• Non ci sono risultati.

Bibliografia [1]

N/A
N/A
Protected

Academic year: 2021

Condividi "Bibliografia [1]"

Copied!
2
0
0

Testo completo

(1)

Bibliografia

[1] C. Liu, M. Muthukumar; J. Chem. Phys. 109, 2536 (1998). [2] M. Muthukumar, P. Welch; Polymer 41, 8833 (2000).

[3] P. Welch, M. Muthukumar; Phys. Rev. Lett. 87, 218302 (2001). [4] W. Paul, D.Y. Yoon, G.D. Smith; J. Chem. Phys. 103, 1702 (1995).

[5] K. Armitstead,G. Goldbeck-Wood; Advances in polymer science (Springer-Verlag, NewYork, 1992), 100, 219.

[6] G. Strobl; The Physics of Polymers (Springer, New York, 1997). [7] T.A. Kavassalis, P.R. Sundararajan; Macromolecules 26, 4144 (1993).

[8] P.R. Sundararajan, T.A. Kavassalis; J. Chem. Soc. Faraday Trans. 91, 2541 (1995). [9] S. Toxvaerd; J. Chem. Phys. 93, 4290 (1990).

[10] G. Ungar, J. Stejny, A. Keller, I. Bidd, M.C. Whiting; Science 229, 386 (1985). [11] C.M. Dobson, M. Karplus; Curr. Opin. Struct. Biol. 91, 92 (1999).

[12] K.L. Anderson, G. Goldbeck-Wood; Polymer 41, 8849 (2000). [13] J.P.K. Doye; Polymer 41, 8857 (2000).

[14] J.J. Point; Macromolecules 12, 770 (1979). [15] G. Ungar, A. Keller; Polymer 27, 1835 (1986). [16] M. Muthukumar; Eur. Phys. J. E 3, 199 (2000).

[17] A. Keller, S.J. Organ, G. Ungar; Macromolecular Symposia 48/49, 93 (1991). [18] G. Ungar, A. Keller; Polymer 28, 1899 (1987).

[19] T. Yamamoto; J. Chem. Phys. 107, 2653 (1997). [20] T. Yamamoto; Phys. Rev. E 65, 050801 (2002).

[21] S.Z.D. Cheng, C.Y. Li, L. Ziu; Eur. Phys. J. E 3, 195 (2000). [22] G. Strobl; Eur. Phys. J. E 3, 165 (2000).

[23] J.J. Point, M. Dosière; Polymer 30, 2292 (1989). [24] B. Lotz ; Eur. Phys. J. E 3, 185 (2000).

[25] B. Wunderlich, A. Metha; J. Polym. Sci. Polym. Phys. Ed. 11, 1759 (1973). [26] M. Hikosaka; Polymer 28, 1257 (1987).

[27] M. Guaita, F. Ciardelli, F. La Mantia, E. Pedemonte; Fondamenti di Scienza dei Polimeri (Pacini Editore, 1998).

[28] P.W. Atkins; Chimica Fisica (Zanichelli, terza edizione italiana, quarta edizione inglese). [29] J.M.G. Cowie; Chemistry and Physics of Modern Materials (Blackie, Chapman & Hall,New

York, 1991).

[30] J.D. Hoffman, R.L. Miller, H. Marand, D.B. Roitman; Macromolecules 25, 2221 (1992). [31] D.M. Sadler; Polymer 24, 1401 (1983).

[32] D.M. Sadler; Phys. Rev. Lett. 56, 2708 (1986). [33] D.M. Sadler; Nature 326, 174 (1987).

[34] M. Imai, K. Mori, T.Mizukami, K. Kaji, T. Kanaya; Polymer 33,4451 (1992). [35] M. Imai, K. Mori, T.Mizukami, K. Kaji, T. Kanaya; Polymer 33,4457 (1992). [36] S. Fujiwara, T. Sato; Computer Physics Communications 147, 342 (2002). [37] S. Fujiwara, T. Sato; Computer Physics Communications 142, 123 (2001). [38] S. Fujiwara, T. Sato; J. Chem. Phys. 114, 6455 (2001).

[39] S. Fujiwara, T. Sato; J. Chem. Phys. 110, 9757 (1999). [40] S. Fujiwara, T. Sato; J. Chem. Phys. 107, 613 (1997).

[41] B.G. Sumpter, D.W. Noid, B. Wunderlich; J. Chem. Phys. 93, 6875 (1990). [42] B.C. Hathorn, Sumpter, Noid; Polymer 43, 615 (2002).

[43] P.R. ten Wolde, M.J. Ruiz-Montero, D. Frenkel; Phys. Rev. Lett. 75, 2714 (1995). [44] P.R. ten Wolde, M.J. Ruiz-Montero, D. Frenkel; J. Chem. Phys. 104, 9932 (1996). [45] P.G. Higgs, G. Ungar; J. Chem. Phys. 100, 640 (1994).

(2)

[46] S.J. Organ, A. Keller, M. Hikosaka, G. Ungar; Polymer 37, 2517 (1996). [47] D.M. Sadler, G.H. Gilmer; Polymer Commun. 28, 232 (1987).

[48] A. Keller ; Rep. Prog. Phys. 31, 623 (1968). [49] P.J. Philips; Rep. Prog. Phys. 53, 549 (1990).

[50] R.G. Alamo, L. Mandelkern, G.M. Stack, C.Kröhnke, G. Wegner; Macromolecules 27, 147 (1994).

[51] M.P. Allen, D.J. Tildesley; Computer Simulation of Liquids (Clarendon, Oxford, 1987). [52] D.C. Rapaport ; The Art of Molecular Dynamics Simulation (Cambridge University Press,

Cambridge, 1995).

[53] T. Frisch, A. Verga; Phys. Rev. E 66, 041807 (2002).

[54] T. Kreer, J. Baschnagel, M. Müller, K. Binder; Macromolecules 34, 1105 (2001). [55] I.M. Lifshitz, A.Yu. Grosberg, A.R. Khokhlov; Rev. Mod. Phys. 50(3), 683 (1978). [56] A.Yu. Grosberg, A.R. Khokhlov; Giant Molecules (Academic Press, New York, 1996). [57] A.Yu. Grosberg, D.V. Kuznetsov; Macromolecules, 25, 1970 (1992).

[58] A.Yu. Grosberg, D.V. Kuznetsov; Macromolecules, 25, 1980 (1992). [59] A.Yu. Grosberg, D.V. Kuznetsov; Macromolecules, 25, 1991 (1992). [60] A.Yu. Grosberg, D.V. Kuznetsov; Macromolecules, 25, 1996 (1992). [61] F.C. Frank, M. Tosi; Proc. R. Soc. London, Ser. A 263, 323 (1961).

[62] D.P. Landau, K. Binder; Monte Carlo Simulations in Statistical Physics (Cambridge University Press, Cambridge, 2000).

[63] M. Doi, S.F. Edwards; The Theory of Polymer Dynamics (Clarendon, Oxford, 1986). [64] D.E. Knuth; The Art of Computer Programming. Vol. 2: Seminumerical Algorithms

(Addison-Wesley, Reading ,1981).

Riferimenti

Documenti correlati

7 Reweighting methods 7.1 Background 7.1.1 Distribution functions 7.1.2 Umbrella sampling 7.2 Single histogram method: the Ising model as a case study 7.3 Multi-histogram method

B ENNETT , John, Five Metaphysical Poets: Donne, Herbert, Vaughan, Crashaw, Cambridge Univ.. B LOOM , Harold, John Donne, Infobase Publishing,

The first section (“people”: pp. 39-156, five chapters) explores the impact of social move- ments on the life-course of movement participants and the population in general; the

Crump, "A contemporary subject for contemporary Europe: the much-disputed role and relevance of Latin at Dutch gymnasia" (pp. The history of teaching of Classics in

El autor demuestra que el término puede ser entendido en el contexto amplio del lenguaje del don, incluso como una fór- mula para solucionar, siguiendo a Annette Weiner, la

Core candidates will now take Paper 1: Multiple Choice (Core), and Paper 3: Theory (Core) and either Paper 5: Practical Test or Paper 6: Alternative to Practical.. Extended

There are several questions that this book addresses: in the first place, what is the institutional setting for the relationship between Church and State that was laid

Morel not only stresses the Democritean heritage of Epicurean atomism, but thinks that a theory of the composition of bodies, integrated with a theory of generation, allows for