by
Hassan, Hassanain Abbas.
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was only observed on the support prepared by absorption method, TiO2/SiO2-ABS. A high dispersion and
by
Yalman, Emir.
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shows that calcium oxide on alumina catalysts having high CaO dispersion, calcined at high temperature
by
Bozkurt, Emrah.
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technique and cured under compression. To intercalate the layers and obtain better dispersion of silicate
by
Işık, Kıvanç.
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organophilic silicates (OMMT). XRD results demonstrated that the dispersion of the modified silicate layers and
by
Ebil, Özgenç.
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clinoptilolite. The incorporation of an ultrasonic treatment of the zeolite dispersion most likely contributed in
by
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
by
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
by
Mutlu, Vahide Nuran author.
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catalyst activity increased by increasing calcination temperature. This was atributed to better dispersion
by
Akın, Okan.
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dispersion level of layered silicates which is in good accordance with structural analyses. Addition of 2%w/w
by
Çelen, Öykü.
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powders were also prepared. The dispersion of these powders especially at high solids loadings was
by
Bostan, Okan, author.
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employed for obtaining the dispersion characteristics of the multilayer structure by considering the
by
Özgümüş, Türküler, author.
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macroscopic transport properties such as permeability and thermal dispersion of the corresponding medium
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