Toplam kayıt 156, listelenen: 121-140

      Künye Göre
      Tarı İlgin, Ö. & Pekcan, M. Ö. (2007). Slow release from carrageenan gels at various temperatures. Drugs of the Future, 32, 76-76. [1]
      Tarı İlgin, Ö. & Pekcan, M. Ö. (2008). Study of drying of kappa-carrageenan gel at various temperatures using a fluorescence technique. Drying Technology, 26(1), 101-107. doi:10.1080/07373930701781728 [1]
      Tarı İlgin, Ö. & Pekcan, M. Ö. (2008). Swelling of iota-carrageenan gels prepared with various CaCl2 content: A fluorescence study. E-Polymers, 8(1), 1-10. doi:10.1515/epoly.2008.8.1.1 [1]
      Tarı İlgin, Ö., & Pekcan, M. Ö. (2007). Swelling activation energy of kappa-carrageenan in its gel state: A fluorescence study. Journal of Applied Polymer Science, 106(6), 4164-4168. doi:10.1002/app.26980 [1]
      Tepehan, F., Sunay, S., Uğur, Ş. & Pekcan, M. Ö. (2007). Film formation from TiO2-polystyrene latex composite: A fluorescence study. Composite Interfaces, 14(3), 243-260. doi:10.1163/156855407780340340 [1]
      Tuncer, A., & Erzan, A. (2015). Spectral renormalization group for the gaussian model and psi(4) theory on nonspatial networks. Physical Review e, 92(2) doi:10.1103/PhysRevE.92.022106 [1]
      Turp, M. T., Öztürk, T., Türkeş, M. & Kurnaz, M. L. (2014). RegCM4.3.5 Bölgesel i̇klim modelini kullanarak Türkiye ve çevresi bölgelerin yakın gelecekteki hava sıcaklığı ve yağış klimatolojileri i̇çin öngörülen değişikliklerin i̇ncelenmesi, 23(1), 1-24. [1]
      Tüzel, E. & Erzan, A. (2000). Dissipative dynamics and the statistics of energy states of a hookean model for protein folding. Journal of Statistical Physics, 100(1-2), 405-422. doi:10.1023/A:1018616417953 [1]
      Tüzel, E., Kısacıkoǧlu, K. B. & Pekcan, M. Ö. (2002). Monitoring diffusion of reptating polymer chains by a direct energy transfer method: A monte carlo simulation. Macromolecular Theory and Simulations, 11(6), 678-686. doi:10.1002/1521-3919(20020801)11:6<678::AID-MATS678>3.0.CO;2-E [1]
      Tüzel, E., Sevim, V. & Erzan, A. (2001). Evolutionary route to diploidy and sex. Proceedings of the National Academy of Sciences of the United States of America, 98(24), 13774-13777. doi:10.1073/pnas.241105498 [1]
      Tüzel, E., Sevim, V. & Erzan, A. (2001). Strategies for the evolution of sex. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 64(6 i), 061908/1-061908/13. [1]
      Tüzel, E., Sevim, V. & Erzan, A. (2001). Strategies for the evolution of sex. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 64(6), 1-13. doi:10.1103/PhysRevE.64.061908 [1]
      Ugur, Ş., Alemdar, A. & Pekcan, M. Ö. (2005). Films formed from polystyrene latex/clay composites: A fluorescence study. JCT Research, 2(7), 565-575. doi:10.1007/s11998-005-0016-8 [1]
      Uğur, Ş. & Pekcan, M. Ö. (2005). Film formation from pure and mixed latices; transient fluorescence study. Journal of Colloid and Interface Science, 291(2), 405-410. doi:10.1016/j.jcis.2005.05.015 [1]
      Uğur, Ş. & Pekcan, M. Ö. (2005). Percolation approach to film formation from surfactant-free polystyrene particles. Phase Transitions, 78(7-8), 593-606. doi:10.1080/01411590500188967 [1]
      Uğur, Ş. & Pekcan, M. Ö. (2005). Small molecule desorption from a swelling polymeric glass in polymer solution: Energy transfer method. Materials Chemistry and Physics, 92(1), 269-273. doi:10.1016/j.matchemphys.2005.01.029 [1]
      Uğur, Ş. & Pekcan, M. Ö. (2005). Time evolution of film formation from polystyrene particles: A percolation approach. Colloid and Polymer Science, 284(3), 309-316. doi:10.1007/s00396-005-1380-8 [1]
      Uğur, Ş. & Pekcan, M. Ö. (2006). Effects of annealing on morphology of polymer/polymer (PS/PMMA) blend; a fluorescence study. Journal of Applied Polymer Science, 100(3), 2104-2110. doi:10.1002/app.23458 [1]
      Uğur, Ş., Alemdar, A. & Pekcan, M. Ö. (2006). The effect of clay particles on film formation from polystyrene latex. Polymer Composites, 27(3), 299-308. doi:10.1002/pc.20187 [1]
      Uğur, Ş., Elaissari, A. & Pekcan, M. Ö. (2005). Film formation from nano‐sized polystyrene latex particles. Polymers for Advanced Technologies, 16(5), 405-412. doi:10.1002/pat.597 [1]