Thursday, June 30, 2022

Philadelphia

Philadelphia was founded by William Penn, for whom Pennsylvania is named (Penn's Woods). Think of Philadelphia as a grid. The main north-south street is Broad Street. The main east-west street is Market Street. Where these two streets meet, in the figurative center of Philadelphia, is City Hall. Nearby is Independence Hall, where the Constitution and the Declaration of Independence were drafted. The following scenes begin in the courtyard of Philadelphia City Hall.

There are multiple scenes following. To see the scenes, after the first one, you must first click the up arrow, ^, before you can move on to the next scene by clicking the right or forward arrow, >, After clicking the up arrow, you can then hide the previews of successive scenes, if you wish.

https://www.google.com/maps/@39.9524048,-75.1635508,2a,75y,160.37h,90t/data=!3m7!1e1!3m5!1smNC4dWXFJvEcIA0coWH-gw!2e0!6s%2F%2Fgeo1.ggpht.com%2Fcbk%3Fpanoid%3DmNC4dWXFJvEcIA0coWH-gw%26output%3Dthumbnail%26cb_client%3Dmaps_sv.tactile.gps%26thumb%3D2%26w%3D203%26h%3D100%26yaw%3D164.70935%26pitch%3D0%26thumbfov%3D100!7i13312!8i6656

This is Logan Square, through which runs Ben Franklin Parkway. On the square is the Franklin Institute. Ben Franklin also began the University of Pennsylvania which teamed with the British Museum to amaze the world by excavating the ancient city of Ur. The Cathedral Basilica of Saints Peter and Paul, made of dark red stone, was visited by Pope John Paul not long after he became pope.

https://www.google.com/maps/@39.9581218,-75.170475,2a,75y,317.22h,90t/data=!3m7!1e1!3m5!1s7qW7XdW8vUGjZHLxjeuwmg!2e0!6s%2F%2Fgeo1.ggpht.com%2Fcbk%3Fpanoid%3D7qW7XdW8vUGjZHLxjeuwmg%26output%3Dthumbnail%26cb_client%3Dmaps_sv.tactile.gps%26thumb%3D2%26w%3D203%26h%3D100%26yaw%3D324.6478%26pitch%3D0%26thumbfov%3D100!7i13312!8i6656

Remember that we saw in "America And The Modern World Explained By Way Of Paris" how the Philadelphia Central Library on Logan Square is a replica of the building on Place Concorde, Hotel Crillon, where Ben Franklin first got diplomatic recognition for the new United States from a foreign country.

https://en.wikipedia.org/wiki/Parkway_Central_Library#/media/File:The_Free_Library_of_Philadelphia.jpg

https://en.wikipedia.org/wiki/H%C3%B4tel_de_Crillon#/media/File:DSC_7353-Hotel-Crillon-Pari.jpg

The Art Museum is Philadelphia's version of the Louvre. From the Art Museum you can see along Ben Franklin Parkway, through Logan Square to City Hall. The Franklin Institute is a science museum.

https://www.google.com/maps/@39.9643393,-75.1792341,2a,75y,316.89h,90t/data=!3m7!1e1!3m5!1sVAntUWD7cQ7L2hmpkIhTfg!2e0!6s%2F%2Fgeo0.ggpht.com%2Fcbk%3Fpanoid%3DVAntUWD7cQ7L2hmpkIhTfg%26output%3Dthumbnail%26cb_client%3Dmaps_sv.tactile.gps%26thumb%3D2%26w%3D203%26h%3D100%26yaw%3D324.34454%26pitch%3D0%26thumbfov%3D100!7i13312!8i6656

The U.S. Marines actually began in a tavern in Philadelphia, the Tun Tavern. This is near Independence Hall. The following scenes are of that site and the nearby waterfront.

https://www.google.com/maps/@39.9473403,-75.14257,3a,15y,200.17h,90.8t/data=!3m6!1e1!3m4!1s0wWa1jB8rAcAYAaET237aA!2e0!7i13312!8i6656

This is in central Philadelphia, beginning outside the Reading Terminal Market.

https://www.google.com/maps/@39.9536816,-75.1578846,3a,75y,105.13h,90t/data=!3m5!1e1!3m3!1srrpnUYcPu0k1_kSctieC7w!2e0!6s%2F%2Fgeo3.ggpht.com%2Fcbk%3Fpanoid%3DrrpnUYcPu0k1_kSctieC7w%26output%3Dthumbnail%26cb_client%3Dmaps_sv.tactile.gps%26thumb%3D2%26w%3D203%26h%3D100%26yaw%3D109.431816%26pitch%3D0%26thumbfov%3D100

This is the district known as Brewerytown.

https://www.google.com/maps/@39.9743356,-75.1815464,3a,75y,321.56h,90t/data=!3m7!1e1!3m5!1sBjiR6v710FzGAaP-CHLbxg!2e0!6s%2F%2Fgeo3.ggpht.com%2Fcbk%3Fpanoid%3DBjiR6v710FzGAaP-CHLbxg%26output%3Dthumbnail%26cb_client%3Dmaps_sv.tactile.gps%26thumb%3D2%26w%3D203%26h%3D100%26yaw%3D328.68506%26pitch%3D0%26thumbfov%3D100!7i13312!8i6656

I once had a meal at the Broad Street Diner in South Philadelphia. There are so many of those old-style row houses that Philadelphia is known for.

https://www.google.com/maps/@39.9365716,-75.1670233,3a,75y,112.4h,90t/data=!3m7!1e1!3m5!1szbuP929TvgHxiw_KMMirWw!2e0!6s%2F%2Fgeo2.ggpht.com%2Fcbk%3Fpanoid%3DzbuP929TvgHxiw_KMMirWw%26output%3Dthumbnail%26cb_client%3Dmaps_sv.tactile.gps%26thumb%3D2%26w%3D203%26h%3D100%26yaw%3D118.255974%26pitch%3D0%26thumbfov%3D100!7i13312!8i6656

The Delaware River forms the state boundary between Pennsylvania and New Jersey. In the Philadelphia metropolitan area, but across the river in New Jersey, is the city of Camden. The first thing that Camden brings to mind is Campbell's Soup. It is directly across from downtown Philadelphia. The suspension bridge connecting the two is the Ben Franklin Bridge.

The following views begin on board the U.S.S. New Jersey. Camden used to be world-renowned for shipbuilding. Most of the views are looking across the river at the skyline of Philadelphia.

https://www.google.com/maps/@39.9394484,-75.1330734,3a,75y,106.55h,90t/data=!3m8!1e1!3m6!1sAF1QipOrpJlwRweAGd5_g04d3dQxqDthrUULIkmoWH1v!2e10!3e11!6shttps:%2F%2Flh5.googleusercontent.com%2Fp%2FAF1QipOrpJlwRweAGd5_g04d3dQxqDthrUULIkmoWH1v%3Dw203-h100-k-no-pi-0-ya111.18861-ro-0-fo100!7i8000!8i4000

The following scenes are of Camden.

https://www.google.com/maps/@39.9424313,-75.1168391,3a,75y,148.41h,90t/data=!3m5!1e1!3m3!1sbB_jTTlTlvtUL3ZcHLT_Rw!2e0!6s%2F%2Fgeo1.ggpht.com%2Fcbk%3Fpanoid%3DbB_jTTlTlvtUL3ZcHLT_Rw%26output%3Dthumbnail%26cb_client%3Dmaps_sv.tactile.gps%26thumb%3D2%26w%3D203%26h%3D100%26yaw%3D154.7586%26pitch%3D0%26thumbfov%3D100

Just north of the Philadelphia metropolitan area is Trenton. It is the state capital of New Jersey.

https://www.google.com/maps/@40.2201315,-74.7640516,3a,75y,6.71h,90t/data=!3m7!1e1!3m5!1sHPjCsbl7aUoQgbdX5U6jaw!2e0!6s%2F%2Fgeo0.ggpht.com%2Fcbk%3Fpanoid%3DHPjCsbl7aUoQgbdX5U6jaw%26output%3Dthumbnail%26cb_client%3Dmaps_sv.tactile.gps%26thumb%3D2%26w%3D203%26h%3D100%26yaw%3D5.135036%26pitch%3D0%26thumbfov%3D100!7i13312!8i6656

"MR. PHILADELPHIA"

Ben Franklin, one of the founders of the United States, could be given the title of "Mr. Philadelphia", although he was not born there. He was never president but, with the exception of George Washington, his name is the best-known of the early Americans today. His name is certainly better-known than the presidents who followed Washington, John Adams, James Madison, James Monroe, John Quincy Adams, and even Thomas Jefferson.

I actually think it would have diminished his legacy if he had been president because he would have been defined by what happened during his term as president and it would taken his attention away from the other things that he did.

Ben Franklin only went to school for a few years but he relentlessly educated himself by reading. One of his many interests was electricity. He was the one who named the positive and negative electric charges. I consider that as more important than anything else that he did. My cosmology theory has the entire universe being made of these two electric charges that Ben Franklin defined.

Another thing that he did was to chart the Gulf Stream. It was known before his time but he is the one who charted it. Ships took longer to move westward through the English Channel because they were going against the current.

There was once a U.S. state named Franklin, until it became part of Tennessee.

Just as Moslems have prayers five times a day, Ben Franklin wanted to start similar daily prayers in the United States. But it seems as if his plan was for only once a day.

America Allows The Banning Of Abortion

The U.S. Supreme Court ruling this week overturned the 1973 ruling in favor of abortion. The Religious Right is delighted. A really important posting is " The Great Revolution Of Our Time", January 2017. What has really happened is that the Iranian Revolution has arrived in America.

Thursday, June 23, 2022

History Repeats Itself Again

Did you notice a simple example this week of how history repeats itself? History is so important because we tend to repeat it, often without realizing it.

It was in the news this week that a Russian intelligence agent attempted to gain access to the International Criminal Court (ICC) in the Netherlands, by applying to be an intern.

What do you notice here? This follows exactly the same pattern as Peter the Great, the best-known tsar of the Romanov Dynasty, moving to the Netherlands and getting a job working incognito in a Dutch shipyard, in order to learn ways to best modernize his own country.

Here is a link to the compound posting on this blog, "How History Repeats Itself":

www.markmeeksideas.blogspot.com/2019/11/how-history-repeats-itself.html?m=1

Thursday, June 16, 2022

Inflation Then And Now

Inflation is the highest that it has been in forty years. What I would like to do is compare inflation now to that in the late 1970s and early 1980s.

Inflation, a general increase in prices, can be caused by a number of factors. Whatever the cause the usual way to combat inflation is to raise interest rates, which makes borrowing more expensive. This has the effect of increasing the value of money, relative to that of goods, thus lowering inflation.

While the inflation of today brings back memories of forty years ago, I find that the root cause of the inflation is very different. What is interesting is that, while all of the western countries were wracked with inflation, forty years ago it was lower in America while today it is higher in America, when compared to other western countries.

The inflation of forty years ago was based on wages. Labor unions were powerful and kept pushing for pay raises. The result is that millions of well-paid unionized factory workers were earning more than their labor was really worth, according to the Law of Supply and Demand, and the economy adjusted by way of inflation. It is certainly no coincidence that inflation and the number of people working in manufacturing both peaked in the same year, which was 1979. 

Margaret Thatcher, in Britain, and then Ronald Reagan, in America, both went after powerful labor unions. A turning point for the power of unions in America was Reagan's firing of the striking air traffic controllers, in 1981. 

Both purposely induced nasty recessions because that was the only way to stop inflation. By the mid-1980s inflation had been tamed but Ronald Reagan unfortunately stuck to his rightward economic policies well after the problem had been solved, and that is what caused the market crash of 1987 by hindering consumer spending.

For decades the word "inflation" brought back memories of the late 1970s and early 1980s. Now inflation is back with a vengeance, but it's root causes are different.

Handing out money for pandemic relief is certainly among the causes of today's inflation, as is probably increases in the minimum wage in recent years. But the main cause of the inflation today is the cost of fuel. 

Forty years ago the cost of fuel was still low, but when fuel gets expensive it makes everything else expensive. When you buy an item at the store the price has to include the cost of transporting the raw materials to the factory, and then of transporting the finished product to the store. Forty years ago we had primarily wage-based inflation while today we have primarily fuel-based inflation.

Just as the recession of the early 1980s was artificially induced because it was the only way to stop inflation, we might wonder if at least part of the soaring cost of fuel is also artificial, for the purpose of pushing people to buy electric cars.

We can see that this is fuel-based inflation by the fact that it is generally higher in America than in other western countries, whereas forty years ago it was the reverse. Most other western countries, particularly in Europe, are geographically compact. This greatly lowers the cost of transportation when fuel gets expensive.

Canada and Australia are comparable to America geographically but the population of Canada is very concentrated along it's border with the U.S. making it, in effect, more compact. The population of Australia is heavily concentrated near the east coast, east of the Great Dividing Range, and the cities that aren't, such as Perth and Adelaide, are on the coast so that they are accessible by ship. The cities of America, in contrast, are geographically dispersed and far apart. That is why America leads in this fuel-based inflation. It costs a lot of money to move things from one part of America to another.

Straight Lines And The Shape Of The Universe

There are often discussions as to the "shape" of the space in the universe. An illustration of what the space of the universe might be shaped like revolves around what happens to a spacecraft, or a beam of light, that travels outward into space.

If the light or the spacecraft, moving at a constant velocity, continually gets further and further away, at a constant rate, then the shape of space in the universe is considered to be "flat".

If the light or the spacecraft, moving in a straight line, eventually returns to it's starting point then the shape of space in the universe is referred to as "closed". The question of whether the universe is "flat" or "closed" is related to the question of whether it is finite or infinite. With a flat universe it could be infinite but a closed universe implies that it is finite.

There is also a debate as to whether the universe is "open" or "closed", although this is not the same thing as the shape of space in the universe, it refers to the expansion of the universe. If the matter of the universe will ultimately fall back together by it's mutual gravity, the universe is referred to as "closed", if not then it is "open".

The analogy that is naturally used for the closed universe is the surface of the earth. From any given perspective on the earth's surface it appears to be flat. But if we continue in a straight line for long enough we eventually end up back at our starting point. This means that the earth's surface is closed and finite, even though it has no boundaries.

Although the shape of space appears to us, at first glance, to obviously be flat the argument in favor of a closed universe is that the default gravitational form in the universe, for stars and planets, is a sphere. Since these spheres are within the space of the universe, then shouldn't that space have the same form? 

Einstein's General Theory of Relativity, as opposed to the Special Theory which deals with the speed of light, explains how space is curved by gravity. An object in orbit is defined as actually moving in a straight line but through curved space. The space being curved by the mass of the star or planet around which the orbit is taking place.

The space of the universe does not necessarily have to be either "flat" or "closed", these are just the examples at either end of the scale. The space of the universe might have a negative curvature, as opposed to the positive curvature of a sphere, this would give it a "saddle" shape. There are other ideas that the space of the universe might have some kind of torus shape. This means, like the closed sphere, that the space of the universe is finite yet has no boundaries. 

The mathematical rules of geometry are different for different shapes of space. Ordinary textbook geometry is known as "Euclidean" geometry, for the ancient Greek named Euclid. A presumption of Euclidean Geometry is that the surface is flat. Euclidean Geometry does not apply for surfaces that are not flat, and non-Euclidean geometries have been developed for non-flat surfaces.

As a simple example in Euclidean Geometry the three interior angles of a triangle always add up to 180 degrees. But if we take a curved surface, like the surface of the earth, the rules change. If we consider a triangle of two lines of longitude, from the equator to the north pole, and the stretch of the equator between them, the angles add up to more than 180 degrees. The intersection of each line of longitude with the equator forms two 90 degree right angles, so we already have 180 degrees, plus the angle between the two lines of longitude at the north pole, giving us more than 180 degrees.

The general consensus today is that the shape of space in the universe is "flat". This means, again, that a rocket or beam of light that is sent out into space in a straight line will forever continue getting further and further away from us. But what I wanted to do today is to add my input to it.

What we have to consider, in deciding on the shape of space in the universe, is the actual nature of straight lines. A straight line being defined as the shortest possible distance between two points. A straight line is not as absolute as it may seem.

Straight lines are a matter of dimensions. If we, confined as we are to three-dimensional space, see a straight line it may in fact be curved in higher-dimensional space and we would in no way be aware of it. 

If there could be a two-dimensional sheet of plastic, and a two-dimensional being lived inside the sheet of plastic, it would always perceive itself as moving in a straight line in going from one side of the plastic to the other. No matter how we might bend and twist the sheet of plastic the being could not be aware of it, since that would require the two-dimensional being to be aware of the third dimension.

A straight line can also mean the least energy expenditure between two points, although in space that would usually mean the same thing as the shortest distance between the two. If an electron could think it would always perceive itself as moving in a straight line as it moved through a wire as part of an electric current, no matter how the wire might zig-zag across the floor.

The trouble with our general conclusion that the space of the universe is "flat" is that we rely on light and other electromagnetic radiation, specifically the leftover radiation from the Big Bang, to bring us our information about the universe. But we get our very definition of what a straight line is by the path of light. 

Since we rely on light, and other electromagnetic radiation for information, we will always perceive that radiation as moving in a straight line. While it is true that the light would follow the path of least expenditure of energy, because we know that the universe always seeks the lowest energy state, there may be other possible definitions of what a straight line is.

Just as an example humans are of the scale that we are and this gives us a certain perspective. We define the electromagnetic spectrum as ranging from very short-wavelength gamma rays to longwave radio waves. But couldn't there be, due to our scale perspective, still longer waves that we cannot detect? Isn't it possible that the shorter waves that we depend on for information, particularly visible light, are affected by the longer wavelengths as they move through space? What if the shorter wavelengths "ride" the longer wavelengths, somewhat like a duck paddling across the waves in water so that it also moves up and down as it proceeds along?

That would mean that light actually "zigzags" through space. But since we are dependent on light for information we will always perceive it as moving in a straight line. 

Einstein's General Theory of Relativity showed that gravity bends light. So why shouldn't there be other things that bend light that we haven't yet found? What about magnetism? It has been found that the sun lacks a south magnetic pole. We know that the sun is a second-generation star and this means that it has come back together gravitationally but not magnetically. 

The former south magnetic pole of the star that preceded the sun, until it exploded in a supernova, must exist somewhere else. Since electromagnetic radiation is so-called because it is electric and magnetic in nature, couldn't this affect it from moving in what would otherwise be defined as a straight line?

Now, let's get back to the debate about the shape of space in the universe. Since we are dependent on electromagnetic radiation for information about the universe, and since this means that we will always perceive electromagnetic radiation to be moving in a straight line, this will always make it seem as if the space in the universe is "flat", since that is the only model of space where light moves in straight lines.

Just for something to ponder suppose that the space in the universe is "closed". This means that a beam of light sent out into space will eventually return to us from the opposite direction. Just as if you traveled in a straight line on the earth's surface you would eventually return to your starting point from the opposite direction. 

This means, at least theoretically, that, if we had a powerful enough telescope, we should be able to see our own earth by looking out into space. But that gets complicated too. If the number of different objects made of matter is finite, but yet the universe is infinite, this means that objects made of matter must repeat themselves. This then would mean that there would have to actually be an infinite number of identical earths in identical solar systems, in orbit around identical suns.

The point of all this is that we cannot be so quick to say that the shape of space in the universe is flat.

Vladimir Putin And The Romanovs

Vladimir Putin recently compared himself to Peter the Great. Putin is from St. Petersburg and we saw in the visit, "St. Petersburg And The Romanovs" October 2021, that this was the city that was specially built as the Romanov capital and named for Peter the Great. The Romanovs were ultimately displaced by the Communists but, as we saw in that visit, the Communist flag is gone and the Romanov flag again flies over Russia.

That would make Putin the tsar of Russia. We saw in the posting, "The Theory Of Kings" April 2022, that nations have been ruled by kings for thousands of years and monarchy is not going to just go away. A leader can be a king-in-fact no matter what his actual title and, as we saw in that posting, Putin definitely falls into the "king" category.

Thursday, June 9, 2022

Tribute To Queen Elizabeth

The celebration of the Queen's Platinum Jubilee was outstanding. The Elizabeth Line, of the London Underground, was completed just in time to be named for our Queen as the celebration began.

The Queen wore just the right colour (color) for her surprise appearance on the balcony of Buckingham Palace.

Credit: Screenshot from BBC news video.

Heliocentrism And Modern Physics

"Heliocentrism" means that the earth, and the other planets, revolve around the sun.

Since ancient times people have studied the night sky and made detailed records of the stars, which varied widely in brightness. Five objects were visible that moved among the stars. These came to be known as "planets", for the ancient Greek word for "wanderer".

All kinds of interpretations were given for the movement of the planets against the many immovable stars. These interpretations are collectively known as astrology. The stars are randomly scattered across the night sky but groups of stars that reminded people of things were given names. These patterns of stars are called constellations. Astrology was the interpretation of the planets moving against the backdrop of the constellations.

The most obvious objects in the sky were the sun and moon. Day and night were clearly caused by the presence or absence of the sun. It was observed that days and nights vary in length, relative to each other, but always add up even over the course of a year.

It was known that the daily path of the sun across the sky gradually shifted northward and southward throughout the course of a year. Days were longest, and shadows were shortest, when the sun was highest in the sky. Shafts facing skyward could be constructed so that the sun would shine directly down the shaft on only one day out of the year.

Eclipses were well-known. By making observations over long periods of time the cycles of both lunar and solar eclipses was charted. Some ancient civilizations were able to predict eclipses.

The sun, throughout the course of the year, and the planets did not move at all at random. They followed a predictable path across the sky. This path was called the Ecliptic and the constellations of stars along the ecliptic were known as the Zodiac. All planets had predictable movements, but all of the planets moved through their cycle of movement at different rates.

There was a dense band of mostly-faint stars across the sky. This band of stars became known as the Milky Way. But it wasn't at all in the same plane across the sky as the Ecliptic.

But yet no one knew exactly what the stars were. A predominant theory was that there was some kind of canopy high in the sky, with light beyond it, and the stars were holes in that canopy which let light in from beyond.

The stars were not actually static. Aside from the planets moving against the fixed stars, but at rates which differ from one another, there were unpredictable comets. Sometimes a "new star" would appear which came to be called a "nova", meaning "new". Sometimes it seemed that stars were falling to earth, which were called simply "falling stars". At predictable times of year there would be showers of such " falling stars". But when it was over the same fixed stars would still be there.

The sky was a mystery that was thousands of years old. But there was some clues as to what was really going on, starting on earth. It was easy to measure how high in the sky the sun was simply by pushing a stick into the ground. The longer the shadow it cast the lower the sun was in the sky. On any given day of the year there was a point, on a north-south line, where the sun was highest in the sky. If we went either directly north or directly south of that point the sun got progressively lower in the sky. What that seemed to indicate was that the earth was a sphere.

The next clue was that the moon goes through a cycle of phases, from new moon to full moon and back again, which lasts 29 days. The moon's position in the sky, relative to the sun, varies during this lunar cycle. What we can see is that the further the moon is from the sun in the sky the more of the moon's surface is lit. The full moon is only seen when the moon is diametrically opposite the sun in the sky. If the earth is spherical then this makes it seem like the moon is revolving around the earth, and the sun is further away.

Another clue as to what is really happening with regard to the night sky is that the stars we see from night to night do not remain completely constant. There is a different set of stars for each of the four seasons, which starts over again with the following year.

Finally a scientist named Copernicus introduced the idea that the sun, rather than the earth, was at the center and that the earth revolved around the sun, rather than the earth being at the center as had previously been believed. The moon revolved around the earth, going through it's phase cycle due to the light from the more distant sun. 

The movement of the planets was thus explained as the earth being one of them and all revolving around the sun, but at different rates according to their distance from the sun. Eclipses, both solar and lunar, happened periodically when the earth, moon and, sun all lined up. That doesn't happen every 29 days because the geometric planes of the earth's orbit around the sun, and of the moon's orbit around the earth, are not exactly the same.

The reason that the stars in the sky are different through the course of the year is that the earth is facing different directions in space as it revolves around the sun. But the stars close to the celestial north and south poles, known as "circumpolar", remain the same throughout the year. The planets, as well as the sun and moon, seem to adhere to a path across the sky against the background stars, known as the ecliptic, because the planets revolve around the sun in roughly the same geometric plane.

This was not an entirely new idea, having first arisen in ancient Greece along with the idea that the earth is spherical, rather than flat. The earth's seasons were thus explainable by the earth being tilted on it's axis, by 23 1/2 degrees, as it revolves around the sun.

Later it was found that the sun was just a typical star, which was part of a great structure of stars known as a galaxy. There were more stars in our galaxy than we could possibly count. Our galaxy was determined to be a barred spiral galaxy and the dense band of faint distant stars, that we refer to as the Milky Way, is looking along the plane of our galaxy. Although this galactic plane is not the same thing at all as the ecliptic.

Not only was our sun just a typical star among countless stars in our galaxy, but our vast galaxy was just one among countless galaxies throughout the universe. In fact, it was found that there are actually more galaxies in the universe than there are stars in our galaxy.

Nuclear physics explained why stars shine. Electron repulsion usually keeps adjacent atoms apart, as the electrons of both atoms are negatively-charged. But when a tremendous amount of matter is brought together by it's mutual gravity it is possible to overcome the electron repulsion and force atoms together. The new larger atom has less overall internal energy than the smaller atoms that were crunched together to form it. The excess energy is released as radiation, and that is why stars shine.

As this fusion process in the center of the star continues, with successively-heavier elements being fused together, more energy per time is released. This upsets the equilibrium between the inward pressure of gravity and the outward pressure of the energy released by fusion. This can cause the star to blast off it's outer layers, known as a nova. If that does not restore the equilibrium, by slowing down the fusion process by reducing the inward force of gravity, the entire star can explode from the center in a supernova, although this only happens in the largest stars.

When a large star explodes in a supernova it's component matter, including the heavier elements that were fused in it's core, are scattered across space. Some of the matter may fall back together again, by it's mutual gravity, to form a second-generation star. We know that the sun is such a second-generation star because it already contains heavier elements that are beyond it's current stage in the fusion process, which is fusing four hydrogen atoms into one helium atom and releasing the excess energy as radiation.

The heavier elements from the previous star is what forms most of the mass of the planets. The ordinary fusion process, the S-process for "slow", only goes as far as iron, which is why iron is so abundant in the inner Solar System, and is the most abundant element in the earth by mass. Elements heavier than iron are formed only during the brief time that the supernova is actually taking place, the R-process for "rapid". 

This is why elements that are heavier than iron, such as gold, silver and, uranium, are exponentially less common than elements below iron. Some of these heavy elements that are forced together by the energy released in the supernova are less-than-stable and gradually release particles or radiation while trying to reach a more stable state. These emissions are known as radioactivity. 

Light molecules that are abundant in the Solar System, such as water, methane and, ammonia, were put together by the energy of the one, or more, nova that preceded the supernova. A nova that preceded the supernova of the large star that preceded the sun is why elements in our atmosphere, such as oxygen and hydrogen, are found in diatomic, or molecular, form. When we use hydrogen as fuel we are releasing the energy that was originally released by the nova of the previous star.

So the mysteries of the universe, that were thousands of years old, started to fall into place with the realization that we need to get outside our own perspective. It seemed to us that the earth was flat and that everything in the sky revolved around it. But that view made it impossible to explain the universe, even though detailed measurements were made of it, and it's motions could be predicted. It was only when we found our way outside our own perspective that the universe started to fall into place for us.

Today we understand the structure of the universe but we have found more that cannot be explained. Just like back in ancient times we have science that we can predict, and take careful measurements of, but yet cannot explain.

There are the newer sciences of Relativity and Quantum Physics. Both have tenets that cannot be explained by ordinary physics, but yet can be demonstrated and proven beyond a doubt by experiments. Not only are both Relativity and Quantum Physics incompatible with ordinary science, in addition the two contradict each other. But yet the tenets of both can be clearly demonstrated by experiments.

There are two separate theories of Relativity, both by Albert Einstein. The Special Theory of Relativity, from 1905, describes how the speed of light is absolutely unchanging, and other things are variable if we travel at velocities approaching the speed of light. The General Theory of Relativity, from 1915, describes how gravity curves space. An object in orbit actually is moving in a straight line, but through curved space.

In the Special Theory of Relativity, which has been abundantly proven to be correct, the speed of light is always constant. As an object nears the speed of light it requires an ever-increasing amount of energy to accelerate it to greater velocities. At the speed of light it would require an infinite amount of energy to accelerate the object to greater velocities which is, of course, impossible. It would show up as the object's mass increasing until reaching infinity at the speed of light. This means that nothing can ever move faster than the speed of light.

Not only does the mass of an object approach infinity as it approaches the speed of light, time slows down until it stops altogether at the speed of light. The length of the object shortens, until it reaches zero at the speed of light. None of this can be explained by conventional physics but yet has been abundantly proven to be correct.

Many have tried, with little success, to unite Relativity and Quantum Physics. The great dividing line between the two is the speed of light. In Quantum Physics, the speed of light is not even a factor at all. Information moves between two entangled photons instantaneously, no matter how far apart they are, with no speed of light limitation.

Furthermore, in Quantum Physics even the act of observing or measuring something affects it's outcome. In the famous double-slit experiment, if we do not observe light passing through two parallel slits we can see by the diffraction pattern that photons of light passed through both slits. But if we do observe it, the absence of a diffraction pattern shows that photons passed through only one of the two slits. This is completely alien to both classical physics and Relativity.

My cosmological theory actually has a simple explanation. A basic presumption of science is that we have an unbiased view of the universe, we can completely rely on our measurements and observations. One of the most important points of my theory is that we do not have an unbiased view of the universe, we see the universe as we do not only because of what it is but also because of what we are.

There are two possible universes that we might see:

A) The universe with us.

B) The universe without us.

We know that the earth is not flat and that the astronomical bodies do not revolve around the earth. But then why do we see it that way if we know otherwise?

The answer is that to see the earth as spherical and revolving around the sun, we have to get ourselves out of the picture. If we see with our own eyes, with ourselves in the picture, we will see the earth as flat with the astronomical bodies revolving around it.

The flat earth with all of the astronomical bodies revolving around it is the universe with us.

The spherical earth revolving around the sun is the universe without us.

Now, let's move on to the development of Relativity and Quantum Physics. The two are not compatible with classical physics, or with each other. But considering the above example of the apparent flat earth and earth-centered universe, wouldn't it be logical that this is another case of "The universe with us" against "The universe without us"?

We know that the classical physics of the spherical earth revolving around the sun, and not vice-versa, represents "The universe without us" that displaced the flat earth with everything apparently revolving around us of "The universe with us". Given that, wouldn't it seem that the first place to look at why Relativity and Quantum Physics have such a contradiction with classical physics is that maybe those two represent "The universe with us"?

For another thing, none of these three branches is able to explain that time actually is. Relativity explains how time is affected as an object moves at speeds approaching the speed of light, but still doesn't tell us exactly what time is. Classical physics and Quantum Physics don't have much at all to say about what time is.

What about my cosmology theory? Have you ever thought that maybe what we perceive as particles of matter, such as electrons, are really strings in four-dimensional space and our consciousnesses are moving along the bundles of strings comprising our bodies and brains at what we perceive as the speed of light? That is why the speed of light is so absolutely constant and everything seems to revolve around it and no one can explain what time is in terms of physics.

Relativity is "The universe with us", which is why it cannot be explained by the classical physics of "The universe without us". Time is something that is within us, which is why it has never been explained by classical physics. That is why I named my cosmology theory "The Theory Of Stationary Space", because everything is really still and it is only our movements and the movement of our consciousness that is the only "new" motion in the universe.

Electrons are one-dimensional strings in space. Light is two-dimensional waves in the multi-dimensional background matrix of alternating negative and positive electric charges that comprise empty space. The only way that we can see, or measure or receive light in any way, is to have it interact with matter. 

When light interacts with matter it must absorb some of the energy in the light. Electrons are in orbitals around atoms so light interacting with matter usually means with an electron. But since light is a two-dimensional wave while electrons are only one-dimensional strings, that means that matter can absorb only one of light's two-dimensions.

Quantum physicists describe light as having both a wave and a particle nature, which seems contradictory and alien to classical physics. But since matter interaction, including seeing, involves contact with one-dimensional electrons, that means that one dimension of the light must be left over. Since my cosmology theory has what we see as particles as really one-dimensional strings, that explains the particle nature of light and the particles that we see as photons.

A photon is light where one of the two dimensions has been absorbed by interaction with matter. That explains the mysterious double-slit experiment. The only way that we can observe or measure light is to have it interact with matter, and this means absorbing one of it's two dimensions.

The speed of light is not a factor in Quantum Physics because time is really within us, the movement of our consciousness along the bundles of strings comprising our bodies and brains, and while that is a factor when we are moving, it is not a factor when we are seeing. Quantum physics is also "The universe with us", which is why it can never be explained by the classical physics of "The universe without us".

Relativity and Quantum Physics both, unlike classical physics, involve our perspective.

The Special Theory of Relativity is the effects that we observe revolving around the fact that our consciousness is moving along the bundles of strings that compose our bodies and brains at what we perceive as the speed of light. Matter is really strings in four-dimensional space but we perceive them as particles, such as electrons, in three-dimensional space because we perceive the fourth dimension of space as time.

Quantum Physics is the effects that we observe revolving around the fact that light, or any electromagnetic radiation, consists of two-dimensional waves, while the electrons in orbitals around the atoms in our eyes and measuring devices are one-dimensional strings. When light interacts with matter an electron absorbs energy from the light. But it can absorb only one of the two dimensions and this leaves the one-dimensional "particles" of light that we refer to and perceive as photons. This explains the wave-particle duality of light.

What we perceive as particles are really one-dimensional strings because we perceive one of the four dimensions of space as time. This is why information can move instantaneously between two entangled photons, without being bound at all by the speed of light.

I see my cosmology theory not as another branch, but as the way to link these three branches together.

This concept of two views of the universe, one with us and one without us, means that we have to be more careful about deciding that one scientific theory is correct, while another is incorrect. it might be that one is describing the universe with us while the other is the universe without us.

If humans once could make intricate measurements of what they saw in the sky but simply couldn't explain it, at least until they found their way outside their own perspective, then what should be unusual about finding ourselves in that situation again as science advances?

We can make intricate measurements in the new sciences of Relativity and Quantum Physics, but we simply cannot explain them. Doesn't it make sense that we need to get outside our perspective again? We will never explain these new sciences with ordinary physics because what we are seeing is our own nature reflected back at us.

Relativity and Quantum Physics is like a prehistoric person seeing a strange form in water. It is impossible to explain the form but yet there it is. Until one day the person realizes that the form is his own reflection.

This is a link to the posting that I use to introduce my cosmology theory:

Thursday, June 2, 2022

Commentary On Mass Shootings

Here is a commentary on two mass shootings, one recently and the other fifty years ago.

THE UNTOLD STORY OF THE UVALDE SCHOOL SHOOTING

There is something about the recent horrible school shooting in Uvalde, Texas that the media doesn't seem to have caught. It is about how history repeats itself. Crimes like this are an area where history is especially repetitive.

The modern era of senseless mass shootings is generally considered to have begun with the shooting from the tower of the University of Texas, in 1966. Charles Whitman, who looks like the last person who would do something like this, first killed his wife and his mother. Then he climbed to the top of the tower, barricaded himself, and then began shooting at people below. The siege lasted about 90 minutes until the shooter was shot and killed.

The Uvalde School Shooting was a virtual reenactment of the University of Texas shooting, except that it was done in an elementary school and there was no tower. But both shootings took place in a school.

Charles Whitman first killed his wife and mother and then proceeded to the shooting site. The Uvalde school shooter first shot his grandmother and then proceeded to the shooting site.

Both shooters barricaded themselves in the school, Charles Whitman barricaded the entrance to the tower and the Uvalde school shooter barricaded himself in a classroom and in a closet in the classroom.

The layout of both shootings is similar, law enforcement eventually getting through the barricade and killing the shooter. In the case of the Uvalde shooting it was getting the classroom door unlocked. Both shooting scenarios lasted roughly the same amount of time, about 90 minutes.

Another interesting fact about reenactments is that just before the Uvalde School Shooting was the Alabama Prison Escape, of a female deputy with a male prisoner. The two were eventually caught, in Indiana, when police and Marshals managed to force their car into a ditch. When the Uvalde school shooter drove to the site of the shooting he also drove his vehicle into a ditch. The two ditches were very similar, except that the one in Texas was lined with concrete.

THE LOD AIRPORT MASSACRE OF 1972

We have just passed the fiftieth anniversary at what was then-called Lod Airport, at Tel Aviv in Israel. The shooting massacre was planned by the PFLP, the Popular Front for the Liberation of Palestine. The attack was actually carried out by three members of the Japanese Red Army, who carried their weapons in musical instrument cases.

The airport, now named for Israel's founding father and first prime minister, David Ben Gurion, is the busiest airport in Israel. Five years before Israel had captured the Old City of Jerusalem, in the 1967 Six-Day War, and pilgrims were arriving from all over the world to visit the holy sites.

Israel's security forces were naturally watching for Arabs who might launch an attack. The use of Japanese attackers not only caught the Israelis off guard but also meant that, from that point on, they had to greatly increase security measures to check every visitor, from all countries. This was done to provoke a more hostile atmosphere for pilgrims, and dissuade people from visiting.

Most of the victims of the attack were not Israelis but foreign visitors, including seventeen pilgrims from Puerto Rico. This was also done purposely, to scare people away from visiting Israel.

Why did the attack happen when it did, in May 1972? The Olympics were soon to be held, in Munich, and another organization, Black September, was going to attack there. The two attacks go together, although I am not sure how much coordination there might have been between the two groups.

Israeli athletes were massacred at the Munich Olympics. The message was clear, and it complemented the message of the airport attack. Any country that was hosting Israelis, such as an Olympic team, was making itself a target.

We can see the same kind of objective in the attacks of 9/11. The hijackers were from countries that were traditionally considered as allies of America. Fifteen of the nineteen were Saudis. The other four were from the United Arab Emirates, Egypt and, Lebanon, and investigators had no great difficulty determining their identities.

This was done purposely, the objective being to turn Americans against their allies in the Middle East. It would also produce a backlash against those Moslems who would go to live in the west. It would help to shut globalization down, by making people afraid to fly, and might get America to throw it's democratic principles away. Most importantly, it would serve as a great recruiting tool to bring about further attacks in pursuit of the same purpose.


For those who read, "The Real Story Of The Alabama Prison Escape" May 2022, more has been added to it.

Stopping Mass Shootings

Of course, taking guns away is the way to stop mass shootings, but we know that isn't going to be happening anytime soon.

There is a cultural way to greatly reduce mass shootings. I noticed something interesting about mass shootings in my native Britain. There have been four mass shootings in recent decades, far less than in the U.S. but still four too many.

There has been a mass shooting in Britain about every twelve years, on average, beginning in 1987. There was Hungerford in 1987, Dunblaine in 1996, Cumbria in 2010 and, Plymouth in 2021.

One thing that virtually all young mass shooters have in common is that they are what is considered as a loser. That is what the problem is, the overriding pressure to be a winner. When someone finds themselves in the "loser" category there is one quick way out, to really make the world take notice of you, even if it means the loss of one's own life or freedom. Unfortunately that way is to commit a mass shooting. It is really about being a loser even if the shooting is done in the guise of some prejudice, cause or, ideology.

What I notice is that there was an era of "loser" songs in Britain's rock music era, which I have previously written about here. This era was the 1970s and early 1980s. Even the Beatles sang about being losers. What is so interesting is that the era of mass shootings began, in 1987, after the era of "loser" songs had ended.

Maybe that wasn't a coincidence. If we could be a little bit more welcoming to losers, maybe they wouldn't pick up guns.

Three months after I posted "Remembering Britain's Loser Songs", in May 2021, the Plymouth shooting took place. I really think that this would be a good time to review that posting.

REMEMBERING BRITAIN'S LOSER SONGS

During my youth, in the rock music era, British bands produced a number of what could be called "loser" songs. These were songs about generally being a loser, but with life in general and usually not having to do with romance.

Now I see the wisdom of these songs. There are a few examples that come to mind.

"Telephone Line", from 1977 by Electric Light Orchestra, is like the national anthem of loneliness and depression. It does involve romance but I classify it as a "loser" song because the singer is trying to telephone a girl and sinks deep into a gloomy mood. "I'm living in twilight", "I'll just sit tight with the shadows of the night", all because some girl isn't answering the phone.

There was "Superman" by the Kinks. This song involved the times, it was from the time of Britain's notorious strike-inflation spiral of late 1978. The winter of 1978-79 became known as Britain's "Winter of Discontent". The song is about a physically weak guy who wishes that he could be like Superman, "I want to fly but I can't even swim".

Another song was "I Wish I Could Be Like David Watts". It was about a less-than-stellar boy who wants to be like the star boy at school, whose name was David Watts. The Kinks did this song but, visiting Britain in the summer of 1978, I became familiar with the version by The Jam.

There is the song by The Kinks, "State of Confusion". This song seems to be about someone who is generally unable to cope with life. This makes it different from the earlier "Gimme Shelter", by the Rolling Stones, which is not a "loser" song because it is about the disintegration of society.

Gloomiest of all is the New Wave song "Are Friends Electric"? by Gary Numan. It is a futuristic song, supposedly taking place in future London. A guy's girlfriend is an electric robot but now she is broken. So he calls another robot girl to come over. I used to be fascinated by how the instrumentals convey a stark feeling of gloom.

But now I see what might be the point of songs like this. This life will be over before we know it. When the "winners" die they will be just as dead as the "losers".

Shouldn't we be more concerned with what comes after? Would you rather drift through life, but then go to Heaven for eternity, or be a real winner with everything that life has to offer, but then not go to Heaven?

Are we making too big of a deal about being "winners"? What difference will it make a hundred years from now? With very few exceptions you will be completely gone and forgotten a century from now. Of all the people who were alive in the 1920s how many can you name today?

Have you ever went to a job interview and were given a test to take while in the waiting room? Isn't this life really just taking a test in the waiting room? What really counts is what comes next. Maybe there is such a thing as taking this brief life too seriously.

What about the Apocalypse foretold in the Bible? We do not know exactly when it is going to happen and we are not to stop living because it is pending. But remember that this is like living on the Titanic. It would be wonderful to be a winner on the Titanic, but the ship is still going to sink anyway.

The values of the world define who is a winner and who is a loser. But if the world's values are in the right place then why is it heading toward the Apocalypse? Remember that Jesus said "The last will be first and the first will be last". This means that the world's values are upside-down and could be interpreted to mean that winners will be losers, and vice versa. When you face God all of your worldly status, which country you were part of, how popular and attractive you were, and how much money you had, will all mean absolutely nothing.

A part of being a "loser" is certainly willful. Whenever a society puts a lot of pressure on young people there is a rebellion against it. In China today there is the "Sang", or "Slacker" movement. In Japan there has long been the "Hikikomori". In the U.S. during the 1960s the catchphrase was "Turn On, Tune In, Drop Out".

Maybe it's healthier not to take life too seriously, and certainly some of society's values don't make sense. Where I live having a lot of friends is highly valued. Being surrounded by people is wonderful while being alone is terrible, which I consider as bizarre. It's more about control and "keeping an eye" on each other than about friendship. 

The "loser" songs are really a compliment to my native Britain. Only in a wealthy country that was confident of it's place in the world would people support music about their own people being losers. 

The "loser" songs, as well as the "state of the world" songs, are a reflection of the traditional Protestant dim view of both the world and human nature. But when we have too much respect for the way things have always been done we are less likely to notice better ways of doing things and when we see the world around us as having room for improvement it helps us to notice better ways of doing things, which is why traditionally Protestant societies have been so progressive.

With so many mass shootings today have you ever thought that if we would make losers feel a little bit more welcome they might be less likely to pick up a gun? There are movies about losers, but which usually have them committing violence. Songs like this make being a loser, at least as defined by the world, seem not so bad.

Besides music why don't we have one day a year to recognize and appreciate losers? Then they might be less likely to look for recognition by picking up a gun.

War In Ukraine

It was in Newsweek this week that Russian state television described the war in Ukraine as a "rehearsal", of the latest weapons, for World War Three.

This is what we saw recently in, "The War That We Really Should Understand" March 2022. This posting is about how the Spanish Civil War, which just preceded the Second World War, provided both sides with combat experience, and a chance to try out the latest weapons and tactics, before the great conflict that followed.


Thursday, May 26, 2022

Mind-Bending Cosmology

I periodically collect postings of similar subject matter together into a compound posting. This collection is about the mind-bending cosmology of how we fit into the universe. The reason that it is mind-bending is that we are dealing with our own nature.

TABLE OF CONTENTS

1) HOW REAL ARE WE?

2) WHY THINGS GO WRONG

3) OUTER MATHEMATICS

4) MEET THE UNIVERSE

5) OTHER EXAMPLES OF MIND-BENDING COSMOLOGY

  5a) IS THE UNIVERSE ROTATING?

  5b) THE MYSTERY OF STRAIGHT LINES

  5c) MORE THAN TWO ELECTRIC CHARGES

  5d) DO WE REALLY HAVE FREE WILL?

  5e) THE REASON FOR POLITICS

  5f) THE ILLUSION OF DISTANCE


1) HOW REAL ARE WE?

We exist, or you wouldn't be reading this, but have you ever wondered what level of reality we really exist at? Just how "real" are we?

Remember one of the principles of my cosmology theory, that we see the universe as we do not only because of what it is but also because of what we are. An example of this is color, we see different colors because it is how our eyes and brains process different wavelengths of light but, other than this, color does not exist. 

Another example is time, in my cosmology theory time exists only within us. Our consciousnesses move along the bundles of strings which compose our bodies and brains in the fourth dimension of the space over which the matter from the Big Bang is scattered. This is why we can move in three dimensions of space but perceive the other as time.

We are information that can process other information. We are able to "represent" information, by use of language and imagery, while inanimate matter can't. Everything can be described in terms of numbers, which is information, but with inanimate matter the only information is the matter itself.

We represent the reality around us first, by creating a model of that reality in our minds. We are able to further model or represent reality by such methods as language, drawing and, writing. More recently, we have gained the ability to represent or create a model of reality with photography and then electronic communications, and then computer technology. Another way that we create a model of the reality around us is money It represents thinks that we value, although it has little or no intrinsic value in itself.

Of course the universe seems real to us because it is made of the same information that we are, the only difference being that we are able to create models of reality for ourselves, which contain much less energy than the usual equivalence of information and energy, but just how real is it?

Modeling or representing the information in the universe means that we can transform the information into a form, such as language or photographs, with much less actual energy relative to the information contained, that is easy for us to deal with. 

In the universe of inanimate matter, the amount of information or energy is fixed. But we can model or represent it by storing the information as much less energy than it would take with inanimate matter. We can describe an object, by such modeling as language or mathematics, without all of the energy that is within it as per the mass-energy equivalence.

A painting, for example, can be a model of reality but is actually two steps away from the reality around us. First is the reality itself, then the model of that reality in our minds, then the expression of that reality in the painting.

But suppose that one part of the painting could interact with another part. How would the part of the painting that could interact with the other part, by way of processing information, see the part of the painting that it was interacting with? It would have to see the part of the painting that it was interacting with as "real" because the part that was being interacted with would be made of the same level of information as the part that was interacting with it.

Beings that could interact with other information would always see the information that it was interacting with as "real" because, to have such an interaction, the two would have to be on the same energy level. A being that could interact with the information around it would have to be able to access at least one other level of reality, the representations and models of reality as described above, because it would have to hold some "model" of reality, such as we do with our minds, in order to be able to interact with it.

But if there were higher levels of reality, above ours, we could not interact with those as we do with the information that is at our own level. We are information, like the universe around us, and, if seen from some higher level of reality, would seem like some kind of equation. We express the operation of the universe around us with mathematics, and a drawing is actually a mathematical model of something that uses distance instead of numbers in expression.

Since everything around us, and including us, can be seen to be ultimately numbers, that means that our level of reality is just an equation. We have to see distance because distance is numerical information. We cannot see distance solely as numerical information because we are at the same level of information so, we have to see it as distance. We could only see the reality of the universe around us as an equation if we were "looking down" at it from a higher level of information, which we are not.

So this is what happens when an interaction takes place between two entities at the same informational level. What is actually numerical information seems like distance. We are at the same informational level as the universe around us, and that is why we perceive distance. 

The only "lower" levels that we can interact with are the representative models that we create, such as language and writing and drawing. This is how we can express something without distance, with writing or mathematics, but only at those lower representative levels. At our usual level of informational reality, we can only see numerical information as distance.

If you are walking or driving to a destination up ahead, the distance to it is really only information. You see it as distance because you have to expend energy to get there. But we have seen that energy is the same thing as information also. All is information but we have to see the information that is at the same level as the information that we are, which means which we have not represented by numbers or other means, as energy or distance.

If you come up to a wall, and can go no further the wall is real to you, rather than merely a mathematical equation, only because it is made of the same level of information that you are.

The entire universe, both space and matter, are composed of negative and positive electric charges. If I were to define the universe in one sentence, I would say "The universe is negative and positive electric charges, opposite charges attract and like charges repel, and everything else is mere details". But these electric charges are just bits of information, and everything is composed of this information.

One of the realizations that I have had is that energy and information is really the same thing. We cannot add information to anything without applying energy to it, and we cannot apply energy to anything without adding information to it. Therefore, the two must be the same thing.

Through technology, we can make our lives physically easier, but only at the expense of making them more complex. We can never, on a large scale, make our lives both physically easier and also less complex. Since complexity is the amount of information, this shows that energy and information is really the same thing, because one can be transformed into the other.

But if energy and information is really the same thing, then why do we see them as separate? It must tell us something about our perspective on the universe to answer that question. We can create representative models of the universe around us, first in our minds and then through language, writing and drawing, and then through electronic communications and computer technology.

When we model the universe, we see that as information. When we deal more directly with the universe, we see that as energy. It is due to our perspective within the universe, as part of it, that we see energy and information as different when they are really the same thing. When information deals with information that is a model of reality, it will see it as information but when it deals directly with the reality, it will see it as energy.

Information cannot see other information at it's same level as information, it has to see it as energy. But energy cannot just exist as itself, it has to overcome something. What energy overcomes is distance. But since energy is really information, actually just numbers since everything ultimately comes down to numbers, then distance must be just numbers also.

Information can always be expressed as mathematics, and this means that energy and the distance that it overcomes must be just information also. We see the universe as vast distances between galaxies but what it really is, at a higher level, is a mathematical equation. We are part of the equation and so we have to see energy and distance, because we cannot see the equation from outside.

If you see a mathematical equation, as simple as A = B, you see it as information. But if you could actually "step into" the equation, so that the information that you are was on the same level as the information in the equation, it would seem like one side of the equation was energy and the other side was distance. The entire universe is really information but we, because of our perspective as part of the universe, see it as either energy or distance.

We can see an example of energy and distance in opposition to one another, but yet interchangeable, in how a higher orbit contains more energy than a lower orbit. If a spacecraft is in orbit and we give it three times the orbital energy, it will move to a distance in which it orbits at nine times the previous distance but, due to the Inverse Square Law, at only one-third the speed.

Energy, or information which is the same thing, increases the distance over which the negative and positive charges which comprise the universe must balance out. The number one rule of the universe is that negative and positive electric charges must always be exactly equal. But energy, or information, added increases the distance over which the charges must balance out.

The lowest possible energy or information state is empty space, which is alternating negative and positive electric charges like a checkerboard but in multiple dimensions. Any breaking of this pattern, which will bring about a concentration of like charges, will create matter. An atom is the "zero-state" of matter, as the electric charges balance out to zero. The charges still have to exactly balance out, as they do in empty space, but the distance over which they have to balance out is increased.

This shows that, since energy and information is the same thing, distance and information must be the same thing and since energy can move things to overcome distance, distance and energy must also be different forms of the same thing.

We can clearly see that distance is the same thing as energy, which is the same thing as information, by the fact that we can use a lever, which is a simple machine, to exchange distance for force, which is energy. If the two can be exchanged then they must be different forms of the same thing. The reason that they are different forms of the same thing is due to our perspective. We observe and interact with the universe, but we are really made of the same information that it is, that is why we see information, energy and, distance as being separate, when all is really information.

2) WHY THINGS GO WRONG

Why do things have to go wrong? Why can't everything just go right? There is actually a reason and it is based on my information theory, detailed in the compound posting on this blog "The Theory Of Complexity".

Humans are at a higher level of complexity than the surrounding inanimate universe. Think of a cliff with a higher and a lower level.

When we make use of our inanimate surroundings, collectively known as technology, we are imposing our higher complexity on it. The way I see it, all technology is equal in complexity to our higher level. But all technology has an internal and an external component.

A cup, for example, seems simple. But to really understand a cup it would be necessary to understand why humans would need it. It would be necessary to understand our digestive system and why we need to drink fluids. It would also be necessary to understand that we have fingers and an opposable thumb that can hold the cup.

This means that, while the cup's internal complexity is low, it's very high external complexity brings it up to the complexity level of the humans that made it.

With technology that is more complex than a cup, such as a car, more of it's complexity is internal, but the total complexity also adds up to the same level as humans. When an example of technology has more internal complexity, it is less necessary to understand all about what humans are to understand the technology.

Our higher level of complexity is why we have to have free will. Having free will would not be necessary or make sense if we were no more complex than our inanimate surroundings. But free will also means that we can be wrong about things, because there is not enough information in our inanimate surroundings for everything that we can conceive of to exist.

In my complexity theory, plants are far more intricate than the inanimate surroundings, meaning higher complexity or more information per mass, but contain no more overall information than our inanimate surroundings. That is why we require plants for food, but no one plant can provide all of the nutrients that we need.

This explains why we cannot reuse energy. Even though a fundamental law of physics is that energy can never be created or destroyed, but only changed in form, technology cannot reuse energy. Once it is used it is lost, because our technology must necessarily be at the same level of information that we are, which is higher than our inanimate surroundings.

But this also shows why technology has a proclivity to break down. The lower level of complexity of the universe around us is always "trying" to pull our technology back down to the lower level. The technology, being as complex as we are, is always thus prone to breaking and malfunctioning.

When we impose our higher level of complexity on our surroundings to create technology, it introduces another issue. We can never be sure that we are grasping all of the aspects of the technology because to do so, we would have to be "smarter than ourselves", which is impossible.

Like our technology, our economy is as complex as we are. That makes it very difficult, if not impossible, for any of us to fully grasp the economy. It is much easier for each of us to just see the right or left. To see the entire economic picture we would have to be "smarter than ourselves".

So these are the two reasons that things have to go wrong, both explained by my information theory, we impose our higher level of complexity on our surrounding environment to create technology, and it's lower level of complexity is always "trying" to pull our technology back down. Also, to fully grasp all of the facets of our technology, and the economy that it brings into being, we would have to be "smarter than ourselves", which is impossible.

3) OUTER MATHEMATICS

We use mathematics to describe the universe around us. But we are of a certain finite complexity. We can only grasp, and describe with mathematics, things that are less complex than we are.

In order to describe ourselves, or something of the same complexity as ourselves, we would have to be "smarter than ourselves", which is impossible. We could describe it with words, which do not require a complete understanding, but not with numbers, which do require a complete understanding.

Any finite set of information can be expressed in a formula. What this means is that, somewhere out there, there is a formula that describes everything that you do and everything that you will do in your whole life. But you can never see it because, to grasp it, you would have to be "smarter than yourself", which is impossible. Your formula would naturally be as complex as you are and you can only grasp things that are less complex than you are.

The unseen formula that describes you is an example of what I refer to as "outer mathematics". Everything is really mathematics but we are only able to grasp that which is less complex than we are, which is what I refer to as "inner mathematics".

All "textbook" mathematics is "inner mathematics", it must be or we wouldn't be able to grasp it. If someone learns all mathematics they may think that is the end of it. But it isn't, it is only the end of what we are able to grasp.

There is outer mathematics that describes everything in the universe, as well as the whole universe, that we are unable to grasp because it is beyond our complexity level. This includes the formula of everything that you will do in your life, as well as the formula of the operation of your body. We perceive ourselves as having free will because we cannot grasp this formula because it is more complex than we are.

Everything is really numbers, including all that we express in words. Computers and phones understand numbers but not words. It would be making great progress if we could break words down into numbers. Then phones and computers would actually understand the words that are inputted into them. The trouble is, of course, that our language is as complex as we are and we would have to be "smarter than ourselves" to express it as numbers, rather than words. This makes it very difficult, although not impossible.

Since everything about us can be described by a formula, we are information ourselves. We see ourselves and our surroundings as being "real" because it is made of information just as we are. 

Aside from this set of "outer mathematics" there must be a still more distant set of outer mathematics. As stated we use mathematics because it effectively describes the world around us. But what if that world, actually the entire universe, had been different? 

The matter that all except particle physicists deal with is made of atoms. We could say that atoms are "exclusive" so the mathematics that works for us uses numbers and has the basic operations; addition, subtraction, multiplication, division, exponents, roots, etc. What I mean by "exclusive" is that atoms, and the matter that is composed of them, does not come into existence spontaneously and stays as it is until something changes it.

The numbers that we use have no real existence until they are manifested in some way. There is no such thing as the number six that we can see but we see it whenever we have six of something. But any number must exist whether it is manifested by anything or not. Consider the number 37,683,992,651,801,384,161,079,177,209,184. Let's refer to this number as "W". It may be that nowhere in the universe is this number manifested anywhere, but it is still just as much a number nonetheless because it could potentially be manifested. Just as a parking space still exists whether or not there is a car in it.

The mathematics that we use, both inner and outer mathematics, works for us because the matter that we deal with is as it is, matter could be said to be "exclusive". But what if matter, or the entire universe, was completely different?

There would still be mathematics that described it although it would be completely different from the mathematics that we are using. If matter, or whatever that universe was made of, was non-exclusive then there would be no reason for the addition, subtraction and, so on that we use. If that universe was somehow immeasurable or unquantifiable mathematics might express the effect that it has on the living beings rather than what it is actually made of.

Mathematics is inevitably related to scarcity, of not having everything that we need or want and of having to labor to get what we don't have or build what doesn't yet exist or get to somewhere other than where we are. Have you ever noticed that there is no mention of mathematics in Heaven? In Heaven we will have everything we want so why would we have any need to count or calculate?

The universe of atoms, electric charges and, electromagnetic radiation that we have is just one of an infinite number of possibilities that the universe could have been. It is like rolling dice. The numbers that came up are our universe. The numbers that didn't come up are all of the universes that never physically existed, but yet these numbers still exist.

But the mathematics, completely different from our own, that would have described them must nonetheless still exist. Just as we saw with the number "W" above, a number still exists whether it is manifested or not and the mathematics, which we cannot begin to imagine, of every different universe that never actually existed must also still exist.

This is what I refer to as "far outer mathematics". It is the mathematics of would-have-been universes and physical realms that do not even use the same basic operations as the mathematics that we use. What we could call "near outer mathematics" is, as explained above, mathematics that would use the same basic operations but is beyond our reach because we could not completely understand something whose complexity is greater than our own.

4) MEET THE UNIVERSE

 I have an idea to explain how the universe operates. Suppose that the universe could be transformed into a human being. What would the universe be like?

Have you ever known anyone who has difficulty making decisions? Do you sometimes have difficulty making decisions? You would actually have a lot in common with the universe.

If there is one thing that the universe cannot stand, that it will do anything to avoid, it is making a decision.

People used to believe that the earth was flat. Indeed a flat earth would require less information than a sphere, so that would seem to make sense.

But the earth is in space. This means that, if the earth was flat, it would have to be aligned in one particular geometric plane in space, to the exclusion of all other possible planes. But then that would involve deciding which plane the earth would be aligned in, and if there is anything the universe cannot stand it is making a decision.

So the universe simply doesn't decide on one plane. It chooses all possible planes. A sphere actually is flat, but it is flat in all possible geometric planes rather than just one. Each point on the surface of a sphere can be considered as a flat surface aligned in one plane.

Just imagine the universe going shopping. Since it would be unable to decide what it wanted in the store, it would just buy everything in the store to avoid having to decide. Even if there was a particular product that the universe wanted from a display, such as a can of drink and there were multiple cans, the universe would have to take all of the cans to avoid choosing one.

Now that the earth is a sphere, the universe is faced with another decision. How will the sphere be aligned in space? So that, for example, the sun will be at the 7 AM position in Toronto.

But the universe simply cannot decide. So what it does is makes all possible choices about how the earth will be aligned. The earth cannot be at all possible choices at once, so it goes through all of the choices. This is why the earth rotates.

If you ever meet the universe, after it has been transformed into a human being, be sure to never take it out for dinner. The universe would be unable to choose what it wanted from the menu, so it would just order everything on the menu. It certainly wouldn't be able to choose one restaurant over another, so it would have to be taken to all restaurants.

But when the earth, and other planets and stars, rotate, there actually is decisions that have to be made. For a sphere to rotate, it must rotate around an axis. For that to happen a decision must be made as to which direction in space the axis will be aligned. Also, it must be decided in which direction the rotation will be.

So we have gotten the universe to make decisions. It is actually energy that forces the universe into making decisions. But so resistant is the universe to making decisions that, even when it does make a decision, it counteracts it's choice by also making the opposite decision.

The way that our Solar System came together, by some of the matter of the star that preceded the sun coming back together by gravity to form the sun and planets, meant that one orbital plane, out of all possible geometric planes in space, would have to become predominant. This would be the primary factor in determining the rotational axes of each planet but would be, once again, a choice. Another choice would have to be in which direction the planets would revolve around the sun.

If our Solar System was all that there was to the universe then it would have been forced to make these choices. But the universe just cannot stand to make choices and it has found a way around this by making all possible choices.

The universe is so large, and has so many solar systems, that it is able to negate the choices that it has to make for each solar system by spreading all possible choices, of orbital plane, rotational axes and rotational direction, over all of it's solar systems.

This also applies to something like the rotational planes of spiral galaxies.

It is kind of like, when the universe went shopping, it simply bought everything in the store to avoid having to make any decisions. This means that all of the orbital planes of planets in solar systems in the universe must ultimately balance out equally in all directions.

To have it any other way would involve the universe having to make a decision, and we can see that the universe does whatever it can to avoid making decisions. So, even if we cannot see the far reaches of the universe we can be sure that all orbital planes and directions of rotation must ultimately balance out.

Every gravitational sphere, stars and planets and moons, that we can see are all different from one another. No two are alike. We can be sure that this must be true across the universe, no two spheres of matter that form by gravity can be exactly alike.

Suppose that a million gravitational spheres have formed, and are still forming and, thus far, no two are exactly alike. For any two gravitational spheres in the universe to be exactly alike, the universe would have to make a choice as to which one to replicate first.

Now we know how the universe just cannot stand to make decisions so the only way to avoid making such a decision is to have every gravitational sphere in the universe be different from every other gravitational sphere, no two being exactly alike. This is a lower information state than having some exactly like others, because choices would have to be made as to which ones, and choices are information.

So this gives us some insight into what the scale of the universe must be. Spheres are the default form for when gravity pulls matter together into stars, planets and, moon's. This is because the sphere is the 3D geometric form with the least energy and information.

But every gravitational sphere must be different from every other gravitational sphere, because that requires the least information and involves no choice as to which one to replicate first.

If gravity were stronger it would take fewer atoms to form a gravitational sphere and so the number of gravitational spheres that the universe could contain before they started to replicate would be reduced.

Heavier elements are produced by fusion of lighter atoms in stars. If there were fewer different atoms than the number of possible gravitational spheres in the universe, which have to be different from each other, would be reduced. This fits well with the formation of planets, which orbit second-generation stars and require a first-generation to first produce heavy elements by fusion and then explode in a supernova, because the supernova increases the number of different atoms in the universe and the planets increase the number of gravitational spheres.

This means that there must be a balance in the universe between the strength of gravity, which governs how many atoms are required to form a gravitational sphere, the number of different atoms and, the number of gravitational spheres in the universe.

5) OTHER EXAMPLES OF MIND-BENDING COSMOLOGY

Let's just have a look at some other examples of how mind-bending cosmology can be. Just see if you can wrap your mind around these few examples. Consider this as an exercise in mind expansion.

5a) IS THE UNIVERSE ROTATING?

Everything in the universe seems to rotate. Planets and stars rotate. Galaxies slowly spin. Even the electrons in atoms have a spin, either up or down.

So if all of the components of the universe seem to rotate then shouldn't the entire universe rotate?

The reason for rotation, in terms of my information theory, is that it happens because it represents the lowest information state. A planet or star rotates because, if it didn't rotate, it would have to choose a particular angular alignment, out of all possible alignments, and that choice would be information. The universe avoids making that choice, and thus achieves the lowest information state, by cycling through all possible choices, in other words by rotating.

Suppose, for example, that the earth didn't rotate. The place where you live might always have the sun in the 4:17 PM position. But that time is information, out of all possible positions that the sun could be in. So the universe achieves a lower information position by having the earth rotate through all possible alignments.

So it makes sense that, since everything in the universe is part of something that rotates, the entire universe would be rotating because, like the example above, it would achieve a lower information state by cycling through all possible alignments, instead of choosing one alignment.

But when we come to the subject of the universe rotating, that's when things start to get interesting.

Let's begin with the definition of rotation. The definition of rotation could be "The cycling through all possible alignments relative to an external reference point". So that means, for the universe to be rotating, the rotation would have to be defined by an external reference point.

The trouble is that the universe, by it's very definition, encompasses everything in existence. This means that there can never be any reference point outside the universe by which we can measure it's rotation.

So it becomes a philosophical question whether the universe is rotating. Plainly and simply, the universe is rotating if you would like it to be rotating. Furthermore the rate at which the universe is rotating is also up to you. You can speed it up, or slow it down, at will.

Doesn't that give you a sense of power?

5b) THE MYSTERY OF STRAIGHT LINES

One of my favorite topics on this blog, that I write about periodically, is straight lines. A straight line is usually defined as "The shortest possible distance between two points". Straight lines seem to be very simple and straightforward.

But there is a complication with regard to straight lines. It is the way we define them. We are visual beings and we will always define a straight line by the path of light.

That raises the question of how we can be sure there is not one or more other definitions of straight lines. For all we know, light could take some roundabout way to get to us, which we can never see because the light itself is the vehicle by which we see.

We usually define a straight line as the shortest possible distance between two points, presuming that is the route that light takes, but another possible definition is the lowest energy route between two points. We presume that the two definitions are the same but, given that we define straight lines according to the path of light, we cannot be absolutely sure.

If an electron could think, but not see, it would define it's path through an electric circuit as a straight line. It would not matter at all how tangled the wires of the circuit were. We, with our visual definition, would perceive the electron as taking a very roundabout route through the tangle of wires. The electron, with it's energy definition would see itself as taking the most direct, and lowest energy, route.

We know that the matter of which our universe is composed was scattered over three dimensions of space, four counting the dimension of space that we perceive as time. But since we are composed of this matter ourselves we could not possibly have any awareness of anything that goes on in spatial dimensions outside our own.

How can we know for sure that our block of spatial dimensions is not somehow warped or curved relative to the outside dimensions, possibly by the presence of the matter? 

If that were the case then our definition of straight lines would be correct, but only within our familiar dimensional block of space. Our straight lines would be curved relative to the outside dimensions. There would actually be "shortcuts" across space, that we would be utterly unaware of because we are limited to the dimensions of the matter that we are composed of.

5c) MORE THAN TWO ELECTRIC CHARGES

There are two electric charges that, in my cosmology theory, comprise everything in existence, both matter and space. The basic rules of electric charges are that opposite charges attract while like charges repel. In fact, the very definition of electric charge is how the charge interacts with the other charge. 

Space is an alternating checkerboard pattern of charges, in multiple dimensions. Matter is a concentration of like charges, held together against their mutual repulsion by energy.

This energy that holds like charges together as matter, and is what gives matter it's mass, is called the Mass-Energy Equivalence. It is also the basis of Einstein's famous formula, E = MC squared, where mass can be converted into energy. In a reaction between matter and antimatter, the energy that was holding the like charges together is released in a burst of radiation and the negative and positive charges rearrange themselves back into the alternating checkerboard pattern of empty space.

The two electric charges mean that there must be two opposite directions in each dimension of space. This is because, if we picture ourselves at an infinitesimal point in space between any two electric charges, if one direction begins with a positive charge then the opposite direction must begin with a negative charge.

We live in three spatial dimensions so we refer to these two opposite directions of each as up and down, left and right and, front and back.

But what if there had been other than the two electric charges? Can we even imagine it?

There really couldn't be just one electric charge because the interaction of electric charges requires at least two different charges, so that opposite charges attract while like charges repel. If there was only one charge then it wouldn't really be an electric charge.

But what if there were three electric charges, with each being the opposite of the other two? Can we even imagine it? There would have to be three opposite directions in each spatial dimension. This does not mean more dimensions, just more opposite directions per dimension, which is even more difficult to visualize than more dimensions.

This would utterly change the laws of physics. Electromagnetic waves have a peak and a trough, which are the two opposite directions of one dimension, so the wave would have to have what we would see now as another dimension, yet would not occupy another dimension in the three-charge space.

A three-charge universe would be virtually impossible for us to imagine. But you can give it a try, not to mention if there were four, or five, or more electric charges.

5d) DO WE REALLY HAVE FREE WILL?

Of course, we will always perceive ourselves as having free will. We make choices, decide on a course of action, and then take that course.

Suppose we bounce a ball off a wall. We will see ourselves as making the decision to throw the ball, with the ball having no "choice" in the matter. But suppose the ball could "think". If it was unable to see the decision to throw that we make at our level, the ball would think that it was making the decision from it's own free will to hurtle toward the wall so that it bounced off.

We would understand the reason for the ball's course as our own throw. But the ball, not understanding that, would have it's own cause and effect reasoning for it's course of action. From the ball's perspective it would have made the decision itself to hurtle toward the wall so that it bounced off.

Then what about our "free will"? We will always perceive ourselves as making our own decisions. But isn't it possible that, at a level we cannot comprehend, our actions are being driven and we really have no more free will than the ball being thrown toward the wall, even though we think we do?

Every "decision" we make could actually have been driven for us, leaving us with actually no "choice" but to make that decision, even though we think we are making a free choice.

Even if, facing a choice, we turn around and make a different choice we would still be going along with the cause and effect that is above our understanding. With everything that we choose to do, there is a cause and effect sequence that actually brought it about. Although we are at a higher level than the ball, and are it's cause and effect, we may still really have no more free will than it does.

5e) THE REASON FOR POLITICS

The real reason for politics is complexity. The primary component of politics is economics, and our economics are as complex as we are.

This makes it very difficult for any of us to see the entire economic picture. It is far easier to just see what we refer to as the "right" or the "left". The right can be said to represent the seller and the left the buyer.

Any economic transaction requires both a buyer and a seller. Both are therefore of equal importance. To say that one is more important than the other is like saying that a right shoe is more important than the left shoe.

But shoes are simple and it is easy to see that the left and right are of equal importance. But economics is not so simple and it is much easier to erroneously see either the right or left as more important than the other.

I refer a number of times to my cosmology theory of times in this posting. The posting that I use to introduce it is, "In Cosmology Everything Just Fell Right Into Place" May 2019.

5f) THE ILLUSION OF DISTANCE

One of the basic presumptions that we make, with regard to science, is that we have an unbiased view of the universe. This means that we can completely rely on our measurements and observations when seeking to make discoveries about the universe.

An underlying principle of my cosmology work is that we do not have an unbiased view of the universe. We see the universe as we do not only because of what it is but also because of what we are. So many discoveries not only cannot be explained by ordinary physics but actually contradict each other, particularly between Relativity and Quantum Physics. My explanation is basically that we are seeing ourselves reflected back at us.

What I want to discuss today is something else that is so basic to us, but yet might well be an illusion. That thing is distance.

When we look at a far-away object we see that there is a distance between us and the object. The object will look relatively smaller and dimmer by how far away it is, in accordance with the Inverse Square Law. But maybe distance is just the way we interpret it, according to our nature.

We can see that distance is actually equivalent to energy. Stars and planets form spheres because a sphere is the three-dimensional form with the lowest energy state, and we know that the universe always seeks the lowest energy state. A sphere is also the form with the lowest surface-to-volume ratio. This shows that energy is equivalent to surface area, and thus distance.

Another way that we can see the equivalence between surface area, and thus distance, and energy is the waves on water. If the water is still then the water is at it's minimum surface area, and that is the lowest energy state. But if there is a wind then there is energy in the wind. That energy shows up by increasing the surface area of the water, in the form of waves.

Orbits clearly show the relationship between distance and energy. The higher the orbit the higher the orbital energy, even though the object moves more slowly in a higher orbit according to the Inverse Square Law. The orbital energy amounts to space, in other words distance, the amount of space that a line from the earth to the object covers per unit of time.

But probably the simplest way to see the relationship between energy and distance is to drop something. The greater the distance it falls the greater the energy of it's impact.

All of this is why, if we want to go to a distant place, we have to expend energy to get there. Because distance is really energy and so we have to expend energy to get there.

I question what distance really is. We see it as something being either far or near. But since distance is equivalent to energy couldn't how far away something is from us simply be a manifestation of how much energy there is between us? Objects appear smaller and dimmer at a distance because the light from the object has to go through more energy to get to us.

According to my cosmology theory empty space consists of a checkerboard of alternating negative and positive electric charges, in multiple dimensions. There is energy in the bonds between opposite electric charges, and that is why it requires energy to go anywhere in space. We have to match the energy in those electric charges. It is also why objects appear smaller and dimmer at a distance, light from the object has to go through more energy to get to us.

Also according to my cosmology theory matter, as opposed to empty space, is composed of like electric charges, held together against the mutual repulsion of like charges by energy. This is why matter consists of charged particles, like electrons and protons. But this means that matter has more energy than empty space.

This is why, if we are going to an object some distance away, it requires more energy if there is a wall in our way, that we have to go through or over, or objects in our way that we have to go around.

We perceive both light and gravity across space as operating by the Inverse Square Law, an object twice as far away will have one-quarter the size, brightness and, gravity. But we know that light is a two-dimensional wave, with the two elements of amplitude and wavelength each of which requires a dimension. Because of these two dimensions of light, which forms a square, we could perceive information across space as operating by the Inverse Square Law.

A basic presumption in science is that we have an unbiased view of the universe, that we can completely rely on our measurements and observations. My view is that so much that is otherwise unexplainable falls into place when we realize that we do not have an unbiased view of the universe. We are part of the universe ourselves and we see it as we do not only because of what it is but also because of what we are.

Ordinary textbook physics is the way the universe really operates. New physics, such as Relativity and Quantum Physics, which both contradict each other and are unexplainable by ordinary physics, are really elements of our own nature being reflected back at us. 

Our presumption that we have an unbiased view of the universe may work fine for other branches of science, but when we get into studying the basic nature of the universe we start seeing our own nature reflected back at us.

We know that so much of what we see all around us is optical illusions. Rainbows and the blue sky are not really there. Color itself is an optical illusion, just the way our eyes and brains handle different wavelengths of electromagnetic radiation that we can see.

So why shouldn't even more of basic physics, such as distance, turn out to be just our way of seeing things, because we most certainly do not have an unbiased view of the universe?