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7 (1956), 383—396. S. KUREPA, Convex Functions. Glasnik mat. -astron. ( 2 ) 11 ( 1 9 5 6 ) , 89—94. J . H. B. KEMPERMAN, A General Functional Equation. Trans. Amer. Math. Soc. 86 (1957—1958), 28—56. H. KIESEWETTER, Eine Bemerkung iiber partielle Differentiationen bei N. H. Abel. Publ. Math. Debrecen 5 (1957—1958), 265—268. J . ACZEL, Ober die Differenzierbarkeit der integrierbaren Losungen gewisser Funktionalgleichungen. Annales Univ. Budapest S. Math. 3—4 (1960—1961), 5—8. A. RENYI, On Measures of Entropy and Information.

Math. Debrecen 9 (1962), 149—163. [2] Eine allgemeinere Methode in der Theorie der Funktionalgleichungen, II. Publ. Math. Debrecen 9 (1962), 314—323. 1963 E. VINCZE, [1] Eine allgemeinere Methode III. Publ. Math. Debrecen [2] Eine allgemeinere Methode IV. Publ. Math. Debrecen in der Theorie der Funktionalgleichungen, 10 (1963), 191—202. in der Theorie der Funktionalgleichungen, 10 (1963), 293—318. Bibliography 34 1964 J . ACZEL, [1] 1965 1966 Zur gemeinsamen Charakterisierung der Entropien a-ter Ordnung und der Shannonschen Entropie bei nicht unbedingt vollstandigen Verteilungen.

H. ABEL, Ober die Functionen, die der Gleichung cpx + q)y = \p{xfy + y f x) genug thun. J . reine angew. Math. 2 (1827), 386—394 (CEuvres completes, I. Christiania 1881, pp. 389—398). G. DARBOUX, Sur le theoreme fondamental de la geometrie projective. Math. Ann. 17 (1880), 33—42. H. W. PEXIDER, Notiz iiber Funktionaltheoreme. Monatsh. Math. Phys. 14 (1903), 293—301. C . STEPHANOS, Sur une categorie d'equations fonctionnelles. Rendiconti Circ. Mat. Palermo 18 (1904), 360—362. G. HAMEL, Eine Basis aller Zahlen und die unstetigen Losungen der Funktionalgleichung / (x + y) = / (x) + / (y).

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