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The Moving Solar Sytem

A SOLAR SYSTEM FOR THE 21ST CENTURY

The video starts with planets orbiting the stationary Sun just as we were taught in school. We know the earth is in motion around the Sun and the Sun, too, is in motion around the Milky Way galaxy but until the late seventies, we had no idea just how fast this motion is. At high speed the Sun is like a blazing fireball racing through space with the planets trapped in a gravitational well of bent space on a seemingly endless journey falling into the Sun but missing the fast moving star on every pass. Of course scientists know that the Sun also orbits the galactic centre but this motion is disregarded. The disturbing part of this high speed is that it is much higher than the three hundred and seventy kilometres per second velocity attributed to galactic rotation. The actual velocity of our galaxy is six hundred kilometres per second. This unexplained extra velocity is called the ‘peculiar velocity’ and remains as one of the mysteries of modern day science, and of course, the experts do not consider this motion because they think motion is of no consequence in the functioning of the universe. The video clearly shows the synodic motion of the earth.

To this day, another nagging mystery of the solar system is elliptical orbits. Johannes Kepler, who worked on the Copernican model, was disturbed by this. Why couldn’t the orbits be perfect circles? The reason is that any satellite that is moving around a moving Sun must have an elliptical orbit because the planetary body must gain speed in order to pass the moving Sun and must slow up to accommodate the Sun passing the planet. The planet speeds up when closer to the Sun and slows when further away. Elliptical orbits are required in order to vary the planetary speed and orbit the moving Sun. This varying velocity explains the elliptical mystery with observational evidence and causality.

The Earth overtakes the Sun in late December every year, reaching its closest approach to the Sun and its highest speed in early January. The earth is at its furthest distance from the Sun in June when the Sun passes the slowing Earth on its steady path towards the constellation Leo. In March, there is a time when the Earth and Sun are moving at the same speed. Einstein’s General Relativity plays a role here by producing dynamic fields of a gravitational well that cause the planets to forever fall into the Sun. In the case of the earth, in March it has slowed up and matches the Sun’s speed . By June, it is at its furthest from the Sun and travelling at its slowest speed. By September the Earth is again matching the pace of the Sun and has been accelerating towards its next close encounter in December.

Quantum Earth

THE TIDES – EVIDENCE FOR MOTION

The tides are observational evidence for a moving solar system. Normally it is the Sun’s gravitation combined with the Moon that determine the tides. The Moon’s position relative to the Earth is the major cause of tides. In December the planet is on a fast, hard turn, and the Earth is moving faster than the Sun. 

Georgia Strait separates Vancouver Island from the Canadian mainland and has two entrances, one in Johnstone Strait in the north and the Strait of Juan de Fuca near Victoria, BC in the south. These two narrow channels slow up the movement of tidal waters so that the tides are always about five hours behind the Moon’s position. Therefore, at high tide the Moon is actually near the horizon where it usually should be directly overhead. Then, when the Moon is overhead at the zenith or directly below, at the nadir, it is a low tide. 

The highest tides of the year are in December when the tidal waters are thrown outwards because of a centrifugal force. There is no need for phantom centripetal forces to prevent the Earth from flying off into space. It is a logical dynamic to have the waters of the earth affected by these two turns in December and June. The observational evidence for this is that there are never any low tides in December during the day in Georgia Strait, and there are never high tides in June during the day. This is so prevalent that June has been dubbed “Clam digger’s month” because there are low tides all day throughout the Georgia Strait. The difference in tidal heights because of these centrifugal forces is about two metres. The Moon is usually the greatest dictator of tides except during these two times of the year.

A forgotten Babylonian model of the solar system works by synodic motion and varying velocities. It seems that the ancients knew more about the cosmos than we thought. This kind of planetary motion, varying velocities and synodic motion requires high speed.  The planets are falling directly into the Sun but the Sun is a moving target so, like a naive quarterback, the planets miss their target on every pass. Also, this path is very stable at high speed because of Newton’s First Law of Motion, that is, ’any object in motion requires an external force to change its trajectory’. Our motion is 2.2 million kilometres per hour, over a million and a quarter miles an hour! This high speed motion should not be ignored. Scientists do not think that motion makes any difference in the working of the cosmos. However when you are building a theory, you must account for all the observations.

Solar Wind

FLAT EARTH OR SPHERICAL EARTH?

The idea of a flat earth is repugnant to many people, but a spherical earth really isn’t a very satisfactory solution. First, if the earth were round, it would mean that we are truly alone in a vast empty space. Space travel would require enormous amounts of time and it may be impossible to colonize any star system outside of our own. Who would invest the huge amounts of resources and money to travel for many years to arrive at another star system? If that is the case forget about a Star Trek future for us.

If an object is unobserved, we really cannot say too much about it. Physicist Bill Unruh states that you cannot know anything about the velocity or the direction of atoms, unobserved, on the other side of the Earth. There is a kind of duality at work. The Earth is both a round object when observed and a flat wave of matter when unobserved. We should not give up on either conception until we have explored local space and a possible flat earth. We know the earth behaves like a ball, but can it behave like a quantum wave? We need to find what the Ancient Egyptians called the akhet, the horizon, a real place and the beginning of a dark journey into an unseen part of the cosmos known by ancient peoples and called the underworld. The Ancient Egyptians called it the duat, the Mayans called it Xubalba and the Christians call it Hell..

DOORWAY TO HEAVEN

The Ancient Egyptians had a better idea than round earth only. They say that the  earth is a flat plate with the sky a dome overhead, connected to the earth by four pillars representing the cardinal positions of north, east, south and west. Their texts tell us they open up a doorway, a wormhole, near the Big Dipper in the north of the sky. This connects to a hidden underworld, the duat. This black space could be like a super highway, no light, no speed limit! Or perhaps there is something even better. Einstein’s General Relativity theory allows for wormholes which might be navigable and could lead to a parallel universe. The Ancient Egyptians speak of doorways. They tell the story of the Sun’s nighttime journey into and through twelve gates in the duat and during that trip, the Sun, in its sun boat enters the tail of a serpent and just before dawn, emerges from the serpents mouth in the form of Khepri, the scarab beetle and the symbol of resurrection.

Ursa Major
Posted in Astronomy, Main

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