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3929 Publications
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  • Determination of octanol-air partition coefficients and supercooled liquid vapor pressures of PAHs as a function of temperature: Application to gas-particle partitioning in an urban atmosphere

    Odabaşı, Mustafa; Çetin, Eylem; Sofuoğlu, Aysun (2006)
    Octanol-air partition coefficients (KOA) for 14 polycyclic aromatic hydrocarbons (PAHs) were determined as a function of temperature using the gas chromatographic retention time method. log KOA values at 25° ranged over six orders of magnitude, between 6.34 (acenaphthylene) and 12.59 (dibenz[a,h]anthracene). The determined KOA values were within factor of 0.7 (dibenz[a,h]anthracene) to 15.1 (benz[a]anthracene) of values calculated as the ratio of octanol-water partition coefficient to dimensi...

    Visible photon emission from defects in hexagonal boron nitride flakes

    Fırat, Volkan (2017)
    Thesis (Master)--İzmir Institute of Technology, Physics, İzmir, 2017

    2-D analysis of Ge implanted SiO2 surfaces by laser-induced breakdown spectroscopy

    Yalçın, Şerife; Örer, Sabiha; Turan, Raşit (2008)
    2-D elemental distribution of Ge in silicon oxide substrates with differing implantation doses of between 3 × 1016 cm- 2 and 1.5 × 1017 cm- 2 has been investigated by Laser-Induced Breakdown Spectroscopy (LIBS). Spectral emission intensity has been optimized with respect to time, crater size, ablation depth and laser energy. Atomic Force Microscopy (AFM) and Scanning Electron Microscopy (SEM) coupled with Energy-Dispersive X-Ray Spectroscopy (EDX) have been utilized to obtain crater depth, mo...

    Real-time PCR as a molecular tool for the enumeration of probiotics in commercial products

    Öz, Ödül (2016)
    Thesis (Master)--İzmir Institute of Technology, Biotechnology, İzmir, 2016

    Fully developed forced convection in a parallel plate channel with a centered porous layer

    Çekmer, Özgür; Mobedi, Moghtada; Özerdem, Barış; Pop, Ioan (2012)
    In this study, fully developed heat and fluid flow in a parallel plate channel partially filled with porous layer is analyzed both analytically and numerically. The porous layer is located at the center of the channel and uniform heat flux is applied at the walls. The heat and fluid flow equations for clear fluid and porous regions are separately solved. Continues shear stress and heat flux conditions at the interface are used to determine the interface velocity and temperature. The velocity ...
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