by
Karamanoğlu, Yılmaz.
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of the surface roughness is also investigated and the problem is solved for four different roughness
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Şirvanlıoğlu, Berna, author.
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roughness increased with pure and plasticized PLA with diatom application. Surface wettability and water
by
Ceyhan, Eray, author.
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examined the effect on the surface roughness change by adjusting the DMF and DMSO ratios. Finally, we
by
Demiray, Levent, author.
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microscopy is used. Mechanical vibrations increased cell surface height, cell surface roughness and nucleus
by
Yaşar Mahlıçlı, Filiz.
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hydrophilicity, surface charge and roughness upon immobilization of the biomolecules. The modification methods
by
Özcan, Selçuk.
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SEM/EDX, AFM, XRD, and FTIR, and their surface roughness, Vickers hardness and adhesion strength were
by
Öztürk, Serdar.
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showed that surface roughness on glass substrates was decreased by firstly chrome coating and then silver
by
Tamburacı, Sedef, author.
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incorporation increased the surface roughness. Chitosansilica composites exhibited 82-90% porosity. Wet
by
Günnar, Merve, author.
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(SE). The properties of CdTe films such as thickness, surface roughness and optical constants were
by
Özçeri, Elif.
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significantly. However, sole Cr adhesive layer or Cr/Al2O3 buffer layers did not reduce the surface roughness
by
Türkan, Uğur.
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surface and inside the pores, while nitric acid treatment did not affect the surface roughness; it
by
Vahaplar, Kadir
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multilayers grew uniform, continuous and with very low surface roughness. The magnetic properties of the films
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