Credit: NASA, ESA, and A. Feild (STScI) › Larger image with title This is an artist's illustration that compares the solar system with the Upsilon Andromedae system. No one really knows how the ancients may have computed such numbers. The system consists of an F-type main-sequence star (designated υ Andromedae A, also named Titawin  ) and a smaller red dwarf (υ Andromedae B). Upsilon Andromedae c is an extrasolar planet orbiting the Sun-like star Upsilon Andromedae A every 241.2 days. By doubling this particular number, we finally reach in scientific annotation of the electronic calculators the number 1.36616586622, which resembles another maya companion number much discussed in previous essays; that of 1366560 days. There are many candidates for extrasolar planets, as they are named by the theorists: 47 Ursae Majoris; 51 Pegasi; 55 Cancri; Tau Bootis; 70 Virginis; Gleise 876; 16 Cygni B; Rho Corona Borealis; and Gleise 614. The possibility that the orbital periodicity of d may actually be 1296, which is within the cited range, would itself entail many similarities with the ancient reckoning system. http://www.aas.org/publications/baas/v32n3/dps2000/122.htm (2000) Obviously, we shall limit our observations to the most superficial aspects of the theoretical reasoning behind the postulation of these planetary bodies, given the fact that astrophysics lies beyond our analytical capabilities. NASA. (See a digitized 2MASS. This is an artist's illustration of the Upsilon Andromedae A planetary system, where three Jupiter-type planets orbit the yellow-white star Upsilon Andromedae A. The inner planet was announced by Butler et al. http://www.ast.cam.ac.uk/AAO/press/multipleplanets.html Scratchpad is a FANDOM Lifestyle Community. The discovery was made by Geoffrey Marcy and R. Paul Butler, both astronomers at San Francisco State University. Even nature appears to have its coincidences. The reader may ask why bother about analyzing information and numbers that are based almost totally on theoretical postulates and supposition. However, a larger duration of velocities reveals additional velocity variations. The combined data (of Lick/AFOE) offered by the theorists immediately suggests a relationship to the ancient reckoning system. It gives a quick overview of the hierarchical architecture. And, as we have argued throughout our research writings, many of the coincidences in numbers of the ancient reckoning systems, we believe, are due to the coincidences of numbers in reality. For in ancient Egypt, an historically significant number existed in the fractal 1296000 days. http://www.aas.org/publications/baas/v34n3/dps2002/202.htm http://www.aas.org/publications/baas/v37n4/aas207/1101.htm (2005) The numbers offer the possibility of comparisons. Briefly, that is scientific endeavor. The search for radio emission from the exoplanetary systems 55 Cancri, upsilon Andromedae, and tau Boötis using LOFAR beam-formed observations. Upsilon Andromedae A, stellar object 1.1.1. The number seven is also an historically significant number in ancient reckoning. Entire System Extrapolated From Planet d (1999), Planet b Found to Be Half Hot Half Cold (2006), Outer Planets Found to be Tilted 30degrees (2010), Mysterious Hot Spot on Planet b (Oct 2010), Model Using HD 209458 Data Explains Wind Source of Offset Hot Spots (2011). We present LOFAR-LBA circularly polarized beamformed observations of the exoplanetary systems 55 Cancri, $\upsilon$ Andromedae, and $\tau$ Boötis. Consider, then, the sidereal day-count for Earth's orbit, 365.256 days times four equals 1461.024 days. http://www.astronomy.com/asy/default.aspx?c=a&id=4578. Recognizing that the velocity variations could be due to a second companion, Butler and Marcy immediately alerted the … Its temperature of 6210 Kelvin and luminosity 3.4 times that of the Sunsuggest a mass 1.3 times solar and a radius 60 percent larger than the Sun. Consider the apparently irrelevant number of 1269 days for d, as we double this value and arrive at 1299456 (= 1024 x 1269), we see that 1299456 - 1296000 = 3456, another historically significant number. System Upsilon Andromedae in Elite: Dangerous - Minor Factions! http://arxiv.org/abs/astro-ph/0502441 Upsilon may be observed today, but as yet we have not actually observed the three planetary bodies (b, c, d) as postulated by the theory. So, we are not attempting to be precise (although numbers and decimal points offer that impression), but simply to suggest possible relationships. The arrangement of numbers, however, is astonishing, when we consider these numbers in relation to the different day-counts of the ancient reckoning system: [Remember the importance of visualizing 1.75 and .75 as we mentioned earlier regarding the reciprocal of seven and the 151840 and 51840 numbers.]. The 1460/1461 count falls within the range of the orbital periodicity of planetary body d, and immediately creates an intriguing scenario. In fact, when we divide the 1481.2 figure by the baseline of the Great Pyramid, 756, we see a number/fractal appear that reminds us of the Nineveh number: Therefore, if we divide the orbital time of planetary body d by that of b, the following obtains: For all the remainder math and the dislike of decimal places by the ancients, nothing can compare to such coincidences as the following: I.E.S. http://www.journals.uchicago.edu/ApJ/journal/issues/ApJL/v575n1/16411/brief/16411.abstract.html (2002), http://www.newscientist.com/article.ns?id=dn2810 13 + 33 + 63 + 83 + 93 = 1485 (planetary body d). http://www.astro.northwestern.edu/rasio/UpsAndPR/ The orbital periodicity of c is around 52.5 times greater than b; and, likewise, the orbital periodicity of d is 5.25 times greater than the planetary body c of Upsilon Andromedae. However, there are distinct aspects of these numbers to be considered. http://www.badastronomy.com/bitesize/ups_and.html, http://fr.arxiv.org/abs/astro-ph/9910534 (1999), http://www.aas.org/publications/baas/v31n4/dps99/447.htm, http://www.journals.uchicago.edu/ApJ/journal/issues/ApJ/v530n1/40532/brief/40532.abstract.html (1999) The star Upsilon Andromedae lies roughly 40 light years away in the constellation Andromeda, and (unlike most of the known planet-bearing stars) is bright enough to be visible to the naked eye if you know where to look. And, the answer is to show how the perceived measurements might fit into the ancient system of reckoning. The U Andromedae system lies at a distance of around ~43.93 light years from our solar system. The theoretically based information about the three planetary bodies for the U Andromedae system involves different aspects of the planetary bodies. http://www.spaceref.com/news/viewnews.html?id=667, http://www.journals.uchicago.edu/ApJ/journal/issues/ApJL/v572n1/16280/brief/16280.abstract.html, http://www.gl.ciw.edu/interns/2002/Norwood_abstract.html But, this idea would require conceding the point that the ancients had devised reckoning systems of time and space that were exact sciences. The observed movement of the system's central star suggests to the theorists the possible existence of a three-planetary body system. One may surmise that coincidentally the numbers are in nature. Upsilon Andromedae 'b', the '51 Peg-like' planet in the 4.6 day orbit, was originally announced by our group in June 1996. https://scratchpad.fandom.com/wiki/Upsilon_Andromedae_System Upsilon Andromedae is located fairly close to the Solar System: the parallax of Upsilon Andromedae A was measured by the Hipparcos astrometry satellite as 74.12 milliarcseconds, corresponding to a distance of 13.49 parsecs (44 light years). http://www.cnn.com/TECH/space/9904/15/new.solar.system/index.html This is an artist's illustration of the Upsilon Andromedae A planetary system, where three Jupiter-type planets orbit the yellow-white star Upsilon Andromedae A. Astronomers have recently discovered that not all planets orbit this star in the same plane, as the major planets in our solar system … Consider the following regarding the platonic-multiple 10368 (= 4 x 2592): Now, if we add up other proposed options for the orbital periodicity of the three planetary bodies, we see arise another historically significant number, the maya number 1728 (= 3 x 576), which belongs to the number series of the maya period number 1872000 days. http://www.upi.com/NewsTrack/Science/2006/10/13/planet_temps_beyond_solar_system_recorded/ http://www.tucsoncitizen.com/daily/local/29272.php The numbers seem to reflect that if one computes the precession based on the 25920 Platonic year, then one would measure 1481.2 for d's orbital periodicity; and, if one employed the precession number 25956, then that number would be a 1483.2 measurement, still within the range given. The hottest parts of the planet are near the trailing side terminator at the equator, due to high velocity winds transporting heat to the night side. In other words, the ancients arrived at numbers that are relational to the numbers derived today because both sets of reckoning systems are theoretically correct in that they reflect the behavior of reality. The statistical information offered by the theorists appears to confirm just such a possibility. Upsilon Andromedae A c, planet, semi-major axis: 0.832AU 1.1.3. 2917 ships passed through Upsilon Andromedae space, including 12 ships in the last 7 days. http://cfa-www.harvard.edu/afoe/overview.html In other words, this may represent a possible relationship between the planetary bodies c and d of the new solar system. But, even further, if the 13689 and related combinations are designed within the pyramids of Giza and Teotihuacan, as we have demonstrated in earlier essays, there must be another significance of these numbers. Hence, the ease with which many writers will dismiss those numbers as having any mathematical or scientific meaning. One would then have to ask why the numbers are themselves, as postulated by today's astrophysicists, relational to the numbers of the ancient reckoning systems. This is an artist's illustration of the Upsilon Andromedae A planetary system, where three Jupiter-type planets orbit the yellow-white star Upsilon Andromedae A. Astronomers have recently discovered that not all planets orbit this star in the same plane, … However, it appears as though the theorists have concentrated their analyses on the orbital time of 1269 days for the planetary body d of the system. http://www.edpsciences.org/articles/aa/abs/2005/18/aa1680/aa1680.html (2005) - Effects of Stellar Winds, http://cfa-www.harvard.edu/afoe/upsAnd_pr.html Upsilon Andromedae A is a yellowish star that is. Now, how did the ancients arrive at such numbers, how did they achieve this; that is another question that requires a distinct line of inquiry from that followed in this essay. As the new science of comparative solar systems commences, it is only fitting to approach the subject with the idea that the numbers and measurements coming out of different systems may be relational. The middle planets c (0.83 au, 14 MJ, may actually be a brown dwarf star, e=0.224) and d (2.5 au, 10 MJ, e=0.26) have had their inclinations and masses determined with astrometry. This is 80deg offset from the starward pole and a much greater offset than other observed hot Jupiters. The ancient Mesoamerican calendar round of 18980 days or 52 years, which apparently derives from the coincidence of two distinct ancient calendrical systems (the 260c and the 365c day-counts), is considered by many scholars to be the product of superstition. The recent announcement of the possible existence of another solar system, with planetary bodies (b, c, d) orbiting a star, similar to our own solar system, has been theoretically postulated for the Upsilon Andromedae system. http://www.journals.uchicago.edu/ApJ/journal/issues/ApJ/v552n1/53231/brief/53231.abstract.html (2000) http://astronomy.swin.edu.au/sao/guest/butler/ The relationship of the maya companion number, 1366560, is directly related by remainder math to the 13689 fractal number. Upsilon Andromedae is a fourth magnitude (magnitude 4.09) class F (F8) ordinary dwarf 44 light years away. The reader should remember that all of the measurements offered by the theorists are suppositions and generally are accompanied by a margin of error. The apparently strange maya numbers, 1366560 and 1385540, whose difference between them 18980, also would appear to represent simply superstitious ideas. Planet scattering was thought to be a source until the outermost planet was discovered. Like most stars with Upsilon Andromedae A b, planet, semi-major axis: 0.0594AU 1.1.2. Comparison of Solar System with Upsilon Andromedae system This is an artist's illustration that compares the Solar System with the Upsilon Andromedae system. And, further, even if we take the 52c number/fractal, other relationships appear: In previous essays, we have drawn attention to the 13689, 1689, 1368936, etc., baseline measurements which are suggestive of the ancient reckoning system. The Sothic cycle concerns a 1460/1461 year-count figure for the 365.25c and 365c respectively. Therefore, let us suppose that 1481.2 also may be expressing 481.2 (the possible height of the Great Pyramid), and doubled to the 962.4 figure. http://www.journals.uchicago.edu/ApJ/journal/issues/ApJL/v474n2/5590/5590.html, http://www.journals.uchicago.edu/ApJ/journal/issues/ApJ/v548n1/51961/brief/51961.abstract.html (2000) tidal influences It is this same scientific feature of analysis that we believe existed in the selection of the numbers of the ancient reckoning system. http://fr.arxiv.org/abs/astro-ph/0210438, http://fr.arxiv.org/abs/astro-ph/0205104 (2002) The variations were detected by making sensitive measurements of the Doppler shift of Upsilon Andromedae's spectrum. brighter than our Sun, Sol. http://www.theallineed.com/science/05042612.htm The figure given today for the sidereal orbital time of the planet Earth is 365.256 days. http://www.washingtonpost.com/wp-srv/national/daily/april99/planets041699.htm http://www.journals.uchicago.edu/ApJ/journal/issues/ApJ/v576n1/16282/brief/16282.abstract.html (2002) The recent announcement of the possible existence of another solar system, with planetary bodies (b, c, d) orbiting a star, similar to our own solar system, has been theoretically postulated for the Upsilon Andromedae system. We shall concern ourselves with only a few types of information offered by the theorists. It becomes frightening for some to consider the idea that our scientists of today, with apparently much more sophisticated technological instruments are only able to arrive at numbers similar to those arrived in the past. The innermost planet of the Upsilon Andromedae A system was discovered in 1996 and announced in January of 1997, together with the planet of Tau Boötis and the innermost planet of 55 Cancri A. The planet, designated Upsilon Andromedae b, was discovered by measuring changes in the star's radial velocity induced by the planet's gravity. In previous essays and extracts we have written about the possibility of viewing the ancient reckoning numbers in various manners. The initial news reports stated that the planetary body d was orbiting around four times the orbital time of Earth. http://www.journals.uchicago.edu/ApJ/journal/issues/ApJ/v550n2/52104/brief/52104.abstract.html (2000) http://www.eurekalert.org/pub_releases/2006-10/uocf-uua101206.php 1. http://www.eurekalert.org/pub_releases/2005-04/nu-msh041105.php, http://www.ifa.hawaii.edu/reu/2005research/dove.pdf (2004), http://www.space.com/scienceastronomy/061012_fireice_planet.html The main star around which the planets orbit is a yellow-white star somewhat younger than the sun and its companion is a red dwarf in a wide orbit. Upsilon Andromedae is a binary star located approximately 44 light-years from Earth in the constellation of Andromeda. We have shown that the 1368 fractal/number may reflect the baseline of the Great Pyramid in the following manner. Upsilon Andromedae b, occasionally referred toTemplate:By whom as Upsilon Andromedae Ab (to distinguish it from the red dwarf Upsilon Andromedae B), is an extrasolar planet approximately 44 light-years away from Earth in the constellation of Andromeda (the Chained Maiden).The planet was discovered orbiting the Solar twin star, Upsilon Andromedae, approximately every five days. We shall concern ourselves with the less suggestive numbers of the newly discovered solar system. We may observe other strange numbers (1368000, 1368900, 1368936, etc. The possibility exists that planetary body d may have the orbital time of 1296 days, which would then become comparative to the ancient 360c system, given the fact that 1296 is the square of thirty-six. The search for radio emission from the exoplanetary systems 55 Cancri, upsilon Andromedae, and tau Boötis using LOFAR beam-formed observations. Everything is simply a matter of chance and coincidence. One may also consider the fact that 1368000 minus 1366560 equals 1440, another maya fractal/number. The orbital periodicity of planetary bodies, b and c, do not seem to offer any apparent key to a relationship to the ancient reckoning system. http://rp.iszf.irk.ru/hawk/URSI2005/pdf/J03b.4(01189).pdf, The eccentricity of the outer planets is likely due to a giant planet that was ejected from the star system. There is no need to review all of the possible relationships within the ancient reckoning system of the historically significant fractal numbers of 1460/1461 and 1296, which we have discussed extensively in many other essays of this series. http://fr.arxiv.org/abs/astro-ph/0411655 (2004) - effect on Star Earth/matriX, P.O. Like 51 Pegasi b, the first extrasolar planet discovered around a normal star, Upsilon Andromedae b orbits very close to its star, cl… Far too few scholars are willing to concede such a point at this time. It is one of the most well studied non-transiting star systems. This system was visited for the first time on EDSM by Annwn on Dec 10, 2014, 7:10:05 AM. Stellar binary 1.1. There is no way in which they could have known the numbers related to those planetary bodies; at least as far as our knowledge of the ancients is concerned. The closest planet in the Upsilon Andromedae system was detected in 1996 by astronomers Geoffrey Marcy and R. 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