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Yavaş, Begüm, author.
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Semiconductors.
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Keskin, Yasemin, author.
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Semiconductors.
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Kaya, Birnur, author.
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Semiconductors -- Surfaces.
by
Akdaş, Deniz.
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Amorphous semiconductors
by
Tuna, Öcal.
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Alıntı:
Metal oxide semiconductors.
by
Kyaligonza, Sylevaster, author.
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Semiconductors.
by
Özben, Eylem Durğun
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Alıntı:
Metal oxide semiconductors.
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Özdağ, Pınar.
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Metal oxide semiconductors
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Polat, Mustafa, author.
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Gallium arsenide semiconductors -- Testing
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Yanılmaz, Alper, author.
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Semiconductors.
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Şeker, Mavişe.
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Organic semiconductors.
12.
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Göl, Emre Yusuf, author.
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Semiconductors
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Aydın, Hasan.
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Organic semiconductors.
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Yağmurcukardeş, Nesli.
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Metal oxide semiconductors.
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Ekmekçioğlu, Merve, author.
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Organic semiconductors.
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Şahan, Nusret, author.
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different semiconductors.
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Mayda, Selma.
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of semiconductors which contain a transition metal impurity and considers the onsite Coulomb
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Başkurt, Mehmet, author.
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materials with characteristics of metals, semiconductors, insulators, and their magnetic analogues have been
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Kahraman, Zeynep, author.
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band gap semiconductors as their binary analogs, their Raman spectra show distinctive features that
by
İbrahim, Alnazir, author.
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makes it different when compare to the ordinary semiconductors. Since the interest in graphene increases
by
Bacaksız, Cihan.
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combinations of semiconductors were considered in the core/shell/shell structure. The multilayer quantum dot
22.
by
Yayak, Yankı Öncü, author.
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investigated. Electronic band dispersions revealed that all four stackings are direct band gap semiconductors
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Okcu, Emre, author.
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artificial graphene valuable material. It can be engineered by lasers, molecules, and semiconductors
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Günnar, Merve, author.
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. Studies have been focusing on semiconductors which are Gallium Arsenide (GaAs), Silicon (Si) and Germanium
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Kahraman, Zeynep, author.
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In this study, tungsten oxide nanostructures, which are n-type semiconductors with a band gap
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