History of the Warfare of Science with Theology in Christendom Part 12
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Its first feature shows a development out of earlier theological ideas.
The earth is no longer a flat plain inclosed by four walls and solidly vaulted above, as theologians of previous centuries had believed it, under the inspiration of Cosmas; it is no longer a mere flat disk, with sun, moon, and stars hung up to give it light, as the earlier cathedral sculptors had figured it; it has become a globe at the centre of the universe. Encompa.s.sing it are successive transparent spheres, rotated by angels about the earth, and each carrying one or more of the heavenly bodies with it: that nearest the earth carrying the moon; the next, Mercury; the next, Venus; the next, the Sun; the next three, Mars, Jupiter, and Saturn; the eighth carrying the fixed stars. The ninth was the primum mobile, and inclosing all was the tenth heaven--the Empyrean.
This was immovable--the boundary between creation and the great outer void; and here, in a light which no one can enter, the Triune G.o.d sat enthroned, the "music of the spheres" rising to Him as they moved. Thus was the old heathen doctrine of the spheres made Christian.
In attendance upon the Divine Majesty, thus enthroned, are vast hosts of angels, who are divided into three hierarchies, one serving in the empyrean, one in the heavens, between the empyrean and the earth, and one on the earth.
Each of these hierarchies is divided into three choirs, or orders; the first, into the orders of Seraphim, Cherubim, and Thrones; and the main occupation of these is to chant incessantly--to "continually cry" the divine praises.
The order of Thrones conveys G.o.d's will to the second hierarchy, which serves in the movable heavens. This second hierarchy is also made up of three orders. The first of these, the order of Dominions, receives the divine commands; the second, the order of Powers, moves the heavens, sun, moon, planets, and stars, opens and shuts the "windows of heaven,"
and brings to pa.s.s all other celestial phenomena; the third, the order of Empire, guards the others.
The third and lowest hierarchy is also made up of three orders. First of these are the Princ.i.p.alities, the guardian spirits of nations and kingdoms. Next come Archangels; these protect religion, and bear the prayers of the saints to the foot of G.o.d's throne. Finally come Angels; these care for earthly affairs in general, one being appointed to each mortal, and others taking charge of the qualities of plants, metals, stones, and the like. Throughout the whole system, from the great Triune G.o.d to the lowest group of angels, we see at work the mystic power attached to the triangle and sacred number three--the same which gave the triune idea to ancient Hindu theology, which developed the triune deities in Egypt, and which transmitted this theological gift to the Christian world, especially through the Egyptian Athanasius.
Below the earth is h.e.l.l. This is tenanted by the angels who rebelled under the lead of Lucifer, prince of the seraphim--the former favourite of the Trinity; but, of these rebellious angels, some still rove among the planetary spheres, and give trouble to the good angels; others pervade the atmosphere about the earth, carrying lightning, storm, drought, and hail; others infest earthly society, tempting men to sin; but Peter Lombard and St. Thomas Aquinas take pains to show that the work of these devils is, after all, but to discipline man or to mete out deserved punishment.
All this vast scheme had been so riveted into the Ptolemaic view by the use of biblical texts and theological reasonings that the resultant system of the universe was considered impregnable and final. To attack it was blasphemy.
It stood for centuries. Great theological men of science, like Vincent of Beauvais and Cardinal d'Ailly, devoted themselves to showing not only that it was supported by Scripture, but that it supported Scripture.
Thus was the geocentric theory embedded in the beliefs and aspirations, in the hopes and fears, of Christendom down to the middle of the sixteenth century.(44)
(44) For the earlier cosmology of Cosmas, with citations from Montfaucon, see the chapter on Geography in this work. For the views of mediaeval theologians, see foregoing notes in this chapter. For the pa.s.sages of Scripture on which the theological part of this structure was developed, see especially Romans viii, 38; Ephesians i, 21; Colossians i, 16 and ii, 15; and innumerable pa.s.sages in the Old Testament. As to the music of the spheres, see Dean Plumptre's Dante, vol. ii, p. 4, note. For an admirable summing up of the mediaeval cosmology in its relation to thought in general, see Rydberg, Magic of the Middle Ages, chap. i, whose summary I have followed in the main. For striking woodcuts showing the view taken of the successive heavens with their choirs of angels, the earth being at the centre with the spheres about it, and the Almighty on his throne above all, see the Neuremberg Chronicle, ff. iv and v; its date is 1493. For charts showing the continuance of this general view down to the beginning of the sixteenth century, see the various editions of the Margarita Philosophica, from that of 1503 onward, astronomical part. For interesting statements regarding the Trinities of G.o.ds in ancient Egypt, see Sharpe, History of Egypt, vol. i, pp. 94 and 101. The present writer once heard a lecture in Cairo, from an eminent Scotch Doctor of Medicine, to account for the ancient Hindu and Egyptian sacred threes and trinities. The lecturer's theory was that, when Jehovah came down into the Garden of Eden and walked with Adam in "the cool of the day," he explained his triune character to Adam, and that from Adam it was spread abroad to the various ancient nations.
II. THE HELIOCENTRIC THEORY.
But, on the other hand, there had been planted, long before, the germs of a heliocentric theory. In the sixth century before our era, Pythagoras, and after him Philolaus, had suggested the movement of the earth and planets about a central fire; and, three centuries later, Aristarchus had restated the main truth with striking precision. Here comes in a proof that the antagonism between theological and scientific methods is not confined to Christianity; for this statement brought upon Aristarchus the charge of blasphemy, and drew after it a cloud of prejudice which hid the truth for six hundred years. Not until the fifth century of our era did it timidly appear in the thoughts of Martia.n.u.s Capella: then it was again lost to sight for a thousand years, until in the fifteenth century, distorted and imperfect, it appeared in the writings of Cardinal Nicholas de Cusa.
But in the shade cast by the vast system which had grown from the minds of the great theologians and from the heart of the great poet there had come to this truth neither bloom nor fruitage.
Quietly, however, the soil was receiving enrichment and the air warmth.
The processes of mathematics were constantly improved, the heavenly bodies were steadily observed, and at length appeared, far from the centres of thought, on the borders of Poland, a plain, simple-minded scholar, who first fairly uttered to the modern world the truth--now so commonplace, then so astounding--that the sun and planets do not revolve about the earth, but that the earth and planets revolve about the sun: this man was Nicholas Copernicus.
Copernicus had been a professor at Rome, and even as early as 1500 had announced his doctrine there, but more in the way of a scientific curiosity or paradox, as it had been previously held by Cardinal de Cusa, than as the statement of a system representing a great fact in Nature. About thirty years later one of his disciples, Widmanstadt, had explained it to Clement VII; but it still remained a mere hypothesis, and soon, like so many others, disappeared from the public view. But to Copernicus, steadily studying the subject, it became more and more a reality, and as this truth grew within him he seemed to feel that at Rome he was no longer safe. To announce his discovery there as a theory or a paradox might amuse the papal court, but to announce it as a truth--as THE truth--was a far different matter. He therefore returned to his little town in Poland.
To publish his thought as it had now developed was evidently dangerous even there, and for more than thirty years it lay slumbering in the mind of Copernicus and of the friends to whom he had privately intrusted it.
At last he prepared his great work on the Revolutions of the Heavenly Bodies, and dedicated it to the Pope himself. He next sought a place of publication. He dared not send it to Rome, for there were the rulers of the older Church ready to seize it; he dared not send it to Wittenberg, for there were the leaders of Protestantism no less hostile; he therefore intrusted it to Osiander, at Nuremberg.(45)
(45) For the germs of heliocentric theory planted long before, see Sir G. C. Lewis; and for a succinct statement of the claims of Pythagoras, Philolaus, Aristarchus, and Martia.n.u.s Capella, see Hoefer, Histoire de l'Astronomie, 1873, p. 107 et seq.; also h.e.l.ler, Geschichte der Physik, Stuttgart, 1882, vol. i, pp. 12, 13; also pp. 99 et seq. For germs among thinkers of India, see Whewell, vol. i, p. 277; also Whitney, Oriental and Linguistic Studies, New York, 1874; Essay on the Lunar Zodiac, p.
345. For the views of Vincent of Beauvais, see his Speculum Naturale, lib. xvi, cap. 21. For Cardinal d'Ailly's view, see his treatise De Concordia Astronomicae Veritatis c.u.m Theologia (in his Ymago Mundi and separately). For general statement of De Cusa's work, see Draper, Intellectual Development of Europe, p. 512. For skilful use of De Cusa's view in order to mitigate censure upon the Church for its treatment of Copernicus's discovery, see an article in the Catholic World for January, 1869. For a very exact statement, in the spirit of judicial fairness, see Whewell, History of the Inductive Sciences, p. 275, and pp. 379, 380. In the latter, Whewell cites the exact words of De Cusa in the De Docta Ignorantia, and sums up in these words: "This train of thought might be a preparation for the reception of the Copernican system; but it is very different from the doctrine that the sun is the centre of the planetary system." Whewell says: "De Cusa propounded the doctrine of the motion of the earth more as a paradox than as a reality.
We can not consider this as any distinct antic.i.p.ation of a profound and consistent view of the truth." On De Cusa, see also h.e.l.ler, vol. i, p.
216. For Aristotle's views, and their elaboration by St. Thomas Aquinas, see the De Coelo et Mundo, sec. xx, and elsewhere in the latter. It is curious to see how even such a biographer as Archbishop Vaughan slurs over the angelic Doctor's errors. See Vaughan's Life and Labours of St.
Thomas of Aquin, pp. 459, 460.
As to Copernicus's danger at Rome, the Catholic World for January, 1869, cites a speech of the Archbishop of Mechlin before the University of Louvain, to the effect that Copernicus defended his theory at Rome, in 1500, before two thousand scholars; also, that another professor taught the system in 1528, and was made apostolic notary by Clement VIII. All this, even if the doctrines taught were identical with Copernicus as finally developed--which is simply not the case--avails nothing against the overwhelming testimony that Copernicus felt himself in danger--testimony which the after-history of the Copernican theory renders invincible. The very t.i.tle of Fromundus's book, already cited, published within a few miles of the archbishop's own cathedral, and sanctioned expressly by the theological faculty of that same University of Louvain in 1630, utterly refutes the archbishop's idea that the Church was inclined to treat Copernicus kindly. The t.i.tle is as follows: Ant-Aristarchus sive Orbis-Terrae Immobilis, in quo decretum S. Congregationis S. R. E. Cardinal. an. M.DC.XVI adversus Pythagorico-Copernicanos editum defenditur, Antverpiae, MDCXXI.
L'Epinois, Galilee, Paris, 1867, lays stress, p. 14, on the broaching of the doctrine by De Cusa in 1435, and by Widmanstadt in 1533, and their kind treatment by Eugenius IV and Clement VII; but this is absolutely worthless in denying the papal policy afterward. Lange, Geschichte des Materialismus, vol. i, pp. 217, 218, while admitting that De Cusa and Widmanstadt sustained this theory and received honors from their respective popes, shows that, when the Church gave it serious consideration, it was condemned. There is nothing in this view unreasonable. It would be a parallel case to that of Leo X, at first inclined toward Luther and others, in their "squabbles with the envious friars," and afterward forced to oppose them. That Copernicus felt the danger, is evident, among other things, by the expression in the preface: "Statim me explodendum c.u.m tali opinione clamitant." For dangers at Wittenberg, see Lange, as above, vol. i, p. 217.
But Osiander's courage failed him: he dared not launch the new thought boldly. He wrote a grovelling preface, endeavouring to excuse Copernicus for his novel idea, and in this he inserted the apologetic lie that Copernicus had propounded the doctrine of the earth's movement not as a fact, but as a hypothesis. He declared that it was lawful for an astronomer to indulge his imagination, and that this was what Copernicus had done.
Thus was the greatest and most enn.o.bling, perhaps, of scientific truths--a truth not less enn.o.bling to religion than to science--forced, in coming before the world, to sneak and crawl.(46)
(46) Osiander, in a letter to Copernicus, dated April 20, 1541, had endeavored to reconcile him to such a procedure, and ends by saying, "Sic enim placidiores reddideris peripatheticos et theologos quos contradicturos metuis." See Apologia Tychonis in Kepler's Opera Omnia, Frisch's edition, vol. i, p. 246. Kepler holds Osiander entirely responsible for this preface. Bertrand, in his Fondateurs de l'astronomie moderne, gives its text, and thinks it possible that Copernicus may have yielded "in pure condescension toward his disciple."
But this idea is utterly at variance with expressions in Copernicus's own dedicatory letter to the Pope, which follows the preface. For a good summary of the argument, see Figuier, Savants de la Renaissance, pp.
378, 379; see also citation from Ga.s.sendi's Life of Copernicus, in Flammarion, Vie de Copernic, p. 124. Mr. John Fiske, accurate as he usually is, in his Outlines of Cosmic Philosophy appears to have followed Laplace, Delambre, and Pet.i.t into the error of supposing that Copernicus, and not Osiander, is responsible for the preface. For the latest proofs, see Menzer's translation of Copernicus's work, Thorn, 1879, notes on pp. 3 and 4 of the appendix.
On the 24th of May, 1543, the newly printed book arrived at the house of Copernicus. It was put into his hands; but he was on his deathbed. A few hours later he was beyond the reach of the conscientious men who would have blotted his reputation and perhaps have destroyed his life.
Yet not wholly beyond their reach. Even death could not be trusted to s.h.i.+eld him. There seems to have been fear of vengeance upon his corpse, for on his tombstone was placed no record of his lifelong labours, no mention of his great discovery; but there was graven upon it simply a prayer: "I ask not the grace accorded to Paul; not that given to Peter; give me only the favour which Thou didst show to the thief on the cross."
Not till thirty years after did a friend dare write on his tombstone a memorial of his discovery.(47)
(47) See Flammarion, Vie de Copernic, p. 190.
The preface of Osiander, pretending that the book of Copernicus suggested a hypothesis instead of announcing a truth, served its purpose well. During nearly seventy years the Church authorities evidently thought it best not to stir the matter, and in some cases professors like Calganini were allowed to present the new view purely as a hypothesis. There were, indeed, mutterings from time to time on the theological side, but there was no great demonstration against the system until 1616. Then, when the Copernican doctrine was upheld by Galileo as a TRUTH, and proved to be a truth by his telescope, the book was taken in hand by the Roman curia. The statements of Copernicus were condemned, "until they should be corrected"; and the corrections required were simply such as would subst.i.tute for his conclusions the old Ptolemaic theory.
That this was their purpose was seen in that year when Galileo was forbidden to teach or discuss the Copernican theory, and when were forbidden "all books which affirm the motion of the earth." Henceforth to read the work of Copernicus was to risk d.a.m.nation, and the world accepted the decree.(48) The strongest minds were thus held fast. If they could not believe the old system, they must PRETEND that they believed it;--and this, even after the great circ.u.mnavigation of the globe had done so much to open the eyes of the world! Very striking is the case of the eminent Jesuit missionary Joseph Acosta, whose great work on the Natural and Moral History of the Indies, published in the last quarter of the sixteenth century, exploded so many astronomical and geographical errors. Though at times curiously credulous, he told the truth as far as he dared; but as to the movement of the heavenly bodies he remained orthodox--declaring, "I have seen the two poles, whereon the heavens turn as upon their axletrees."
(48) The authorities deciding this matter in accordance with the wishes of Pope V and Cardinal Bellarmine were the Congregation of the Index, or cardinals having charge of the Index Librorum Prohibitorum. Recent desperate attempts to fasten the responsibility on them as individuals seem ridiculous in view of the simple fact that their work was sanctioned by the highest Church authority, and required to be universally accepted by the Church. Eleven different editions of the Index in my own possession prove this. Nearly all of these declare on their t.i.tle-pages that they are issued by order of the pontiff of the period, and each is preface by a special papal bull or letter. See especially the Index of 1664, issued under order of Alexander VII, and that of 1761, under Benedict XIV. Copernicus's statements were prohibited in the Index "donec corrigantur." Kepler said that it ought to be worded "donec explicetur." See Bertand, Fondateurs de l'Astronomie moderne, p. 57. De Morgan, pp. 57-60, gives the corrections required by the Index of 1620. Their main aim seems to be to reduce Copernicus to the grovelling level of Osiander, making his discovery a mere hypothesis; but occasionally they require a virtual giving up of the whole Copernican doctrine--e.g., "correction" insisted upon for chap.
viii, p. 6. For a scholarly account of the relation between Prohibitory and Expurgatory Indexes to each other, see Mendham, Literary Policy of the Church of Rome; also Reusch, Index der verbotenen Bucher, Bonn, 1855, vol. ii, chaps i and ii. For a brief but very careful statement, see Gebler, Galileo Galilei, English translation, London, 1879, chap. i; see also Addis and Arnold's Catholic Dictionary, article Galileo, p.8.
There was, indeed, in Europe one man who might have done much to check this current of unreason which was to sweep away so many thoughtful men on the one hand from scientific knowledge, and so many on the other from Christianity. This was Peter Apian. He was one of the great mathematical and astronomical scholars of the time. His brilliant abilities had made him the astronomical teacher of the Emperor Charles V. His work on geography had brought him a world-wide reputation; his work on astronomy brought him a patent of n.o.bility; his improvements in mathematical processes and astronomical instruments brought him the praise of Kepler and a place in the history of science: never had a true man better opportunity to do a great deed. When Copernicus's work appeared, Apian was at the height of his reputation and power: a quiet, earnest plea from him, even if it had been only for ordinary fairness and a suspension of judgment, must have carried much weight. His devoted pupil, Charles V, who sat on the thrones of Germany and Spain, must at least have given a hearing to such a plea. But, unfortunately, Apian was a professor in an inst.i.tution of learning under the strictest Church control--the University of Ingolstadt. His foremost duty was to teach SAFE science--to keep science within the line of scriptural truth as interpreted by theological professors. His great opportunity was lost.
Apian continued to maunder over the Ptolemaic theory and astrology in his lecture-room. The attack on the Copernican theory he neither supported nor opposed; he was silent; and the cause of his silence should never be forgotten so long as any Church a.s.serts its t.i.tle to control university instruction.(49)
(49) For Joseph Acosta's statement, see the translation of his History, published by the Hakluyt Society, chap. ii. For Peter Apian, see Madler, Geschichte der Astronomie, Braunschweig, 1873, vol. i, p. 141. For evidences of the special favour of Charles V, see Delambre, Histoire de l'Astronomie au Moyen Age, p. 390; also Bruhns, in the Allgemeine deutsche Biographie. For an attempted apology for him, see Gunther, Peter and Philipp Apian, Prag, 1822, p. 62.
Doubtless many will exclaim against the Roman Catholic Church for this; but the simple truth is that Protestantism was no less zealous against the new scientific doctrine. All branches of the Protestant Church--Lutheran, Calvinist, Anglican--vied with each other in denouncing the Copernican doctrine as contrary to Scripture; and, at a later period, the Puritans showed the same tendency.
Said Martin Luther: "People gave ear to an upstart astrologer who strove to show that the earth revolves, not the heavens or the firmament, the sun and the moon. Whoever wishes to appear clever must devise some new system, which of all systems is of course the very best. This fool wishes to reverse the entire science of astronomy; but sacred Scripture tells us that Joshua commanded the sun to stand still, and not the earth." Melanchthon, mild as he was, was not behind Luther in condemning Copernicus. In his treatise on the Elements of Physics, published six years after Copernicus's death, he says: "The eyes are witnesses that the heavens revolve in the s.p.a.ce of twenty-four hours. But certain men, either from the love of novelty, or to make a display of ingenuity, have concluded that the earth moves; and they maintain that neither the eighth sphere nor the sun revolves.... Now, it is a want of honesty and decency to a.s.sert such notions publicly, and the example is pernicious.
It is the part of a good mind to accept the truth as revealed by G.o.d and to acquiesce in it." Melanchthon then cites the pa.s.sages in the Psalms and Ecclesiastes, which he declares a.s.sert positively and clearly that the earth stands fast and that the sun moves around it, and adds eight other proofs of his proposition that "the earth can be nowhere if not in the centre of the universe." So earnest does this mildest of the Reformers become, that he suggests severe measures to restrain such impious teachings as those of Copernicus.(50)
(50) See the Tischreden in the Walsch edition of Luther's Works, 1743, vol. xxii, p. 2260; also Melanchthon's Initia Doctrinae Physicae.
This treatise is cited under a mistaken t.i.tle by the Catholic World, September, 1870. The correct t.i.tle is as given above; it will be found in the Corpus Reformatorum, vol. xiii (ed. Bretschneider, Halle, 1846), pp. 216, 217. See also Madler, vol. i, p. 176; also Lange, Geschichte des Materialismus, vol. i, p. 217; also Prowe, Ueber die Abhangigkeit des Copernicus, Thorn, 1865, p. 4; also note, pp. 5, 6, where text is given in full.
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