Toplam kayıt 40, listelenen: 7-26

      Künye Göre
      Aksoy, G. & Öğüt, K. S. (2021). Investigation of the relationship between upstream and on-ramp flows at downstream capacity level on Istanbul freeway merges. Mugla Journal of Science and Technology, 7(1), 73-82. doi:10.22531/muglajsci.855671 [1]
      Alpkokin, P., Black, J. A., Iyinam, S. & Kesten, A. S. (2016). Historical analysis of economic, social and environmental impacts of the europe-asia crossings in istanbul. International Journal of Sustainable Transportation, 10(2), 65-75. doi:10.1080/15568318.2013.853852 [1]
      Aras, F., Akbas, T., Ekşi, H., Çeribaşı, S. (2020). Progressive damage analyses of masonry buildings by dynamic analyses, International Journal Of Civil Engineering, 18(8A), 903-917. doi:10.1007/s40999-020-00508-5 [1]
      Askarinejad, A., Akça, M. D. & Springman, S. M. (2018). Precursors of instability in a natural slope due to rainfall: A full-scale experiment. Landslides, 15(9), 1745-1759. doi:10.1007/s10346-018-0994-0 [1]
      Avşar, E. Ö., Altan, M. O., Doğan, Ü. A. & Akça, D. (2015). Determining pull-out deformations by means of an online photogrammetry monitoring system. International Journal of Environment and Geoinformatics, 2(1), 54-61. doi:10.30897/ijegeo.302758 [1]
      Bayındır, C. & Yurtbak, H. (2021). A split-step Fourier scheme for the dissipative Kundu-Eckhaus equation and its rogue wave dynamics. TWMS Journal of Applied and Engineering Mathematics, 11(1), 56-65. [1]
      Bayındır, C. (2015). Compressive split-step Fourier method. Journal of Applied and Engineering Mathematics, 5(2), 298-306. [1]
      Bayındır, C. (2015). Early detection of rogue waves by the wavelet transforms. Physics Letters, Section A: General, Atomic and Solid State Physics, 380(1-2), 156-161. doi:10.1016/j.physleta.2015.09.051 [1]
      Bayındır, C. (2016). A novel nonlinear frequency modulated chirp signal for synthetic aperture radar and sonar imaging. Journal of Naval Sciences and Engineering, 11(1), 68-81. [1]
      Bayındır, C. (2016). Analytical and numerical aspects of the dissipative nonlinear Schrödinger equation. TWMS Journal of Applied and Engineering Mathematics, 6(1), 135-142. [1]
      Bayındır, C. (2016). Compressive spectral method for the simulation of the nonlinear gravity waves. Scientific Reports, 6, 1-12. doi:10.1038/srep22100 [1]
      Bayındır, C. (2016). Rogue wave spectra of the kundu-eckhaus equation. Physical Review E, 93(6), 1-7. doi:10.1103/PhysRevE.93.062215 [1]
      Bayındır, C. (2016). Rogue waves of the kundu-eckhaus equation in a chaotic wave field. Physical Review e, 93(3) doi:10.1103/PhysRevE.93.032201 [1]
      Bayındır, C. (2017). Rogue wavefunctions due to noisy quantum tunneling potentials. TWMS Journal of Applied and Engineering Mathematics, 7(2), 236-247. [1]
      Bayındır, C. (2018). Compressive spectral renormalization method. Turkish World Mathematical Society Journal of Applied and Engineering Mathematics, 8(2), 425-437. [1]
      Bayındır, C., Abada, A., Abbrescia, M. & AbdusSalam, S. S. (2019). FCC physics opportunities: Future circular collider conceptual design report volume 1. The European Physical Journal C, 79(6), 1-161. doi:10.1140/epjc/s10052-019-6904-3 [1]
      Bayındır, C., Frost, J. D. & Barnes, C. F. (2018). Assessment and enhancement of SAR noncoherent change detection of sea-surface oil spills. IEEE Journal of Oceanic Engineering, 43(1), 211-220. doi:10.1109/JOE.2017.2714818 [1]
      Çakır, F., Acar, V., Aydın, M. R., Akşar, B. & Yıldırım, P. (2021). Strengthening of reinforced concrete beams without transverse reinforcement by using intraply hybrid composites. Case Studies in Construction Materials, 15, 1-21. doi:10.1016/j.cscm.2021.e00700 [1]
      Dadashzadeh, N., Ergün, M., Kesten, S. & Žura, M. (2019). An automatic calibration procedure of driving behaviour parameters in the presence of high bus volume. Promet - traffic&transportation, 31(5), 491-502. doi:10.7307/ptt.v31i5.3100 [1]
      Güllü, A., Smyrou, E., Khajehdehi, A., Özkaynak, H., Bal, İ. E., Yüksel, E., & Karadoğan, H. F. (2019). Numerical modelling of energy dissipative steel cushions. International Journal of Steel Structures, 19(4), 1331-1341. doi:10.1007/s13296-019-00213-7 [1]