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"Another piece of non-textual evidence is the calendar. Because of their arithmetic backwardness, Greeks made a mess of the calendar they had earlier copied from Egypt like their gods. Acknowledging that mess Julius Caesar reformed the Roman calendar with great fanfare, though the net result only aggravated the mess about months (e.g. July has 31 days in honour of Julius, so August competitively has 31 days in honour of Augustus, and February is reduced to 28 or 29)! That (Julian) calendar was adopted as the Christian religious calendar in the 4th c Nicene council to fix the date of the Easter ritual, then the main church festival. However, even that "reformed" calendar had the wrong length of the year (as 365Âź days). That was a gross error even in comparison with 3rd c calendars from India. The gross error arose because the Roman system of numeration had no way to articulate fractions, except for simple fractions like half and quarter; therefore they were unable to state the true length of the year (but that wrong figure is what the colonially educated still learn!). This error (in the second place after the decimal point) naturally led to a noticeable slip in the date of Easter within a century. The church repeatedly tried to correct the error, but even the 5th c Hilarius reforms failed. The church controlled the Roman state then, and Hilarius was a pope, so the only possible reason for this persistent failure to fix the error in the date of the key religious ritual was this : basic knowledge of astronomy was unavailable in the Roman empire. Thus the non-textual evidence states the real hilarious story of Roman incompetence in astronomy, contrary to the tall tale of a Graeco-Roman Ptolemy who authored an advanced text on astronomy in the 2nd c. That is, neither "Claudius Ptolemy" nor advanced knowledge of astronomy existed anywhere in the Roman empire in the 5th c. Lack of accurate knowledge of so basic a parameter as the length of the year nails those false claims?"

- C. K. Raju

• 0 likes• computer-scientists• educators-from-india• mathematicians-from-india• physicists-from-india• scientists-from-india•
"But the mysterious source of Mercator's precise trigonometric values, and his technique, remains unknown to this day. Mercator, who worked with Gemma Frisius at the Catholic University of Louvain, obviously had privileged access to information brought in by sailors and priests returning from India and China, via Antwerp. So it is hardly surprising that the "Mercator" projection is identical with a projection used in maps of the celestial globe from China from at least five centuries earlier—and the same principle could obviously be applied to the terrestrial globe. How- ever, since Mercator was arrested by the Inquisition, and was lucky to escape with his life, it is also not surprising that he kept his "pagan" sources of information a closely guarded secret. The tables of trigonometric values published by Clavius, in 1608, used the Indian de- finition of sines and cosines, and the then common Indian value for the radius of the circle. Hence, these tables far exceeded in accuracy the "tables of secants" provided by earlier nav- igational theorists like Stevin for calculation of loxodromes, which were (at the accuracy of) Aryabhata's values, known to the Arabs. It is hard to see how such accuracy (unprecedented for Europe) could even have been attempted without calculus techniques. Clavius, who au- thored the calendar reform proclaimed by pope Gregory, certainly had access to every bit of information brought in by the Jesuits, but could hardly be expected to be truthful enough to acknowledge his “pagan” sources. Since Clavius’ tables were published several years be- fore the first hint of the calculus “officially” appeared in Europe in the works of Kepler, and since Clavius provides no explanation of his method, it remains a mystery how these high- precision trigonometric values were calculated. The only reasonable explanation is that like his contemporaries, Tycho Brahe, who merely articulates Nilakantha’s astronomical model, or Scaliger, whose “Julian” day number system copies the Indian ahargana system, Clavius obtained his trigonometric values from India."

- C. K. Raju

• 0 likes• computer-scientists• educators-from-india• mathematicians-from-india• physicists-from-india• scientists-from-india•
"Nevertheless, this laughable hypothesis is exactly what has been adopted with the 12th and 16th c. sources of “Greek” or “Hellenic” tradition." Hence, virtually all the knowledge prevalent in the 11th c. world, as known to Indians and Arabs, is attributed to Greeks like Aristotle, Archimedes, and Ptolemy. The fact is that the knowledge in these 11th c. texts accurately reflects the knowledge that then prevailed—as is naturally to be expected. However, Western historians explain this fact not by the simple and natural hypothesis of accretive up- dating of the texts, but by the extraordinary claim that all (or most of) the contemporary knowledge of the 11th c. world was derived by transmission from the Greeks, who had anticipated these developments. There is no other, or direct, evidence that these Greek authors wrote anything at all. Thus, by way of evidence, this extraordinary‘theory of transmission simply begs the question! To complete the story, it is thought enough to supplement it with a speculative chronology, attached to Greek names, based on stray remarks of doubtful authenticity in late texts. This sort of story-telling may be perfectly consonant with the standards of theology (and most early Western historians were priests), but is completely unconvincing from a somewhat more sceptical and down-to-earth point of view."

- C. K. Raju

• 0 likes• computer-scientists• educators-from-india• mathematicians-from-india• physicists-from-india• scientists-from-india•