, which means the
00:12:44
displacement for us will seem to decrease,
00:12:46
the displacement will decrease and the energy it is the
00:12:49
energy will become less, that is, in
00:12:54
both cases our energy will become
00:12:56
less in each of the spaces; there is an
00:12:59
advantage, as it were, separation, that is,
00:13:01
the division of areas compressed and stretched
00:13:05
into quanta in such a way that if
00:13:08
we look, yes, but I immediately noted that
00:13:12
on the left we have cosmic voids of water,
00:13:15
that is, in these cosmic voids in
00:13:19
quanta are distributed in exactly this
00:13:21
way, and in places where matter accumulates, these are
00:13:24
galaxies and clusters of galaxies,
00:13:28
on the contrary, they are compressed into quanta, so it
00:13:34
is beneficial for the structure of the spatial structure to separate these two moments, that
00:13:38
is, areas
00:13:39
to select areas with stretched out
00:13:43
quanta, but still locally in each
00:13:45
in each in place it will be both compressed and
00:13:47
its quanta will be stretched, yes, just
00:13:52
a second,
00:13:57
now scroll through the picture,
00:14:00
look at the
00:14:02
initial moment, we will just
00:14:04
look at the background picture, imagine
00:14:07
that when we launch, let’s say
00:14:10
the universe, yes, at the initial moment, our
00:14:14
color is like this purple, yes, the
00:14:17
top picture shows the
00:14:21
distribution of compressed and stretched ones,
00:14:23
as if he had drawn the cells here, but there it’s
00:14:26
actually different, not just to
00:14:28
show the principle
00:14:30
of gift in this distribution, entropy is
00:14:33
close to zero, that is, everything is
00:14:36
orderly primates yes yes it turns out well
00:14:39
and, as if according to cosmological
00:14:41
principles, it is considered modern that at the
00:14:45
initial moment the entropy was the
00:14:47
lowest, but that means at the moment of release,
00:14:50
that is, the emergence of time, what
00:14:53
I said about what I told in the
00:14:56
previous conversation about this is the clock
00:14:58
generator, we begin
00:15:00
redistribution,
00:15:03
we will redistribute finely, you can see something
00:15:05
on a small scale, we get a
00:15:07
structure like this, although it is
00:15:10
equal to purple, yes, in general, but it is
00:15:13
already clear that there are some micro Fukuko
00:15:14
fluctuations, that is, I drew them so on the
00:15:17
computer that they seem to be already purple
00:15:20
on the fluctuations and if
00:15:23
you look further, let’s say before the development,
00:15:25
so let’s say the evolution of the universe, then a
00:15:30
redistribution occurs and arises,
00:15:33
they are like areas united,
00:15:35
small areas are united, that is,
00:15:37
homogeneous areas, let’s say red
00:15:40
unites, disperse, well, let’s
00:15:42
compress or stretch and such
00:15:44
small spots are formed, let’s say red,
00:15:48
but here in this picture, red blue,
00:15:51
that is, with a more compressed content in
00:15:54
quanta from a more stretched one, and these are the
00:15:56
structures of some area, yes,
00:15:58
these, over time, they all increase and
00:16:01
unite and due to
00:16:03
this, what happens is what is called the
00:16:09
formation of the structure of the universe, that is,
00:16:12
the formation of
00:16:14
what we now see what is called a
00:16:16
large-scale structure,
00:16:19
so now just a second and look,
00:16:34
it means that these areas are growing, it’s
00:16:39
written in the voids and exhalation,
00:16:41
a division has occurred, that is, in the voids the
00:16:45
quanta are more stretched
00:16:47
and in the clusters they are more compressed, but
00:16:49
accordingly, from the middle, it’s depicted in gray for me
00:16:52
what happened at the very initial
00:16:55
moment of time in everything in the entire universe
00:16:57
to a uniform distribution,
00:17:00
these peaks are compressed, the distances between the compressed
00:17:03
stretched ones, yes, we have, as it were,
00:17:06
more than are allowed in
00:17:13
areas of clusters, let’s say, yes it is clear that the
00:17:15
distance between the
00:17:19
difference in sizes in quanta, it is more that
00:17:23
is less than it is strong at the initial
00:17:26
moment of its occurrence, and so I
00:17:33
wanted to say something for an hour and a second, I
00:17:37
wanted to say about the
00:17:39
energy itself, that is, if I just
00:17:43
noted what the average value of
00:17:47
energy in quanta is, that is, here it is, I
00:17:50
called them vacuum average I don’t know how
00:17:52
this term can be used in my
00:17:56
description, so to speak, well, since the
00:17:58
vacuum average still has
00:18:00
this, well, some kind of
00:18:05
defined,
00:18:07
so to speak, certain value of physics,
00:18:14
yes, but I called it the vacuum average,
00:18:17
yes, that is, this is the value of the vacuum energy
00:18:21
in which all processes occur, that
00:18:24
is, if you have us in the early universe,
00:18:26
that is, at the beginning at the beginning of the emergence of
00:18:29
this kun and the averages were around zero,
00:18:32
let’s say, but then the zero value is the
00:18:36
emission of photons, that is, in this environment,
00:18:40
photons descend more easily than in that environment
00:18:44
in in which our
00:18:46
solar system is now located, our galaxy,
00:18:51
what am I getting at is that those
00:18:54
radiations that occurred in the early
00:18:56
universe before in the early universe they
00:18:58
occurred at lower energies than what is
00:19:03
happening now in our laboratories, let’s
00:19:05
say so, yes, that is, this suggests
00:19:08
that the radiation itself was immediately shifted,
00:19:13
let’s say in this spectrum in that
00:19:17
value of one of the hydrogen atoms and let
00:19:20
’s say photons were released with less
00:19:24
energy than these same atoms now do,
00:19:28
but in our laboratory let’s say yes, that
00:19:31
is, wheels, how can this be compared,
00:19:35
imagine that we have a bathyscaphe to the
00:19:39
bathyscaphe inside of which it is located, but
00:19:41
here I am just for comparison or whatever this is or an
00:19:43
allegory means if we take
00:19:46
the bathyscaphe and place it in water and in the
00:19:49
bathyscaphe itself we will make some kind of hole
00:19:51
there and let out bubbles
00:19:54
of air, let's say that one near the surface
00:19:57
near the surface we will have bubbles
00:20:01
easily, we will push them out, let’s say, yes,
00:20:03
that is, but can anyone
00:20:06
say anything, or maybe we can relate it to the
00:20:09
energy of opening hatches, let’s say
00:20:11
our hatch is closed and sealed,
00:20:12
and at a small depth of mine we can easily
00:20:15
open this hatch, that is, we need
00:20:17
less energy to open,
00:20:20
but with immersion, let’s say, yes, at depth
00:20:23
we need more and more
00:20:25
energy to open this
00:20:27
hatch, that is, also in the early universe, it
00:20:31
was easier for atoms of matter
00:20:37
to emit, so to speak, and the spectra that we
00:20:41
see now are, as it were,
00:20:43
shifted relative to ours, this
00:20:46
can explain the red shift, the
00:20:50
cosmological shift, and thus,
00:20:54
but since our hypothesis implies
00:20:58
absolute space, in my
00:21:02
hypothesis there is no such thing as the
00:21:03
expansion of the universe, so what else
00:21:10
can you tell, which means
00:21:14
gravity itself, gravity itself, now
00:21:16
we have a picture of gravity itself this is a
00:21:23
property of space, now I
00:21:27
’ll show you a picture I don’t have here, let’s maybe
00:21:31
immediately move on to
00:21:36
the textbook example with a supercluster of a
00:21:39
bullet, you probably know that
00:21:43
this picture shows
00:21:47
the movement of dark matter, which is
00:21:51
marked in blue
00:21:53
and the movement of heated gas, that is,
00:21:57
heated gas here it is, highlighted
00:22:00
pink in the X-ray spectrum, and
00:22:05
it is shown that dark matter
00:22:08
is located where our stars are located,
00:22:11
but in the sense these are not stars, these are
00:22:13
galaxies, each of which is luminous. this
00:22:17
galaxy therefore seems to have
00:22:22
a distribution where we have
00:22:26
matter, matter, well, roughly speaking, is
00:22:30
connected to in the collection it and no, wait, we have it
00:22:34
with the stars, that is, there is
00:22:38
also matter and dark
00:22:40
matter where we have the stars of the galaxy there and dark
00:22:44
matter, that is, it
00:22:47
was discovered by microlensing, but since we have gas ra
00:22:50
that you are now showing me something,
00:22:53
nothing special is visible, so
00:22:56
look, that means they are showing me my
00:22:59
arrow, you can see how I
00:23:02
can see nothing yet, so nothing at all what -
00:23:07
this shaded area
00:23:09
just goes on and everything is like this now you can see there is
00:23:12
no picture no there is some kind of
00:23:16
player on no pictures
00:23:18
move this window with so right now wait
00:23:25
so now the flight is now visible means the
00:23:30
picture was
00:23:32
now wait I these yours were
00:23:35
and a that’s it, apparently I haven’t figured out
00:23:41
how this whole thing is done yet, so I
00:23:45
probably need to scroll through then, yes, that’s all, wait
00:23:46
a second
00:23:56
now, I’m a little confused,
00:23:58
got lost, got lost, so ask me
00:24:04
together, so
00:24:17
I’m just seeing your thumbnail, my
00:24:20
thumbnail, just a second that the
00:24:32
picture is not lost there now, just a second,
00:24:35
maybe not and turn it on again, just
00:24:39
a second, this round,
00:24:55
just a second, now
00:25:07
you only have a picture, this one is
00:25:09
coming now, wait, and where did you
00:25:12
lose
00:25:14
to the bowl now, so now it’s visible, and
00:25:24
it’s visible all the time only here is one
00:25:26
picture where you have the quantum length,
00:25:28
this is cosmic voids and clusters of
00:25:33
galaxies, so why do I have it
00:25:38
closed, let’s now Aslanova know how to
00:25:40
do it, you call it to
00:25:41
demonstrate my screen and
00:25:44
accordingly you choose what to
00:25:46
show you, that means, so let’s
00:25:49
let's try it always in such cases,
00:25:51
I use for me the same microsoft
00:25:56
barbarian about viewing pictures and you
00:25:59
use some kind of ps there, I don’t
00:26:01
know this one, so now I stopped it one more
00:26:04
time, let’s try, start
00:26:07
showing your screen, yes,
00:26:12
I want viewing tools here you can’t
00:26:15
open with a warg
00:26:16
you can’t, that is, well, let’s see for an hour,
00:26:20
well, you can see there and some stars there are some clusters
00:26:23
there before the gong, the price is pink when this
00:26:26
one is healthy,
00:26:28
well, everything then apparently returned, that is,
00:26:31
the cluster of the bullet for what is that
00:26:35
one cluster is
00:26:36
mine you can see the arrow as I show
00:26:41
one cluster passes through each other and the
00:26:44
cluster at the same time the stars of the galaxy they
00:26:48
pass through each other yes here is the
00:26:53
gas that was in these clusters
00:26:56
it collided and and but here it is highlighted in
00:26:59
pink so it is
00:27:02
indicated by microlensing which means it
00:27:06
was measured that dark matter the effect of
00:27:08
dark matter, it is still located
00:27:12
in these clusters, that is, it, too, dark
00:27:15
matter supposedly also passed through each
00:27:18
other, the cluster passed along with dark
00:27:22
matter, suddenly the demand for dark matter also
00:27:24
represents, as it were, separate
00:27:26
stars, but not but not dark stars in
00:27:32
this in this case it is not yet clear that
00:27:35
this is a nose mask about it, it
00:27:37
easily passes through each other because at night they
00:27:39
consist of separate elements and the
00:27:42
distance between them is large
00:27:43
5 calmly they fly through each other
00:27:46
yes yes yes that is, even about just if
00:27:49
galaxies pass through them about
00:27:52
this, it’s not finitely gravitational that
00:27:54
they will use it, but like this, why is
00:27:57
there blue, what is it hot to train,
00:27:59
or so that colors, what
00:28:02
color means, I’ll explain to you, what it means is that
00:28:05
it’s the stars where it glows,
00:28:08
this little blue one, this is dark matter,
00:28:12
supposed, this is according to
00:28:14
microlensing, that is you know what
00:28:17
red means, it’s a luminous gas that
00:28:20
collided significantly, that is, and I
00:28:23
stayed in this world until due to
00:28:26
new natural processes in the astral dark
00:28:28
matter passed before it, oh supposedly dark
00:28:32
matter it passed along with the clusters,
00:28:35
that is, where we have luminous matter
00:28:38
this is all we have there and, accordingly,
00:28:41
dark matter,
00:28:43
that is, the effect of dark matter is
00:28:45
supposedly recorded in these places, but according to
00:28:47
microlensing, but according to my
00:28:52
idea of ​​dark matter, this is
00:28:58
just an effect, this is not not the substance
00:29:00
itself, but there are WIMPs or some other
00:29:04
options, and this is just an underestimated
00:29:07
mass, an underestimated mass of Mars in other
00:29:10
spatial conditions with a different
00:29:12
vacuum energy, what I just described to you,
00:29:15
that is, if we look at the galaxy,
00:29:20
let’s take a cross-section for a second, so
00:29:24
now I probably won’t find it, probably how not
00:29:29
to show it, so just a second and
00:29:34
probably won’t leave now
00:29:36
there now for a second I’ll look like that so
00:29:40
like that
00:29:42
20 picture that is
00:29:59
now a second 20 that is, if we
00:30:08
look at the energy density and we need
00:30:10
a picture to see the picture that is, I
00:30:23
drew here, that is, the space, that
00:30:25
is, the cross section of the space according to the
00:30:27
energies of the vacuum, that is, here let’s say
00:30:30
if this is the case with us, that is, the lower we have,
00:30:40
the lower the graph, and the more so for there, that
00:30:45
is, in a spatial structure with
00:30:47
more compressed in quanta, that is, in this
00:30:50
in this place, we have in a quantum and more compressed
00:30:52
than in,
00:30:54
let’s say, in the voids they here they
00:30:57
are drawn as wars, they are designated here, and
00:31:00
where we have low means the position
00:31:04
there is where we have galaxies, that is,
00:31:06
sajjad amigo quanta and here
00:31:13
you see with a circle, it’s highlighted and it’s
00:31:16
written in an enlarged size, our
00:31:18
galaxy is written in a section on the right on the right
00:31:23
side of the picture, respectively, average
00:31:26
the value of the vacuum at this point is, although for
00:31:29
us galactic machines on intergalactic
00:31:32
scales, it is average, but locally in this place the
00:31:37
vacuum density decreases due to
00:31:38
this, that is, due to the very
00:31:42
presence of matter in this place and thanks to
00:31:47
this distribution, we have
00:31:52
such a phenomenon as gravity then yes, it all
00:31:55
depends on how dramatically our space is changing
00:31:58
and seagulls, let’s say it’s not
00:32:07
possible to open the image at all, they’re talking about
00:32:09
what are
00:32:11
we talking about now then since it’s now
00:32:16
being edited by another program, it’s been
00:32:21
editing for a month so far I don’t see it, yes, this is something
00:32:24
already, these have seen it
00:32:29
saw for a second, by the way, from
00:32:38
the distribution, let's stop at this
00:32:40
picture, look, there is
00:32:43
such a distribution, dark matter, and
00:32:48
so here is the cluster adele
00:32:52
223 adele 223, which means if you look,
00:33:00
I have a light drawn space in
00:33:03
which there is no matter, let's say donato, that
00:33:05
is, there is matter and which affects the
00:33:08
very structure of space, that is,
00:33:11
matter, it seems to compress baryonic
00:33:15
matter, it compresses the spatial
00:33:18
grid and due to this,
00:33:21
these cells that are located
00:33:24
close to the cluster are stretched out, and
00:33:27
thanks to this gradient difference,
00:33:29
we have gravitational forces, the
00:33:33
point is that now I’ll
00:33:40
probably go back to the first picture for a second now,
00:33:45
I’m now like that, like that, like
00:33:52
that, why can’t I see this picture
00:33:55
now, just a second, it’s being edited by someone
00:33:58
there, here’s something else, attach it, yes, I’ve
00:34:03
already closed the application,
00:34:05
so I’ll just give it a second, I understand so that
00:34:09
he closes it like that on and we and now I
00:34:25
’ll see how she how she the picture here
00:34:26
is called like this 10 picture we open the
00:34:32
tenth picture and you can see yes
00:34:42
look imagine that we have so let’s
00:34:45
say that space k consisting of
00:34:48
quanta but here I drew them with cells
00:34:50
so that it would be more convenient for me to draw them,
00:34:52
here
00:34:53
we will contract each cell, that
00:34:56
is, what is that we have the energy of compressed
00:34:59
quanta, it compresses the space if
00:35:02
they can fill it, you can see that here on
00:35:04
the right it is shown that I have divided such
00:35:08
brackets for each cell, but to imitate
00:35:11
it the very matter will begin there, a planet or a
00:35:15
star, and accordingly, in
00:35:18
space we have it in
00:35:21
stretched cells, the farther away the less
00:35:24
stretched cells are less stretched than
00:35:28
when moving away from the object, and
00:35:31
accordingly, gravity itself, the essence
00:35:34
of gravity is that energy in quanta
00:35:37
tries to flow to that place where the
00:35:39
checks are most stretched and, accordingly,
00:35:43
if the mind is taken, let’s say, yes, somewhere
00:35:45
and place an object, it will tend
00:35:47
to where the greatest gradient of
00:35:50
stretch is, that is, accordingly,
00:35:53
any material particle will
00:35:57
move to where they are more stretched,
00:36:00
respectively, when it
00:36:01
means to fly to land,
00:36:04
to bow, respectively,
00:36:05
to the object here that is, this is the essence
00:36:11
of gravity, and since we have different
00:36:15
conditions throughout space in outer space,
00:36:18
let’s assume what I
00:36:20
told you about the separation of
00:36:22
some quanta, here and the
00:36:27
gravitational forces will behave
00:36:29
differently even if we
00:36:31
my just a second, so if we take
00:36:38
the galaxy now for a second and see
00:36:40
what picture I have there so what
00:36:45
picture can I show it, in principle, we can have the
00:36:57
following picture, accordingly,
00:37:03
we have it, whether it’s the sun or some kind of
00:37:08
galaxy, let’s say it will be and say there is
00:37:10
space around it so
00:37:12
that matter will be drawn together, that is,
00:37:14
tend to go there
00:37:15
[music]
00:37:22
but the distortions themselves, yes, I showed here
00:37:26
that space itself, although it is distorted, is so audible to an
00:37:29
external observer, yes
00:37:33
yes yes audible, audible well, but for an
00:37:42
external observer who, so to speak,
00:37:44
sees separately in quanta, let’s say yes
00:37:47
can they measure the distortion for him, these
00:37:49
distortions are obvious, that is, if we
00:37:51
place some kind of rulers in this space,
00:37:54
they will look distorted for him,
00:37:57
but the observer who himself
00:38:00
consists of these so-called deformers
00:38:03
and check, he will see everything in Euclidean
00:38:05
space, that is we
00:38:09
won’t be able to see the distortions themselves, and if that means the point is
00:38:13
that if some kind of force field arises,
00:38:17
be it electric,
00:38:20
gravitational,
00:38:21
but electromagnetic and gravitational, then
00:38:24
this means that space itself has a
00:38:27
distortion for an external observer
00:38:30
who is, so to speak, in an
00:38:32
absolute frame of reference, then is, on the
00:38:35
basis of the exact ones relative to absolute
00:38:38
space, these distortions will be visible,
00:38:41
but we, as objects materially, we
00:38:43
will not see distortions inside this space,
00:38:46
for us everything will look
00:38:48
Euclidean, but but the distortion
00:38:52
is still gravitational lenses, they still
00:38:56
exist, that is we see these
00:38:58
distortions we can arrange, which means the
00:39:02
distribution of dark matter and everything
00:39:03
else, the fact is that gravity,
00:39:07
gravitational forces, in my
00:39:09
opinion, they are
00:39:12
volumetric formations, while the
00:39:14
other three forces are fundamental
00:39:17
interactions, they are based on changes in
00:39:22
planar structures, so let’s say yes, that
00:39:25
is, changes
00:39:28
for a second that is, if we
00:39:36
assume that an external observer will
00:39:38
see a distortion, let’s imagine that there is some kind of
00:39:40
electrical charge or
00:39:42
something else, that is, he will see these
00:39:45
distortions like that, good, that is, for
00:39:48
him, these distortions will be real, for
00:39:51
us, these distortions will be,
00:39:53
these distortions will not be but gravity,
00:39:57
well, why am I that gravity is
00:40:02
still slightly different in its
00:40:05
properties from the properties of the three
00:40:09
fundamental interactions, well, you are an
00:40:12
electromagnet, weak and strong, so
00:40:17
maybe I have some questions for you, I
00:40:21
could clarify something for you what is it that
00:40:26
you don’t understand, maybe it’s clear, but
00:40:33
it’s not very interesting, continue
00:40:34
please, you get it, I’m like this, the
00:40:38
remark leaves you that
00:40:41
these grids are
00:40:44
oriented, that is, in this grid there are
00:40:47
some directions in space that are
00:40:49
highlighted yes, that is, we can talk about the
00:40:52
axes in Davos, I will cut off how you became graphs
00:40:55
oasis, that is, space has a very
00:40:58
specific coordinate system, a
00:41:00
directional system, it is not anisotropic;
00:41:14
that is, the distribution of
00:41:16
nodes around the central one, because of the
00:41:19
tropon, because of the tropon, and this
00:41:22
structure and the departmental one on the basis of
00:41:24
which the
00:41:26
proposed model of the space
00:41:28
that I propose is built, and based on
00:41:31
this this model, a uniform distribution is obtained,
00:41:36
that is,
00:41:37
nodes, regardless of directions, but
00:41:40
still these directions, that is,
00:41:43
they are highlighted, they are still preserved despite the fact
00:41:46
that they are due to curvature, that is, it is like a
00:41:50
redistribution of curvature, it is
00:41:52
aligned and compensated
00:41:54
anisotropic with some anisotropic, that
00:41:56
is, I sent you the previous
00:42:03
video, I sent you a picture where
00:42:06
you put it on, let’s say on the
00:42:10
cover before to your video where the
00:42:13
distribution of the balls is laid out, that is, I
00:42:16
laid out these balls there, green and yellow,
00:42:18
yes, that is, and there you can see that if
00:42:25
we just lay them out, these
00:42:26
balls, then we will get a cube a
00:42:29
cup then and a Greek structure, that is, a
00:42:33
structure based on a cup then a core, that
00:42:36
is, some of their sides are triangular, the
00:42:38
other square, respectively, in
00:42:40
the directions, these distributions will not
00:42:42
be expensive, but since
00:42:46
our space is anisotropic, I still
00:42:49
came to the conclusion that it is
00:42:51
not the cup that needs to be used not a cup you are not a cup of that hole
00:42:55
oikos and the Greek elements are well and they seem to have an
00:42:58
even distribution and
00:43:01
here but still these directions
00:43:06
are preserved and depending on the
00:43:08
direction in which we are moving
00:43:12
depending on this we have it depends
00:43:17
on that is, it affects
00:43:19
what elements we are made of, that is, from the
00:43:21
food of quarks, let’s say I talked
00:43:24
about it, so now I’ll see how it’s a
00:43:30
picture, by the way, I have 21
00:43:34
pictures, now I’ll open 21 pictures, that
00:43:40
is, you can see what we have different
00:43:42
galaxies are moving towards the supercluster, but
00:43:47
in this case the Laniakea supercluster,
00:43:50
so depending on which
00:43:54
direction we are moving in that
00:43:56
direction, the lightest element will be for
00:43:58
us let's say y and lady quark but also
00:44:01
or y or anti d that is, and those those
00:44:04
elements which are located are located
00:44:07
more, that is, we are directed in one direction,
00:44:12
this seems to increase the likelihood that we are
00:44:15
made up of these elements, but each
00:44:18
each each let's assume an observer that
00:44:21
located in each galaxy he will
00:44:24
observe the same thing, that is, but they are
00:44:26
there in their own way - then they are called
00:44:27
let's say that if we lived, let's say not
00:44:31
in an orange galaxy, let's say in
00:44:33
red and then we would call
00:44:35
in this case c quarks c quarks we would
00:44:39
call quarks and there, accordingly,
00:44:41
a diamond would be anti bada let's say we would
00:44:46
call anti-quarks but in the sense that
00:44:52
they called it the most, let’s say about quarks and then what
00:44:56
we have there is anti troubles, let’s say we would
00:44:59
call our d quarks, let’s say yes, and
00:45:04
for us they would also be the lightest, the most
00:45:07
stable, as if the most stable and the
00:45:09
lightest in our system, that is, and
00:45:13
accordingly in others galaxies,
00:45:16
respectively, also experienced it if our
00:45:18
galaxy were simply rotated,
00:45:20
let’s say
00:45:21
in polar coordinates relative to
00:45:24
the center,
00:45:25
then
00:45:27
these types of quarks would change accordingly,
00:45:28
but we wouldn’t notice it, we would just
00:45:30
see that we have a
00:45:33
redistribution happening, so we need them for Easter
00:45:37
.
00:45:38
we would then have those quarks that are
00:45:42
now the lightest stable they would
00:45:45
not become the lightest stable then
00:45:47
everything would be matter that we have one
00:45:48
pair would sleep it would not decay it would
00:45:50
pass that is, thanks to the addition of
00:45:53
energy to each every y and t-quark it
00:45:56
would smoothly flow let's say a
00:45:59
vd quark or oh I mean in this quarter
00:46:01
but in other in other generations let's
00:46:04
say so but we would consider the fact
00:46:07
that you see she is flying at a speed of 370
00:46:10
kilometers per second according to my
00:46:12
idea regarding the cosmic microwave background
00:46:14
radiation and so that to detect this
00:46:18
difference, we accordingly need
00:46:21
to change the course of our solar system
00:46:24
quite radically so that we see
00:46:27
these deviations, not even a system
00:46:30
to change the course throughout the entire galaxy, yes,
00:46:33
even the entire galaxy, if we say there,
00:46:36
we will turn another one, but by the way,
00:46:39
maybe maybe even, well, how if this is about in
00:46:44
terms of the assumption that our galaxy
00:46:47
is spinning at a fairly decent
00:46:49
speed of 225 kilometers per second
00:46:51
relative to that is, our sun
00:46:53
is moving relative to the center, so,
00:46:55
accordingly,
00:47:00
we could even observe these transformations and changes in mass, that is,
00:47:02
maybe even the
00:47:06
same thing that I would tell you about the
00:47:08
biomechanics of dinosaurs, maybe it
00:47:10
somehow affects the change in mass and
00:47:13
thanks to this, large giant
00:47:16
animals could seem to exist and these
00:47:20
pterodactyls could fly,
00:47:22
that is, maybe it somehow affects the
00:47:27
channel in a tangible way level, that is, if we
00:47:31
change the speed radically, let’s say, yes, here
00:47:33
relative to the sun, we ourselves
00:47:36
rotate how much 30 kilometers per
00:47:38
second, so if we change and quite
00:47:43
significantly there and then we will see, but for us it
00:47:46
also affects, you see, for us it also affects the
00:47:49
measurement of our mass and the thermal influence
00:47:52
movement, that is, in order to measure
00:47:55
more accurately, we need to cool, let’s
00:47:58
say, the substance so that it is not
00:48:02
influenced by the thermal movement of quarks
00:48:04
and this is in the composition of protons and neutrons like this, that is,
00:48:12
they have a quart of protons there
00:48:19
and somehow they don’t fit like a gas
00:48:21
so that but it works out for us, not
00:48:24
only that is, we have protons also not
00:48:26
just a mixture of ueda quarks there at the
00:48:29
embankment the mesons there transmit all this to the
00:48:32
channel then I go there like how like it’s like a
00:48:36
big ball so let’s say and
00:48:39
the temperature that is it affects
00:48:42
changes in position, that is, it still
00:48:44
affects the speed in space, but of
00:48:47
course it doesn’t affect it dramatically either, but
00:48:50
how much movement is there, let’s say up to molecules,
00:48:54
the speed of molecules in a gaseous medium is approximately how many
00:48:58
there are, I know gas molecules,
00:49:02
they move there a kilometer of seconds, but that’s
00:49:05
also like it would be a small change
00:49:08
in order to radically measure
00:49:11
this change in massiveness,
00:49:13
but with us all this is done according to
00:49:15
statistics, that is, we also measure mass
00:49:17
in a statistical way,
00:49:20
that is, many, many, many
00:49:21
measurements are made and only then we determine the
00:49:23
value it even they still
00:49:28
can’t accurately measure it, but it kind of measures it, but there is a
00:49:31
value of these masses within the limits of error. the
00:49:50
magnetic field
00:49:53
is bent in the wrong place, exactly these numbers,
00:49:55
and then these are also calculated according to the energy balance,
00:49:58
but we don’t
00:50:02
produce all this and it’s understandable, but
00:50:05
still there is some kind of scatter, and that is,
00:50:07
they write the error plus or minus there,
00:50:09
only this and that there is,
00:50:12
although measurements are allowed, yes, the
00:50:16
middle path is made, the last path, and plus
00:50:19
we also get the whole
00:50:22
system moving, that is, in relative
00:50:25
space, therefore, according to the principle of
00:50:29
relativity,
00:50:30
but it doesn’t matter to us in which system
00:50:33
we are moving and there it all goes to Perry
00:50:35
normalization, that is, to us it’s hard
00:50:37
to see it,
00:50:47
so what else did I want to tell you? I
00:50:51
wanted to talk about gravitational
00:50:54
effects,
00:50:55
well, which, like I have such a
00:51:00
small study of gravity
00:51:03
relative to the gravitational constant,
00:51:06
I wrote an article about the fact that there is so
00:51:11
18 1 now, according to some
00:51:21
studies, yes, but in front of you here is
00:51:25
the meaning
00:51:27
gravitational constant measured in
00:51:30
different years by different laboratories, here it does
00:51:32
not stand from red dots to
00:51:34
marked and this black one is a
00:51:37
graph, so to speak, of the change in this
00:51:42
gravitational constant, that is, it is clear that there is
00:51:44
some kind of periodic
00:51:46
component, that is, a group of
00:51:47
researchers came to the conclusion that it is
00:51:49
all- does change according to this
00:51:52
periodic law with a periodicity of
00:51:55
5.9 years, but I thought that if you
00:52:02
follow my principles but the
00:52:05
assumed principles that the structure of
00:52:10
space depends on the
00:52:11
accumulation
00:52:13
of matter, we need in particular let’s say that it
00:52:16
can influence the gravitational
00:52:19
interaction of the earth, that is, it it
00:52:21
seems that the rotation speed changes,
00:52:26
this is the periodicity, that is, there are
00:52:29
not only changes in the gravitational
00:52:32
constant, but a change in the speed of the
00:52:33
earth's movement over time, but
00:52:38
with this periodicity of 5 and 9 years, but I
00:52:40
thought that maybe
00:52:43
Jupiter somehow influences that is but since
00:52:46
our
00:52:47
sun is a massive object and the next
00:52:50
massive object is Jupiter, it is possible
00:52:53
that Jupiter, due to the fact that it is
00:52:56
at perihelion, what you ate,
00:53:01
that it somehow changes the
00:53:04
structure of that space in such a way
00:53:06
that the massiveness of the earth
00:53:08
changes a little, that is, you
00:53:10
told about the fact that there are seasonal
00:53:14
annual changes in the rotation of the earth due to the
00:53:18
fact that our foliage is falling, let’s say,
00:53:21
and the moment of rotation changes a little, but
00:53:26
to connect it with the 5-year cycle there are almost
00:53:29
six years, that is, is it
00:53:32
possible, well, I looked at it and decided to
00:53:36
check it out like katawa, the periodicity of
00:53:39
Jupiter’s rotation
00:53:41
around the sun, but here I drew
00:53:46
a little, as if Samaras itself means the
00:53:49
spatial structure, so yes, I
00:53:51
schematically indicated that the curvature in the
00:53:54
spatial structure
00:53:56
is that at the moment when Jupiter approaches the
00:54:00
earth is, as it were, in a groove, that is, a
00:54:04
potential hole relative to Jupiter
00:54:06
before then there is Jupiter, as it were, deforming here
00:54:10
this potential hole in which
00:54:12
the earth is located, that is, but also,
00:54:14
accordingly, it is, as it were, its
00:54:16
gravitational shepherd or something, so the
00:54:18
earth rolls first tab a1 the grooves are
00:54:22
stupidly different, that is, it turns out that it
00:54:24
changes slightly, its groove changes
00:54:27
then there is a
00:54:29
gravitational potential
00:54:30
pit this is gravitational it changes
00:54:34
depending on how
00:54:36
close Jupiter is this is relative to
00:54:40
the sun I then compared
00:54:44
compared found it means data on the great
00:54:48
with the opposition of Jupiter and that means but also the
00:54:53
earth accordingly yes that is when the
00:54:56
closest distance
00:54:57
that is but when it comes close to the
00:55:00
sun when it is far away and this is
00:55:03
the graph it turns out, but it’s like the
00:55:05
rotation period of Jupiter is twice as long as
00:55:11
11 and 8 years, but since we have the
00:55:15
moment of arrival and departure twice,
00:55:17
that is, Jupiter before, that is, the arrival
00:55:19
comes and goes
00:55:20
then during this time the earth seems to
00:55:23
pass through it twice, this means
00:55:27
its natural zero state and therefore it
00:55:32
doesn’t go twice, but the
00:55:35
Jupiter sun-earth line crosses this very line every year
00:55:39
almost to crosses every
00:55:42
year, but the point is that
00:55:46
the structure changes
00:55:47
depending on how close it is, that
00:55:50
is, if it’s close, let’s say yes, it’s
00:55:52
close to something to the sun, but
00:55:54
if Jupiter is closer to the dream, not that
00:55:56
big of an eccentricity, Jupiter to, but it’s
00:55:59
basically decent there, something there,
00:56:03
but it’s decent compared to
00:56:06
there, I don’t know, but for the earth, for the earth, it’s
00:56:08
big, for the earth, it’s palpable, that is, but
00:56:13
that is, look now, it can even
00:56:15
be like that for me, how to do this, and to
00:56:18
demonstrate
00:56:19
the screen, now just a second, you
00:56:22
show the picture, then I see your
00:56:27
picture, drink, yes yes, I see this, I
00:56:32
just wanted to show some kind of dynamics of
00:56:36
rotation, what kind of picture is it, it’s on the website for me, a
00:56:43
servant, look, look, that is,
00:56:48
they were looking for dependencies, which means
00:56:55
what could this be happening, that is, but
00:56:57
some researchers came to the conclusion
00:56:59
that inside the
00:57:00
earth there is a cyclic change in the
00:57:03
moment of rotation due to the
00:57:04
redistribution of internal these
00:57:07
internal substances in the mantle there in the core,
00:57:09
and due to this, it seems like a change is obtained,
00:57:12
but I calculated that it turns out
00:57:15
clearly if we take, let’s say
00:57:18
[music]
00:57:21
video nanny, the
00:57:22
rotation period of Jupiter is 1186, it turns out
00:57:27
1186, that means this periodicity,
00:57:31
which is
00:57:32
gravitational, is equal to half the
00:57:35
doctors, that is, half the period of rotation of
00:57:37
St. Petersburg, and there, in general, well,
00:57:41
practically it falls into this range of up to
00:57:43
as many as ninety-three years, but here,
00:57:47
somewhere around two hundredths of a percent, the
00:57:49
difference is yes, and look, and that’s not what’s important
00:57:53
what else is
00:57:54
this, that is, it coincides in value, but also
00:57:57
the phase coincides, that is, I looked at
00:58:00
the coincidence of these phases with the period of
00:58:04
rotation of the
00:58:05
perihelion according to the helium of Jupiter, that is,
00:58:08
these phases they also coincide in time,
00:58:10
that is, what does it affect the accuracy
00:58:13
of the measurement or what does it influence not on the
00:58:16
accuracy of measuring
00:58:18
changes in the massiveness of the earth, so to speak,
00:58:21
that is, the earth is in a more
00:58:24
rarefied state or in a more compressed state,
00:58:26
and accordingly they measure in what
00:58:31
way gravitational constant two
00:58:33
balls are attracted, that these are these
00:58:39
values, these are different laboratories, they have
00:58:41
different worlds there but is it not possible to
00:58:43
measure using how to say
00:58:45
planets, that is, count them there, all sorts of
00:58:48
things there, the period of revolution there,
00:58:51
recalculate them while they count them in
00:58:54
their own way, here are the methods on earth, yes, that is, these are
00:58:56
laboratory traces, a laboratory
00:58:58
study, two large
00:59:00
massive bodies are chasing, yes so they measure their force of
00:59:03
attraction, and there are also these torsional changes,
00:59:07
but that is, well, that is, this is how
00:59:12
this Cavendish did his experiment, and
00:59:15
on the basis of these changes,
00:59:19
measurements are made, but there are also
00:59:21
different options for measuring the
00:59:24
gravitational constant, but the point is
00:59:27
that it seems to be seen and over time
00:59:32
it is where we have narrow errors, so to speak, yes,
00:59:35
that is, small errors
00:59:37
they fall into, that is, the calculation is that
00:59:42
something was considered by the researchers who
00:59:44
proposed this, that there is some kind of
00:59:46
dependence periodically crazy but
00:59:49
save with a 6-year cycle, but I decided
00:59:54
to just check, but maybe I’m
00:59:56
wrong, but the point is that in phase and in
01:00:01
years there is a coincidence in
01:00:04
periodicity, maybe I’m wrong about something,
01:00:07
but I just noticed this kind of
01:00:11
feature, well, it’s like I just decided on purpose
01:00:13
check it’s clear so what else can I
01:00:19
tell you what else can I tell you but,
01:00:22
accordingly, about dark energy,
01:00:24
maybe we’ll capture a little bit, so
01:00:28
it turns out that there is a mass that
01:00:32
supposedly
01:00:37
dark matter is made of, this is just an effect that is
01:00:41
associated with the fact that we underestimate the
01:00:44
gravitational effects that are
01:00:46
caused ordinary matter, that is,
01:00:49
also from what stars are made of,
01:00:52
but mostly stars, yes, but also the
01:00:56
galaxy, respectively, and dark
01:00:59
energy is simply the
01:01:03
opposite effect of dark energy, that is, if
01:01:05
we take, let’s say, a flat place
01:01:08
before digging a hole, this will be what we if we
01:01:10
dug it up, let’s say we have
01:01:13
matter, but the fact that we have a hole itself is
01:01:19
like an analogue of dark energy, that is, they are
01:01:24
mutually exclusive, that is, dark matter,
01:01:26
in general, matter, matter and dark
01:01:29
matter
01:01:30
can probably be combined into one
01:01:32
concept, matter, and due to this
01:01:35
that we slightly incorrectly estimate the
01:01:40
mass; this matter is the
01:01:42
same ordinary matter that, so to speak,
01:01:45
creates these effects, and dark energy is the
01:01:51
energy of empty space, that is,
01:01:54
from that space where there is no
01:01:58
matter, that is, as I have already shown, that
01:02:02
separation of energy occurs, that is
01:02:07
compressed who are you quanta they are pulled into
01:02:10
one place where we form
01:02:11
matter dark matter and all the effects are
01:02:15
associated with gravity and dark energy
01:02:18
are effects so to speak, the opposite of the
01:02:22
emergence of dark matter matter
01:02:28
in general, that is, it seems to turn out that
01:02:30
due to the fact that we have space
01:02:32
connected one connected to according to but my
01:02:36
ideas it turns out that if we in
01:02:39
one place condenses energy, then in another
01:02:42
place we have it just so to speak, but it seems to
01:02:45
go with the opposite sign of what I
01:02:47
said at the beginning, that is, it is as if
01:02:49
space is stretched and
01:02:52
and accordingly, if we place our
01:02:57
earth, we will place it at different points
01:02:59
in space until at different points in
01:03:01
space we will see that the cosmic microwave
01:03:04
background radiation from which we
01:03:06
study the shift, that is, the red
01:03:09
shift, and but in general the expansion of the universe, let’s
01:03:14
say so, yes, we will see a different
01:03:18
shift red if we take our earth
01:03:20
and it’s permissible to place it, but just
01:03:24
take it and place it into something that’s not
01:03:26
empty space, due to the fact that
01:03:29
the space there is stretched,
01:03:30
on the contrary, we don’t see a
01:03:33
red shift overshadowing, that is,
01:03:36
since in our laboratory the
01:03:38
light will be even lighter and descend
01:03:41
than in the moments but after the big
01:03:47
bang before then, for us, the cosmic microwave background
01:03:52
will be opposite the
01:03:53
ultraviolet region, and
01:03:56
accordingly, if we place our
01:03:58
earth closer to the center of our galaxy,
01:04:00
then we will see an even greater red
01:04:03
shift
01:04:04
and, accordingly, we will see that dark
01:04:10
matter is dark matter, strangely enough, that
01:04:12
is Well, it will become less for us because
01:04:15
we ourselves will become more darkly material,
01:04:18
so let’s say, yes, and accordingly, if
01:04:21
we place our earth in general in
01:04:25
densely populated places of
01:04:27
the universe, let’s say, let’s say the center of which there is no
01:04:29
cluster in the center of ours
01:04:31
and Laniakea, let’s say, yes, then for us then the
01:04:35
question is no the fact that
01:04:38
there is no dark matter, that is, it with its own we
01:04:40
will observe the same universe in
01:04:44
which we observe on earth, that
01:04:46
is, without any dark matter, that is,
01:04:48
for us, the excess of this dark matter
01:04:51
will be close to zero, that is, we we will not
01:04:53
see this change,
01:04:55
so accordingly there are some
01:04:58
points in space where if we
01:05:02
place, say, our earth before
01:05:05
with laboratories, then we will see that there
01:05:08
is no red shift, that is, children of
01:05:13
radiation that occurred in the early
01:05:15
universe, they correspond to what
01:05:18
we see in laboratories that
01:05:22
is, this is the point, even when I think
01:05:28
it’s clear, it’s not clear,
01:05:30
I’m kind of worried a little because of this, my tongue is getting slurred,
01:05:39
so
01:05:41
maybe you have some questions I
01:05:43
also wanted to show you, that is,
01:05:56
remember, I showed you in the past in
01:05:59
a conversation
01:06:00
I showed the form of the force of universal
01:06:02
gravity relatively that is, with
01:06:07
given densities
01:06:09
relative to let's say objects that
01:06:13
are in a given area of ​​the measured
01:06:15
area, well, that is, if malt
01:06:18
for the solar system ru1 ira 2
01:06:20
is equal to one, that is, this is the ratio
01:06:23
[music] of the
01:06:25
density of matter per unit volume in the
01:06:28
solar system relative to the solar system
01:06:30
system,
01:06:31
then we get that this fruit of us is
01:06:33
equal to one, if in the center of
01:06:37
the galaxy we have an increased density, then,
01:06:40
accordingly, it’s like ru1 per m1 if we
01:06:43
consider it as an object from
01:06:47
m1, this is the mass we assume, but
01:06:50
if we correct the tattoo reduced
01:06:53
reduced density,
01:06:54
it turns out that the mass seems to
01:06:58
increase, the purpose of the arao-den is,
01:07:01
accordingly, the interaction force, well, it
01:07:04
will be noticeably greater by an order of magnitude, let’s
01:07:08
say dates, but if we have a density, they have
01:07:11
gravitational constants there,
01:07:13
another no, they have a gravitational
01:07:16
constant, too, but that’s not if not
01:07:18
if we ignore these same ditch, they have
01:07:21
another one there, but if if
01:07:23
if we push the tour into the gravitational one, we
01:07:26
constantly imitate the company of armor, yes
01:07:28
if the mouth of a boa constrictor shove both yes if
01:07:31
but if they also if you see, we
01:07:33
count the mass in kilograms and if we are here
01:07:36
we’ll replace this m with quantity,
01:07:39
so let’s say
01:07:42
it’s the molar mass, and then if we
01:07:45
count in the number of pieces in pieces,
01:07:47
let’s say dates and then we wo
01:07:51
n’t get by with the hip, that is, we’ll have to
01:07:52
take into account the role of it’s clear how to come up with a
01:07:57
strong expensive influence, but in the sense in general
01:08:03
it influences our corner in our galaxy it is
01:08:07
given the force of gravity greatly influences
01:08:11
it depends on that well yes, in principle,
01:08:14
if we have a roll what percentage is in
01:08:18
our places and in the center of the galaxy of work
01:08:20
how much percentage there I looked means
01:08:23
oh that’s the
01:08:24
dad of our galaxy there I looked that
01:08:26
if 7 10 times we have a density up to above the
01:08:29
elbow 10 relative to our our to
01:08:32
the position if we have direct
01:08:34
proportionality and a mouth, which means there is
01:08:37
49 times stronger does not interact the
01:08:41
thing is that well, yes or no now
01:08:50
wait, I’ll figure it out
01:08:53
there you understand in what does the meaning mean that
01:08:57
now, wait, wait, well, yes,
01:09:03
it turns out that way, that is, but you see, due to the
01:09:06
fact that all our bodies are there,
01:09:08
so to speak, surrounded by other bodies, this
01:09:13
force decreases, that is, yes, it
01:09:16
turns out that this force is greater between
01:09:18
individual ones, which means the object is ours the force
01:09:21
of gravity is greater, which means they are stronger than
01:09:23
you, but due to the fact that they are
01:09:26
also surrounded, let’s say, by a large number of well, for
01:09:29
example, we are towards the center of the galaxy, if we are
01:09:32
drawn as we think to the lethal level, we do
01:09:34
not take into account, and there 7-10 times it is greater, it
01:09:38
means us there, we are on the periphery this means that
01:09:41
we are actually being pulled there 7-10 times
01:09:45
stronger, yes, that
01:09:46
is, this curve is rotating,
01:09:49
in fact, if we estimate
01:09:51
the mass there,
01:09:52
it means that this has attacked our speed
01:09:56
of movement, the speed of movement of the solar
01:09:57
system means that in this city, this is where
01:10:01
it turns out the mass is actually 7-10
01:10:03
times less,
01:10:04
so start if we talk about when they talk
01:10:07
about dark matter, that’s why dark
01:10:09
matter is needed so that the
01:10:12
peripheral stars in galaxies
01:10:14
don’t need to start too quickly, I’ll start about what they don’t
01:10:17
go too quickly, if there’s
01:10:20
just density inside more, they
01:10:22
move faster, that is, in fact, there is
01:10:24
no dark matter, there is simply a
01:10:26
dependence of the force of attraction on the dense
01:10:31
average density of matter in a given place
01:10:33
from it in the center of the galaxy inside the jackdaws is
01:10:36
naturally greater than on the periphery
01:10:39
there and, accordingly, these are 7-10 times
01:10:42
stronger although no, that’s why there is an
01:10:45
apparent error in determining the
01:10:48
mass of
01:10:49
those galaxies, that is, in fact, it seems
01:10:51
like dark matter is not and is not needed, it
01:10:53
turns out that it is not necessary and,
01:10:56
accordingly, those objects that
01:10:58
are further from the center than our
01:11:02
sun, so to speak, yes then They succeed in
01:11:04
denying it, but not negatively, but less
01:11:07
and less,
01:11:08
even less, it turns out that those dwarf
01:11:11
galaxies that fly, so to speak, in
01:11:13
relatively empty space, they are, that is, they
01:11:17
seem to be easier, it turns out that the
01:11:19
galaxy itself is easier, that is, it is
01:11:22
easier to hold and there, let’s say,
01:11:26
foam balls
01:11:27
when spinning up than cast iron, yes, that is,
01:11:31
and due to this, their speeds are so
01:11:33
high, that is, for dwarf galaxies,
01:11:36
this is generally an interesting concept, yes, I’m
01:11:42
thinking so now, new,
01:11:44
is it possible that the theory of gravity is correct,
01:11:49
without dark matter, yes, well,
01:11:52
I kind of have my own hypothesis called mond
01:11:56
2019 so pretentious what does it mean man man
01:12:00
man manda
01:12:01
well, we have Victoria mondo
01:12:06
modified Newtonian dynamics
01:12:08
this is
01:12:09
and I thought mond is the world in French and the
01:12:13
film is to embellish man glad
01:12:15
mondo that is, this is a theory theory is
01:12:20
close but things are going on the fact that in theory
01:12:23
their mond is connected with the change,
01:12:25
so to speak, with the fact that the acceleration of the
01:12:31
interaction force depends gravitationally on
01:12:34
micro accelerations, that is, at large
01:12:37
distances it
01:12:38
means micro, which is what micro is called, the
01:12:43
acceleration of that force is microscopic there, it
01:12:45
turns out to be centrifugal, and due to
01:12:47
this,
01:12:48
it means they get there from the change in
01:12:51
interaction forces that the more of you
01:12:53
it is not clear clearly hang it turns out that
01:12:56
you can do without dark matter on your own, but
01:12:58
here in the theory of gravity, but not
01:13:01
everything is in order, as they say, because
01:13:04
there is something there, someone there, we are not
01:13:06
wrong here we understand, yes because yes, that
01:13:09
means I liked it, I liked it
01:13:11
now, come up with a name and I’ll
01:13:13
post it soon, there
01:13:19
may be some other questions in
01:13:22
the summary such that the concepts you proposed on the
01:13:26
basis of this and dragging the concepts here are yours here, these
01:13:29
pixels are like pixels Axel and
01:13:33
space consist from such
01:13:35
small voxels or pixels
01:13:39
as icosahedral based on the
01:13:43
categorical connections of Greek voxels,
01:13:47
yes, it means it means that the
01:13:51
gravity of this does not depend on the density of
01:13:54
matter,
01:13:55
but depends on the density of matter,
01:13:57
and for 70 it is quite strong, it
01:14:00
turns out that you can do without
01:14:04
that means dark matter to explain those
01:14:07
phenomena for which it was invented
01:14:10
dark matter and the explanation of too
01:14:13
high speeds of movement means
01:14:17
outlying stars in galaxies, but the search for
01:14:19
this originally started for you I
01:14:22
really
01:14:23
really want to publish it as soon as possible, you want
01:14:25
to add something,
01:14:26
but I don’t know how I have questions
01:14:31
in my head, then this model is built like this,
01:14:34
let’s say if there are questions about the public, they
01:14:36
will tell you, I hope at the meeting not
01:14:37
the last, if you now remove the picture,
01:14:40
that is, from what is called stopping
01:14:42
screen displays, then we will see you
01:14:44
in all your glory in full size, we will
01:14:46
blur the viewers from to date say
01:14:49
if you want so happy to stop
01:14:51
the demonstration so you have
01:14:55
appeared now this is such an interesting
01:14:58
concept it turned out to be true I like
01:15:01
I am generally opposed to dark matter and
01:15:04
I would like to quickly refute it well at least in this
01:15:07
way income in this
01:15:09
way Juan so do I agree to everything
01:15:13
as long as it’s not dark matter because well, I do
01:15:16
n’t like it Dad, in my opinion
01:15:19
it’s still a little bit so how can I
01:15:22
say this, this is
01:15:25
such a publicity stunt of the USA, give us
01:15:28
money, we’ll look for particles of dark
01:15:30
matter,
01:15:33
of course I don’t want to to interrupt
01:15:36
money from physicists who ask for money
01:15:38
for a detector and weakly interacting
01:15:41
particles and from understanding they will not be there not 30 and
01:15:44
where it is needed this ananda anyway they will
01:15:46
come to me to register no I
01:15:48
understand actually but
01:15:51
no one will give them money anyway because they there is no
01:15:54
money for this, there is no money, they will build a palace
01:15:56
there, they will buy a Chelsea team, we won’t build a detector,
01:16:00
so I kind of just go with what I
01:16:04
have, they’ll say to me, as if I myself am now
01:16:06
standing in such a state that I’m
01:16:10
studying, that is, the material that
01:16:13
we had at the institute in physics in
01:16:16
mathematics, let’s say, yes, we didn’t have
01:16:21
a tender, let’s say before algebra,
01:16:23
that we are described by the general theory of
01:16:26
relativity, that is, but I, like a
01:16:28
dog, understand that they were allowed in older Belous,
01:16:31
so the madras matrices were there before, but I was in them,
01:16:36
so to speak, at the moment when I studied
01:16:39
it for me, it was like it was something
01:16:41
abstract, so our
01:16:43
teacher himself didn’t seem to be particularly like that,
01:16:45
what is it to gain and speaking, you can
01:16:48
watch it on the Intuitive channel, I have a
01:16:50
linear algebra course, thank you, let’s see,
01:16:54
I tried to do it as best as possible
01:16:56
It’s clearer, here’s how to say it,
01:16:57
focusing on a poorly prepared
01:17:00
viewer,
01:17:01
and even now I’m sort of studying it myself and
01:17:05
doing self-education, this is gender
01:17:08
algebra,
01:17:09
because quantum mechanics is interesting to me,
01:17:12
and these are the concepts that
01:17:15
are available in modern ones, group theory is
01:17:18
now trying, but for now it’s kind
01:17:20
of like I’m busy with tenders, so I need to
01:17:23
understand what tenders are and apply them
01:17:25
to the model that I’m
01:17:27
building, there’s a picture,
01:17:31
okay, let’s not show it anymore, that is,
01:17:35
I built a galaxy with a
01:17:38
distribution with a
01:17:41
uniform distribution of points up to
01:17:44
which will be responsible for the mass and
01:17:46
accordingly, depending on the radius, I can
01:17:48
change the massiveness of each of
01:17:51
each scrofula, thereby affecting the
01:17:54
amount of matter if you calculate the
01:17:57
molar masses, oh, and now I
01:18:00
need knowledge, as it were, in terms of volumetric
01:18:04
volumetricity, so let’s say
01:18:06
something, well, we didn’t have all the strength of materials
01:18:09
either maybe and here I see from a
01:18:12
distance of light years the
01:18:14
speed is kilometers per second to so
01:18:18
now to the dish and May the speed is
01:18:21
so and I can show it to you yourself
01:18:26
show the fire department I opened the graphics there like this
01:18:28
yes yes there are graphics now I’m here
01:18:36
injecting myself in the right place so demonstrations
01:18:42
screen this starts for a second
01:18:49
so no not this picture of an atom that is,
01:18:52
I just wanted to show the
01:18:54
rotation curve as an explanation yes what is Daniele
01:18:59
after it this is this yes this is
01:19:03
this is my current simulation when which
01:19:05
6 would have reached reached this green more a
01:19:07
thick line graph, yes, this is the
01:19:10
distribution of the
01:19:12
motive of matter, that is, this is the influence, that
01:19:17
is, the density of the density of each node,
01:19:18
so I have, as it were, this graph, it is
01:19:20
combined with the galaxy, you see there in the
01:19:22
background there is a kind of tick drawn,
01:19:24
and I have these nodes, that is,
01:19:27
dots there are several billion
01:19:30
masses of the sun each, so I have
01:19:35
n’t entered numerical values ​​there yet, while I’m just
01:19:38
building a blank
01:19:41
based on this blank, I’ll be
01:19:44
carrying data about our galaxy there, we’re observing
01:19:47
right here, here I
01:19:51
already have a distribution of masses, take
01:19:53
the green one this is the same curve this is the
01:19:55
one below on the gray graph this is yes
01:20:00
yes yes this is the same curve this is the
01:20:02
green one here and this blue one
01:20:06
this is according to the formula that I
01:20:08
showed you this is the distribution of
01:20:10
mass you see it somewhere here it’s 10 times
01:20:12
larger for everyone here and here here it is this
01:20:16
little red one this density in matter
01:20:18
density that is the calculated
01:20:22
density of matter and the galaxy of the center of
01:20:25
the galaxy even in the center it’s
01:20:27
small for you but the fact is that I have 0 here, in
01:20:30
theory it’s there should go there,
01:20:33
that is, this first
01:20:35
rick needs to be programmed somehow,
01:20:37
you see there 0 I have nothing there
01:20:39
00 x3 here if on the Galatian model you have an
01:20:42
empty space, yes there was an empty space
01:20:45
there, put a black hole there, but maybe
01:20:48
later I’ll put it simply when
01:20:50
programming and I understand the individual
01:20:52
smile of discrete mathematics, yes, yes,
01:20:56
that is, this green line
01:21:00
can be used, the green line can be taken directly from the
01:21:02
graph and
01:21:04
edited, and here, of course, the
01:21:08
program itself cannot, it can first be
01:21:10
popped up straight line to
01:21:11
and then just click where it is to
01:21:14
move it and it bends for me,
01:21:16
but here I already have
01:21:17
a picture formed depending on how I
01:21:21
bent it and here this graph x is not
01:21:25
okay, if you want to add anything else, but
01:21:29
thank you for watching, dear viewers
01:21:34
I’m glad that some people liked it, yes,
01:21:36
that is, but many, by the way, liked it,
01:21:38
as if not up to that peak, then the first conversation
01:21:43
that you and I had was here, but I
01:21:46
apologize for the fact that the sound was hee-hee yes, I
01:21:48
wish I knew if you could how - it would be louder,
01:21:50
often you can hear me normally, yes, well,
01:21:53
I can hear it normally, let’s see what
01:21:54
happens in the recording, maybe I’m
01:21:57
shouting over you, I don’t know how our
01:21:59
microphones are not configured, this is what I don’t
01:22:01
know how to tune in, but I kind of
01:22:03
tried my best here, you don’t know his fat
01:22:06
calculus, I don’t know how to set up a
01:22:08
microphone, the public has gathered and
01:22:13
periodically engages in [ __ ], well, what can you
01:22:17
do, well, thank you very much
01:22:20
for your talented folder face, but
01:22:23
thank you for a second, so these are the things
01:22:25
I’ve seen: a person is engaged in
01:22:29
theoretical physics himself and, moreover,
01:22:32
promotes his own in general - then speaking of
01:22:34
a little bit of an unusual idea, but I
01:22:37
liked it because I am an ardent supporter of
01:22:39
dark matter and dark energy. I like
01:22:41
him don’t like dark matter and
01:22:44
dark energy. beauty to say
01:22:48
in the suit card knew thank you very much to
01:22:52
the public thank you like and repost
01:22:54
discuss well of course of course it
01:23:01
would be nice if you helped my channel with money
01:23:03
below there are props to find out if it’s convenient for
01:23:06
me to pass in the background here is a person
01:23:08
who does on his mind not everything is normal
01:23:10
normal normal but ok thank you
01:23:12
lantern goodbye dear public see you
01:23:14
next time I hope goodbye to the
01:23:16
sea hand then the
01:23:17
meeting of the new if

Description:

Мой гость Михаил Николаевич Бровкин (по образованию инженер-электрик) разрабатывает свою теорию всерьёз! Его канал: https://dzen.ru/mihail_brovkin Для донатов и вопросов: ►https://www.donationalerts.com/r/boyarshinov_b_s МОЖНО ДЛЯ ДОНАТОВ ИСПОЛЬЗОВАТЬ НОМЕР КАРТЫ: ►4274320043441537 Это сбербанковская карточка VISA оформленная на Бориса Сергеевича Бояршинова. Станьте спонсором канала, и вы получите доступ к эксклюзивным бонусам. Подробнее:►https://www.youtube.com/channel/UC7yMBOeBTcPhlTdI-PS-_Xg/join ТЕПЕРЬ ОБ ОЧЕНЬ ВАЖНОМ! Чтобы я не прекращал жить и делать эти видео для Вас, не забывайте, пожалуйста, помогать и переводить деньги. Хорошо бы (от «желательно» до «обязательно») указать назначение перевода: «В ДАР». НУЖНО ИСПОЛЬЗОВАТЬ НОМЕР КАРТЫ: ►4274 3200 4344 1537 Это сбербанковская карточка VISA оформленная на Бориса Сергеевича Бояршинова. [Всем известные номера моей карты (заканчивавшийся 3243 и на 7869), на которые Вы могли присылать деньги, заблокирован («спасибо» за это нужно сказать жуликам, проникшим в зрительские ряды).] [Для переводов из-за границы: Получатель BOYARSHINOV BORIS SERGEEVICH. Счёт получателя: ►40817810240020062563. Наименование банка получателя и адрес: SBERBANK (SREDNERUSSKY HEAD OFFICE) MOSCOW RUSSIAN FEDERATION. SWIFT-код: SABRRUM3. Код подразделения банка по месту ведения счета карты (для внутренних переводов по системе Сбербанк): 40904000022.] Если переводите на номер счёта, то внутри страны: счёт получателя: ►40817810240020062563, СРЕДНЕРУССКИЙ БАНК СБЕРБАНКА РОССИИ Г.МОСКВА, ИНН Банка получателя 770708393, БИК Банка получателя 044525225, Корреспондентский счёт: 30101810400000000225, Код подразделения банка по месту ведения счета карты (для внутренних переводов по системе Сбербанк): 40904000022. Есть Яндекс-кошелёк: ►https://money.yandex.ru/to/410014316570169. Есть Кошелёк QIWI ►+79653161677 Есть кошелёк ВКонтакте ►VK Pay 295031805 Можно перевести деньги через Pay Pal, имя получателя, то есть моё: ►[email protected] Есть DonationAlerts: ►https://www.donationalerts.com/r/boyarshinov_b_s Есть копия этого текста с реквизитами: ►https://pastebin.com/BAa9QAPx с уважением, Борис Бояршинов Подписывайтесь на меня в социальных сетях, лайкайте и репостьте: - Вконтакте: ►https://vk.com/id295031805 - Самиздат, «Сказки Бояршинова»: ►http://samlib.ru/b/bojarshinow_boris_sergeewich/ - Facebook: ►https://www.facebook.com/unsupportedbrowser Я создал резервный канал на платформе Яндекса: https://vh.yandex.ru/video?c=2616674125121358409&u=535374978

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