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Sun Merkur Navigation menu VideoCapri Sun Cup - MHKM Skalica - HC Merkur Říčany 23.3.2019 9/15/ · Mercury was named after the Roman messenger god, because of its fast movements around the Sun. Mercury is the closest planet to the Sun at a distance of million kilometers / miles or AU away. It takes sunlight minutes to travel from the Sun to Mercury. Sun conjunct Mercury. Because the ego and the mind are aligned, people with Sun conjunct Mercury possess much mental energy. They are always in a position to think about what they want, and in many ways, this is an interruption of the will. Mercury Retrograde happens 3 to 4 times in year when planet Mercury comes between the Sun and the Earth. With its concentration of iron, the planet has a magnetic influence on the behavior of human beings and some strange things appear to happen during the retrograde tpsb-cerizay.com: Casey Giovinco. Man kann Glücksspirale Prüfen über E-Mail oder per Live-Chat kontaktieren. Zudem wurden die Zahlungsmethoden so gewählt, Diamond Rush Geld innerhalb kurzer Zeit zur Auszahlung gebracht werden kann. Auch heute setzt man bei Sunmaker weiterhin auf Qualitätsspiele aus Deutschland. Seit kurzer Zeit sind auch Sportwetten über die Sunmaker Webseite möglich.
Things are very black or white for them. Sun cazimi Mercury on the other hand sits in the heart of the sun and seems to have a deep wisdom that permeates from other dimensions and out through their soul.
These people radiate wisdom and often become advisors and gurus to the elites. His humour was dark and satirical, covering a huge array of topics including social issues, religion, philosophy and politics.
Her myriad of provocative stage personas ensure her ongoing status as a gay icon. He is openly bi-sexual. Her emphasis was on lyrics.
It then sets and rises again from some parts of the planet's surface. The same thing happens in reverse at sunset for other parts of the surface.
The axial tilt is almost zero, with the best measured value as low as 0. This is significantly smaller than that of Jupiter , which has the second smallest axial tilt of all planets at 3.
On average, Mercury is the closest planet to Earth, and to each of the other planets in the Solar System. Interestingly, many of these craters are named after famous deceased artists and authors.
There are also extensive mare-like plains present and the craters also indicate that the planet has been geologically inactive for billions of years.
It is believed that Mercury was heavy bombarded by comets and asteroids during and shortly after its formation 4.
It is believed that Mercury was volcanically active during this period. Basins such as the Caloris Basin were filled with magma, producing smooth plains similar to the lunar marias found on the Moon.
About 15 impact basins have been identified on Mercury, with more to be revealed. Two geologically distinct plains regions on Mercury have been identified.
These crater plains appear to have obliterated many earlier craters. This large range arises from the planet's high orbital eccentricity.
The longitude convention for Mercury puts the zero of longitude at one of the two hottest points on the surface, as described above. However, when this area was first visited, by Mariner 10 , this zero meridian was in darkness, so it was impossible to select a feature on the surface to define the exact position of the meridian.
Therefore, a small crater further west was chosen, called Hun Kal , which provides the exact reference point for measuring longitude. A International Astronomical Union resolution suggests that longitudes be measured positively in the westerly direction on Mercury.
For many years it was thought that Mercury was synchronously tidally locked with the Sun, rotating once for each orbit and always keeping the same face directed towards the Sun, in the same way that the same side of the Moon always faces Earth.
Radar observations in proved that the planet has a spin-orbit resonance, rotating three times for every two revolutions around the Sun.
The eccentricity of Mercury's orbit makes this resonance stable—at perihelion, when the solar tide is strongest, the Sun is nearly still in Mercury's sky.
The rare resonant tidal locking is stabilized by the variance of the tidal force along Mercury's eccentric orbit, acting on a permanent dipole component of Mercury's mass distribution.
However, with noticeable eccentricity, like that of Mercury's orbit, the tidal force has a maximum at perihelion and therefore stabilizes resonances, like , enforcing that the planet points its axis of least inertia roughly at the Sun when passing through perihelion.
The original reason astronomers thought it was synchronously locked was that, whenever Mercury was best placed for observation, it was always nearly at the same point in its resonance, hence showing the same face.
This is because, coincidentally, Mercury's rotation period is almost exactly half of its synodic period with respect to Earth.
Due to Mercury's spin-orbit resonance, a solar day the length between two meridian transits of the Sun lasts about Earth days. Simulations indicate that the orbital eccentricity of Mercury varies chaotically from nearly zero circular to more than 0.
In , the French mathematician and astronomer Urbain Le Verrier reported that the slow precession of Mercury's orbit around the Sun could not be completely explained by Newtonian mechanics and perturbations by the known planets.
He suggested, among possible explanations, that another planet or perhaps instead a series of smaller 'corpuscules' might exist in an orbit even closer to the Sun than that of Mercury, to account for this perturbation.
The success of the search for Neptune based on its perturbations of the orbit of Uranus led astronomers to place faith in this possible explanation, and the hypothetical planet was named Vulcan , but no such planet was ever found.
The perihelion precession of Mercury is 5, arcseconds 1. Newtonian mechanics, taking into account all the effects from the other planets, predicts a precession of 5, arcseconds 1.
The effect is small: just Similar, but much smaller, effects exist for other Solar System bodies: 8. Filling in the values gives a result of 0.
This is in close agreement with the accepted value of Mercury's perihelion advance of There may be scientific support, based on studies reported in March , for considering that parts of the planet Mercury may have been habitable , and perhaps that life forms , albeit likely primitive microorganisms , may have existed on the planet.
Mercury can be observed for only a brief period during either morning or evening twilight. Mercury can, like several other planets and the brightest stars, be seen during a total solar eclipse.
Like the Moon and Venus, Mercury exhibits phases as seen from Earth. It is "new" at inferior conjunction and "full" at superior conjunction.
The planet is rendered invisible from Earth on both of these occasions because of its being obscured by the Sun,  except its new phase during a transit.
Mercury is technically brightest as seen from Earth when it is at a full phase. Although Mercury is farthest from Earth when it is full, the greater illuminated area that is visible and the opposition brightness surge more than compensates for the distance.
Nonetheless, the brightest full phase appearance of Mercury is an essentially impossible time for practical observation, because of the extreme proximity of the Sun.
Mercury is best observed at the first and last quarter, although they are phases of lesser brightness.
The first and last quarter phases occur at greatest elongation east and west of the Sun, respectively.
At both of these times Mercury's separation from the Sun ranges anywhere from Mercury can be easily seen from the tropics and subtropics more than from higher latitudes.
Viewed from low latitudes and at the right times of year, the ecliptic intersects the horizon at a steep angle. At middle latitudes , Mercury is more often and easily visible from the Southern Hemisphere than from the Northern.
This is because Mercury's maximum western elongation occurs only during early autumn in the Southern Hemisphere, whereas its greatest eastern elongation happens only during late winter in the Southern Hemisphere.
An alternate method for viewing Mercury involves observing the planet during daylight hours when conditions are clear, ideally when it is at its greatest elongation.
Care must be taken to ensure the instrument isn't pointed directly towards the Sun because of the risk for eye damage. This method bypasses the limitation of twilight observing when the ecliptic is located at a low elevation e.
Ground-based telescope observations of Mercury reveal only an illuminated partial disk with limited detail. The Hubble Space Telescope cannot observe Mercury at all, due to safety procedures that prevent its pointing too close to the Sun.
Because the shift of 0. The earliest known recorded observations of Mercury are from the Mul. Apin tablets. These observations were most likely made by an Assyrian astronomer around the 14th century BC.
Apin tablets is transcribed as Udu. Ud "the jumping planet". The Babylonians called the planet Nabu after the messenger to the gods in their mythology.
The ancients knew Mercury by different names depending on whether it was an evening star or a morning star. By about BC, the ancient Greeks had realized the two stars were one.
The Greco - Egyptian  astronomer Ptolemy wrote about the possibility of planetary transits across the face of the Sun in his work Planetary Hypotheses.
He suggested that no transits had been observed either because planets such as Mercury were too small to see, or because the transits were too infrequent.
It was associated with the direction north and the phase of water in the Five Phases system of metaphysics. In India, the Kerala school astronomer Nilakantha Somayaji in the 15th century developed a partially heliocentric planetary model in which Mercury orbits the Sun, which in turn orbits Earth, similar to the Tychonic system later proposed by Tycho Brahe in the late 16th century.
The first telescopic observations of Mercury were made by Galileo in the early 17th century. Although he observed phases when he looked at Venus, his telescope was not powerful enough to see the phases of Mercury.
In , Pierre Gassendi made the first telescopic observations of the transit of a planet across the Sun when he saw a transit of Mercury predicted by Johannes Kepler.
In , Giovanni Zupi used a telescope to discover that the planet had orbital phases similar to Venus and the Moon.
The observation demonstrated conclusively that Mercury orbited around the Sun. A rare event in astronomy is the passage of one planet in front of another occultation , as seen from Earth.
Mercury and Venus occult each other every few centuries, and the event of May 28, is the only one historically observed, having been seen by John Bevis at the Royal Greenwich Observatory.
The difficulties inherent in observing Mercury mean that it has been far less studied than the other planets. The effort to map the surface of Mercury was continued by Eugenios Antoniadi , who published a book in that included both maps and his own observations.
In June , Soviet scientists at the Institute of Radio-engineering and Electronics of the USSR Academy of Sciences , led by Vladimir Kotelnikov , became the first to bounce a radar signal off Mercury and receive it, starting radar observations of the planet.
Pettengill and Rolf B. Dyce, using the meter Arecibo radio telescope in Puerto Rico , showed conclusively that the planet's rotational period was about 59 days.
If Mercury were tidally locked, its dark face would be extremely cold, but measurements of radio emission revealed that it was much hotter than expected.
Astronomers were reluctant to drop the synchronous rotation theory and proposed alternative mechanisms such as powerful heat-distributing winds to explain the observations.
Italian astronomer Giuseppe Colombo noted that the rotation value was about two-thirds of Mercury's orbital period, and proposed that the planet's orbital and rotational periods were locked into a rather than a resonance.
Instead, the astronomers saw the same features during every second orbit and recorded them, but disregarded those seen in the meantime, when Mercury's other face was toward the Sun, because the orbital geometry meant that these observations were made under poor viewing conditions.
Ground-based optical observations did not shed much further light on Mercury, but radio astronomers using interferometry at microwave wavelengths, a technique that enables removal of the solar radiation, were able to discern physical and chemical characteristics of the subsurface layers to a depth of several meters.
Moreover, recent technological advances have led to improved ground-based observations. In , high-resolution lucky imaging observations were conducted by the Mount Wilson Observatory 1.
They provided the first views that resolved surface features on the parts of Mercury that were not imaged in the Mariner 10 mission.
Reaching Mercury from Earth poses significant technical challenges, because it orbits so much closer to the Sun than Earth. Therefore, the spacecraft must make a large change in velocity delta-v to get to Mercury and then enter orbit, as compared to the delta-v required for other planetary missions.
The potential energy liberated by moving down the Sun's potential well becomes kinetic energy , requiring another large delta-v change to do anything other than rapidly pass by Mercury.
To land safely or enter a stable orbit the spacecraft would rely entirely on rocket motors. Aerobraking is ruled out because Mercury has a negligible atmosphere.
A trip to Mercury requires more rocket fuel than that required to escape the Solar System completely. As a result, only two space probes have visited it so far.
The second close approach was primarily used for imaging, but at the third approach, extensive magnetic data were obtained. The data revealed that the planet's magnetic field is much like Earth's, which deflects the solar wind around the planet.
For many years after the Mariner 10 encounters, the origin of Mercury's magnetic field remained the subject of several competing theories. On March 24, , just eight days after its final close approach, Mariner 10 ran out of fuel.
Because its orbit could no longer be accurately controlled, mission controllers instructed the probe to shut down. It made a fly-by of Earth in August , and of Venus in October and June to place it onto the correct trajectory to reach an orbit around Mercury.
The probe successfully entered an elliptical orbit around the planet on March 18, The first orbital image of Mercury was obtained on March 29, The probe finished a one-year mapping mission,  and then entered a one-year extended mission into The mission was designed to clear up six key issues: Mercury's high density, its geological history, the nature of its magnetic field , the structure of its core, whether it has ice at its poles, and where its tenuous atmosphere comes from.
To this end, the probe carried imaging devices that gathered much-higher-resolution images of much more of Mercury than Mariner 10 , assorted spectrometers to determine abundances of elements in the crust, and magnetometers and devices to measure velocities of charged particles.
Measurements of changes in the probe's orbital velocity were expected to be used to infer details of the planet's interior structure.
The European Space Agency and the Japanese Space Agency developed and launched a joint mission called BepiColombo , which will orbit Mercury with two probes: one to map the planet and the other to study its magnetosphere.
Both probes will operate for one terrestrial year. By slowing down, going back to our previous work, and tying up loose ends, we will be more in line with the energies present during a Mercury retrograde.
Aligning ourselves with these energies will prevent us from fighting the current, which will make our own lives easier during these frustrating times.
Ultimately, by going retrograde ourselves going back over our work , we will avoid many of the pitfalls normally associated with this period in the planetary cycle.
As I have been saying throughout this entire series of articles, the wise choice is to go with the flow and not fight the current of life. There is a time for everything, and if you approach everything in its time, you will succeed effortlessly.
The answer: Apply this astrological knowledge to your mundane life. Consider all of the projects you are currently working on.
Next time Mercury goes retrograde, stop attempting to progress on each of your endeavors. Instead, comb through those projects and find where you can go back, review, edit, redo, re-evaluate, change tacks, or slow down and check your accuracy.
Use Mercury retrograde periods as a welcome reprieve from the crazy break-neck pace that society requires you to take the other days a year and slow down.
Mercury Retrograde happens 3 to 4 times in year when planet Mercury comes between the Sun and the Earth. With its concentration of iron, the planet has a magnetic influence on the behavior of human beings and some strange things appear to happen during the retrograde period.
It is very hard for these people to passively listen and absorb information. Their opinions are usually strong and they are independent thinkers. Sun conjunct Mercury people are expressive and, in some cases, very animated speakers.
Back to Planetary Aspects. See also: Sun parallel Mercury.