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nydus/On Growth and FormPublic
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Table of Contents
62

260 Cf. Hertwig, O., Die Zelle und die Gewebe, 1893, p. 1; 〜Die Zellen, in welche der Anatom die pflanzlichen und thierischen Organismen zerlegt, sind die TrûÊger der Lebensfunktionen; sie sind, wie Virchow sich ausgedrû¥ckt hat, die 〘Lebenseinheiten.〙 Von diesem Gesichtspunkt aus betrachtet, erscheint der Gesammtlebensprocess eines zusammengesetzten Organismus nichts Anderes zu sein als das hûÑchst verwickelte Resultat der einzelnen Lebensprocesse seiner zahlreichen, verschieden functionirenden Zellen.〝

63

261 Journ. of Morph. VIII, p. 653, 1893.

64

262 Neue Grundlegungen zur Kenntniss der Zelle, Morph. Jahrb. VIII, pp. 272, 313, 333, 1883.

65

263 Journ. of Morph. II, p. 49, 1889.

CHAPTER V THE FORMS OF CELLS

1

264 Phil. Trans. CLI, p. 183, 1861; Researches, ed. Angus Smith, 1877, p. 553.

2

265 Cf. Kelvin, On the Molecular Tactics of a Crystal, The Boyle Lecture, Oxford, 1893, Baltimore Lectures, 1904, pp. 612〓642. Here Kelvin was mainly following Bravais〙s (and Frankenheim〙s) theory of 〜space-lattices,〝 but he had been largely anticipated by the crystallographers. For an account of the development of the subject in modern crysôÙtalôÙlogôÙraphy, by Sohncke, von Fedorow, SchûÑnfliess, Barlow and others, see Tutton〙s CrysôÙtalôÙlogôÙraphy, chap. ix, pp. 118〓134, 1911.

3

266 In a homogeneous crystalline arrangement, symmetry compels a locus of one property to be a plane or set of planes; the locus in this case being that of least surface potential energy.

4

267 This is what Graham called the water of gelatination, on the analogy of water of cryôÙstalôÙliôÙsaôÙtion; Chem. and Phys. Researches, p. 597.

5

268 Here, in a non-crystalline or random arrangement of particles, symmetry ensures that the potential energy shall be the same per unit area of all surfaces; and it follows from geometrical conôÙsiôÙdeôÙraôÙtions that the total surface energy will be least if the surface be spherical.

6

269 Lehmann, O., Flû¥ssige Krystalle, sowie PlasticitûÊt von Krystallen im allgemeinen, etc., 264 pp. 39 pll., Leipsig, 1904. For a semi-popular, illustrated account, see Tutton〙s Crystals (Int. Sci. Series), 1911.

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