Arama Sonuçlarını Sınırlandır
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Önder, Anıl Can, author.
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Optimizing the dispersion of ceramic nanoparticles and assessing the role of aggregation in
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Akyol, Çağrı Gökhan, author.
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Semi-analytical finite element modeling for dispersion analysis of multilayered structures / Akyol
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Çelik, Hasan, author.
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dispersion conductivity of a periodic porous medium under mixed convection heat transfer / Çelik, Hasan
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Şen, Didem.
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Kinetics of oil dispersion in the presence of chitosan based biopolymers/ Şen, Didem.
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Yeke, Melisa, author.
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dispersion of rGO were analyzed by SEM. The thermal properties of nanofibers were analyzed by DSC. The
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Yörük, Burak, author.
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autonomously at a fixed altitude and prevent unwanted pesticide dispersion in undesirable rows. The thesis
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Yüksel, Seda Sultan, author.
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Pa.s-1 and this dispersion had the lowest conductivity. A series of inks with different graphite to
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Uz, Yusuf Can, author.
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investigated to develop innovative materials for primary structures. To affect dispersion characteristics
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Okcu, Emre, author.
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, artificial graphene has Dirac cones in energy dispersion. However, graphene has 1.42 °A carbon to carbon atom
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Yıldırım, Barış, author.
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. The IL microemulsions are a thermodynamically stable colloidal dispersion containing spherical
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Özen, Sercan, author.
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thickness is revealed by electronic band dispersion calculations.
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Canbolat, Ahmet Utku, author.
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dispersion. An energy dispersion is said to be quartic if it is of the form E = α(k² - kc² )². Here, α and kc
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