تخطي إلى التنقل الرئيسي
تخطي إلى البحث
تخطي إلى المحتوى الرئيسي
الصفحة الرئيسية
المساعدة والأسئلة الشائعة
English
עברית
العربية
الصفحة الرئيسية
الملفات الشخصية
الوحدات البحثية
نتاج البحث
الجوائز
أنشطة
البحث حسب الخبرة أو الاسم أو الانتماء
عرض الملف الشخصي الخاص بـ Scopus
סבטלנה לוגובסקוי
Dr.
Senior Lecturer / Assistant Professor
,
Department of Chemical Engineering
https://orcid.org/0000-0001-7984-8212
2003
2024
نتاج الأبحاث سنويًا
معاينة
بصمة
الشبكة
نتاج البحث
(21)
ملفات شخصية مماثلة
(6)
بصمة
تأتي تسميات الموضوعات هذه من أعمال هذا الشخص. فهما يشكلان معًا بصمة فريدة.
فرز حسب
الوزن
أبجديًا
Keyphrases
Hydroxyapatite
100%
Plasma Electrolytic Oxidation
55%
Hydrothermal Treatment
30%
Humic Acid
29%
Mechanochemical Synthesis
29%
Carbon Felt
29%
Biopolymers
29%
Oxidation Mechanism
29%
Cyclohexane
29%
Mechanochemical
24%
Oxide Layer
23%
Mechanical Activation
22%
Osseointegration
20%
Ti-6Al-4V Alloy
19%
Rutile
19%
Dental Implants
18%
Salicylic Acid
18%
Olive Oil
18%
Ti-6Al-4V (Ti64)
18%
Pyrrolidine
18%
Calcium Glycerophosphate
18%
Brown Coal
17%
Talc
17%
Titanium Alloy
16%
Ligand Substitution
16%
Ball to Powder Ratio
16%
Commercially Pure Titanium (CP-Ti)
16%
Electrical Conductivity
15%
Water Treatment Plant
14%
Lignocellulosic By-products
14%
Biofuel Production
14%
Transient Species
14%
Pyrrole
14%
Titania Nanotubes
14%
Morphological Properties
14%
Hydrothermal Processing
14%
Surface Type
14%
Antimicrobial Properties
14%
Implant Osseointegration
14%
High-energy Ball-milling Method
14%
Hydraulic Properties
14%
Taguchi Method
14%
High-energy Ball Milling
14%
Hydroxyapatite Layer
14%
Dielectric Liquids
14%
Electric Properties
14%
Theoretical Description
14%
Three-component Solution
14%
Infrared Absorption Spectroscopy
14%
Copolymer
14%
Material Science
Surface (Surface Science)
80%
Oxidation Reaction
54%
Oxide Compound
41%
Mechanochemical Synthesis
29%
Carbon Fiber
29%
Titanium Dioxide
27%
Hydrothermal Synthesis
27%
Dental Prosthesis
21%
Nanotube
18%
Titanium
18%
Titanium Alloy
16%
X-Ray Spectroscopy
14%
Surface Property
14%
Surface Type
14%
Taguchi Method
14%
Silicate
14%
Dielectric Liquids
14%
Zirconia
14%
Ti-6Al-4V
14%
Lignin
14%
Copolymer
14%
Hydraulics
14%
Titanium Oxide
14%
Aluminum Nitride
14%
Signal-to-Noise Ratio
14%
Crystallite Size
14%
Biopolymer
14%
Composite Material
14%
Lignite
14%
X-Ray Diffraction
13%
Corrosion
12%
Contact Angle
12%
Fourier Transform Infrared Spectroscopy
12%
Scanning Electron Microscopy
11%
Electrical Conductivity
9%
Density
7%
Crystal Growth
6%
Hydrogen Bonding
6%
Phase Composition
5%
Corrosion Resistance
5%
Engineering
Nanotube
29%
High-Energy Ball Milling
29%
Implant
29%
FTIR Spectroscopy
17%
Corrosion Study
16%
Corrosion Resistance
16%
Mathematical Modeling
14%
Anodization
14%
Chemical Characterization
14%
Physical Characterization
14%
Lignite
14%
Hydraulics
14%
Growth Kinetics
14%
Dielectrics
14%
Growth Velocity
14%
Taguchi Method
14%
Active Site
14%
Surface Corrosion
14%
Etherification
14%
Biofuel
14%
Nanomaterial
14%
Electrical Conductivity
14%
Biopolymer
14%
Lignocellulosics
14%
Hydrodynamics
9%
Ethanol Production
9%
Speed Milling
8%
Surface Wettability
8%
Oxide Layer
7%
Corrosion Behavior
7%
Exposure Time
7%
Impact Angle
7%
Impact Velocity
7%
Rotation Speed
7%
Corrosion Property
7%
X-Ray Diffraction Analysis
7%
Phase Composition
7%
Ray Diffraction
7%
Hydrothermal Synthesis
5%
Signal-to-Noise Ratio
5%
Crystallite Size
5%