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Big Bang, Big Claim: Why This Bold Idea Is Right
Space.com ^ | Apr 21, 2018 | Paul Sutter, Astrophysicis | LiveScience

Posted on 04/24/2018 10:57:04 AM PDT by ETL

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In other news...

Unsolved problems in the Big Bang model

The are few unsolved issues in the standard Big Bang model. These are as follows:

1. Horizon problem: There are portions of the universe that are visible to us but invisible to each other. Horizon problem points out that different region of the universe have not yet contacted each other due to the great distances between them, but nevertheless they have the same temperatures and other physical properties. We know that CMBR is found to be homogeneous everywhere. How it became possible? The observed isotropy of the CMB is the problem in this regard. Because we believe that information cannot travel faster than light. The resolution of this apparent inconsistency is offered by inflationary theory in which a homogeneous and isotropic scalar energy field dominates the universe at some very early period. According to Heisenberg, during the inflationary phase, there was a  ‘Quantum thermal fluctuations’ which would be magnified to cosmic scale. These fluctuations serves as the seeds of all current structure in the universe. Inflation predicts that the primordial fluctuations are nearly scale invariant and Gaussian, which has been accurately confirmed by the measurement of the CMBR.

The instant before inflation began, universe was only about 10^{-24}cm in diameter. All matter and energy were in close and uniform contact within the briefest instant, the universe expanded exponentially by a factor of about 10^{50} , stretching once intimately connected matter and energy to the farthest reaches of the universe. The information contained in the per-inflationary universe didn’t have to travel the speed of light, it traveled at the speed of inflation.

2. Flatness problem: According to Einstein field equations of general relativity, the structure of space-time is affected by the presence of matter and energy on small scales, space appears flat – as does the surface of the Earth if one looks at a small area. On large scale, space is bent by the gravitational effect of matter. The amount of bending (or curvature) of the universe depends on the density or matter/energy present. According to cosmology (Friedman – Lemaitre – Robotson – Waker metric), the universe may have positive, negative or zero spatial curvature depending on its total energy density (k).

Curvature is negative if k<0 (hyperbolic)
Curvature is positive if k>0 (spherical)
Curvature is flat if k=0 (flat)

Total energy density is a fine tuned parameter between the density of matter and energy in the universe. The values of total energy density departs rapidly from the critical value over cosmic time.

Now, the question is, during Big Bang nucleo-synthesis, what was the values of this parameter? Positive or negative or zero? How it was so fine tuned? We know that the reality that our universe is approximately flat. Thus, the value must be extremely close to ‘One’ (in 1 / 64 th) i.e. \Omega_o initially must have almost exactly the number given below which is extremely close to one. 1.0000000000000000000000000000000000000000000000000000000000001

There is no known reason for the density of the universe to be so close to the critical density, this appears to be an unacceptably strange coincidence in the view of most astronomers.

Many attempts have been made to explain the flatness problem. Modern theory includes the idea of inflation which predicts the observed flatness of the universe. A brief period of extremely rapid expansion maintained the situation of flatness. Because, before the expansion (i.e. inflation) all matter and energy were intimately connected. At that time, the density is very close to (fine tuned) the critical density of the universe.

3. Magnetic monopole problem: Monopole is a hypothetical particle in physics that is a magnet with only one pole and it will have a net magnetic charge. In the year 1931, Dirac proposed quantum theory of magnetic charge. In his theory, he showed that the existence of monopole was consistent with Maxwell equations only if electric charges are quantized, which is experimentally observed. Since then, several systematic monopole searches have been performed. Now, we know that the monopole detection problem is an open problem in experimental physics.

The grand unification theory (GUT) and superstring theory (both theories successfully combine strong and electro-weak force) predicts the existence of magnetic monopole. According to GUT, the topological defects in space is termed as magnetic monopole. These defects were produced efficiently in the hot early universe, resulting in a density much higher than observed. No monopole is observed till date. It is believed that the inflation removed all topological defects from the observable universe. Thus, inflation drives the geometry to flatness, inflation maintains isotropy and inflation removes all point defects.

4. Baryon asymmetry: As we discussed in the Big Bang theory that an unknown process called Baryogenesis created the asymmetry. For baryogenesis to occur, Sakharov conditions must be satisfied. These require that Baryon number is not conserved, that c and cp- symmetry are violated and that the universe depart from thermodynamic equilibrium. All these conditions occur in the standard model, but the effect is not strong enough to explain the present baryon asymmetry. Baryon asymmetry lead the dominance of matter over antimatter.

5. Dark matter: Numerous observations (anisotropies in the CMB, galaxy cluster velocity dispersions, large scale structure distributions, gravitational lensing studies and x-ray measurement of galaxy clusters) have indicated  the existence of dark matter. The rotation curve of galaxies hint that the dark matter particle exists in the halo of the galaxies. So, the dark matter is the reality. However, dark matter particles have not been observed in laboratories. Many candidates for dark matter have been proposed and several projects are underway. The standard big bang model have not explained the existence of dark matter particles.

6. Dark matter: Measurement of red shift magnitude relation for supernova indicate that the expansion of the universe has been accelerating since the universe was about half its present age. To explain this acceleration, general relativity requires ‘negative pressure’, called Dark (or Vacuum) energy. Negative pressure is a property of vacuum energy, but the exact nature of dark matter remains one of the great mystries of the Big Bang. Possible candidates include ‘Cosmological constant’ and ‘quintessence’ (hypothetical form of dark energy postulated as an explanation of observations of accelerating universe and is a scalar field). Results from the WMAP (2008) indicate that the universe today is 73% dark energy, 23% dark matter and 4.6% regular matter and less than 1% neutrinos.

1 posted on 04/24/2018 10:57:04 AM PDT by ETL
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Unsolved problems in the Big Bang model
http://physicsanduniverse.com/unsolved-problems-in-the-big-bang-model/


2 posted on 04/24/2018 10:57:59 AM PDT by ETL (Obama-Hillary, REAL Russia collusion! Uranium-One Deal, Missile Defense, Nukes. See my FR home page)
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To: SunkenCiv

BB Ping!


3 posted on 04/24/2018 11:00:46 AM PDT by ETL (Obama-Hillary, REAL Russia collusion! Uranium-One Deal, Missile Defense, Nukes. See my FR home page)
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To: ETL

If our universe was the size of a peach, what surrounded it? The universe is everything that is, even the nothing in which somethings float. The size of a peach in a cluster of peaches? Then that peach is not the universe.


4 posted on 04/24/2018 11:10:54 AM PDT by arthurus (yua)
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To: ETL

Bookmark


5 posted on 04/24/2018 11:14:46 AM PDT by Slicksadick (We accept the love we think we deserve.)
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To: ETL

I must not be much a physicist. I find these 5 “reasons” to be pretty darn weak.

The universe used to be the size of a peach and a trillion degrees? How do we know this?

It’s dark.
It used to be different.
It’s expanding.
It’s cooling.
It’s three-fourths hydrogen.
Therefore, the universe used to be the size of a peach and a trillion degrees. QED.


6 posted on 04/24/2018 11:17:05 AM PDT by ClearCase_guy
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To: arthurus

It would have to be surrounded by fuzz.


7 posted on 04/24/2018 11:17:22 AM PDT by C210N (Republicans sign check fronts; 'Rats sign check backs.)
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To: ETL

But their thinking became futile and their foolish hearts were darkened. Although they claimed to be wise, they became fools


8 posted on 04/24/2018 11:18:34 AM PDT by kjam22
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To: ETL

Genesis 1:1

next....


9 posted on 04/24/2018 11:18:39 AM PDT by QualityMan (The Adults are back in town)
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To: arthurus

Physicists have been talking about our universe being just one of many universes in a multiverse. That’s how they get around what’s outside our universe and why it started at a finite time in the past(13.8 billion years ago). Other universes may be older or newer. Basically they kicked your question down the road to be solved later.


10 posted on 04/24/2018 11:25:55 AM PDT by mikeorc
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To: ETL

Because God said: “Let there be Light!”


11 posted on 04/24/2018 11:28:10 AM PDT by Paradox (Don't call them mainstream, there is nothing mainstream about the MSM.)
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To: ETL

bfl


12 posted on 04/24/2018 11:31:53 AM PDT by Skooz (Gabba Gabba we accept you we accept you one of us Gabba Gabba we accept you we accept you one of us)
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To: mikeorc

Inflation theory was concocted as a way of making the BB work. However, it itself is riddled with problems.


13 posted on 04/24/2018 11:32:33 AM PDT by ETL (Obama-Hillary, REAL Russia collusion! Uranium-One Deal, Missile Defense, Nukes. See my FR home page)
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To: mikeorc
Basically they kicked your question down the road to be solved later.

"It's turtles all the way down!"

14 posted on 04/24/2018 11:34:22 AM PDT by ClearCase_guy
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To: C210N

Oh yeah?
Well, Dave’s not here man.


15 posted on 04/24/2018 11:34:41 AM PDT by MrEdd (Caveat Emptor)
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To: ETL

It is a fairy tale and nothing more.


16 posted on 04/24/2018 11:36:34 AM PDT by bmwcyle (People who do not study history are destine to believe really ignorant statements.)
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To: C210N

They used fuzzy math.


17 posted on 04/24/2018 11:42:07 AM PDT by BipolarBob (All governments suffer a recurring problem: Power attracts pathological personalities.)
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To: ETL

I would think that at a trillion degrees everything would be sterilized pretty good. It would be difficult for one celled creatures to just *poof* magically appear after that took place.


18 posted on 04/24/2018 11:44:18 AM PDT by BipolarBob (All governments suffer a recurring problem: Power attracts pathological personalities.)
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To: ETL

“At 13.8 billion years ago, our entire observable universe was the size of a peach and had a temperature of over a trillion degrees.”

There were peaches 13.8 billions years ago? Who knew?

And this is observable.

“Magnetic monopole problem: Monopole is a hypothetical particle in physics that is a magnet with only one pole and it will have a net magnetic charge. In the year 1931, Dirac proposed quantum theory of magnetic charge. In his theory, he showed that the existence of monopole was consistent with Maxwell equations only if electric charges are quantized, which is experimentally observed. Since then, several systematic monopole searches have been performed. Now, we know that the monopole detection problem is an open problem in experimental physics.”

It’s a problem when people can’t see the forest for the trees. Imagine an arrangement of bi-polar magnets in a spherical formation in which a pole is directed toward the center and the other pole is directed outward from the center. And these magnets are so tightly placed together so as to disallow magnetic flux to flow backwards between them. (This is not physically possible, but as a thought experiment it is useful.) You would have a “monopole permanent magnet”. How would it behave?

Simple question: based on the observable phenomenon of Fleming’s right-hand and left-hand rules, what are the implications for motion, field, and current of such a magnetic monopole?

You will find the ordinary behavior of a photon electromagnetically is similar to what we expect from a so-called magnetic monopole. Technically the theoretical magnetic monopole is a magnetic photon. But photons already have magnetic properties. But a magnetic monopole is defined as different from the behavior of “normal” photons which pair with leptons.

I think a photon IS a magnetic monopole which scientists simply want to make stand still and be examined in a moment of time. But photons don’t cooperate that way.

Again. Forest. Trees.

Dirac’s quantization proof supports that photons already are magnetic monopoles. The real question is why magnetic monopoles do not follow the left- and right-hand rules due to pairing with leptons.


19 posted on 04/24/2018 11:47:30 AM PDT by unlearner (A war is coming.)
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To: ETL

“Our universe is around 13.8 billion years old”

Problem: gravity bends time; and time is not a constant.

If you traveled at nearly the speed of light to the edge of the Milky Way and back again, about 40 years would have passed for you; but earth would have aged 100,000 years in that time.

After the “big bang” mass flowed out into space faster than the speed of light — which is theoretically impossible; unless, that is, time itself was compressed.

So how long did it take the universe to form? A trillionth of a trillionth of a second? And a minute more to coalesce into elements?


20 posted on 04/24/2018 11:48:34 AM PDT by CondorFlight
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