Anadolu Info Package Anadolu Info Package
  • Info on the Institution
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Profile of the Programme Specific Admission Requirements Qualification Requirements and Regulations Recognition of Prior Learning Educational Staff Programme Director & ECTS Coord. Field Qualifications Key Learning Outcomes Course Structure Diagram with Credits Matrix of Program Outcomes&Field Qualifications Matrix of Course& Program Qualifications Examination Regulations, Assessment and Grading Graduation Requirements Access to Further Studies Occupational Profiles of Graduates
  • Course Structure Diagram with Credits
  • Surface and Thermal Analysis Methods
  • Learning Outcomes
  • Description
  • Content
  • Learning Outcomes
  • Learning Activities and Teaching Methods
  • Course's Contribution to Prog.
  • Assessment Methods

  • realize experimentally processes of total surface area measurement and pore characterization of a porous solid sample with Gas Sorption Analyzer.
  • explains the theories about BET surface area, total pore volume, average pore radius, pore size distribution, and micropore analysis.
  • defines the solid materials with respect to their pore characters.
  • recognizes the adsorption isotherms.
  • realizes experimentally its “degas” process before analysis of a sample.
  • realize experimentally the processes of hydrodynamic size measurement, zeta potential measurement, and molecular weight measurement of proteins, polymers, and nanoparticles using Particle Size/Molecular Weight/Zeta Potential Analyzer.
  • defines the concepts such as Dynamic Light Scattering (DLS), Brownian motion, Static Light Scattering (SLS), Rayleigh scattering, electrophoretic mobility, zeta potential, isoelectric point, electrical double layer, Stern layer, electrophoresis, Henry equation, Smoluchowski approximation.
  • express the other applications of Particle Size/Zeta Potential Analyzer.
  • organize both theorically and practically the processes of Thermogravimetric Analysis, Differential Thermogravimetric Analysis, and Differential Scanning Calorimetric Analysis concerned with a sample.
  • defines the fundamental concepts about Thermogravimetry, Differential Thermal Analysis, and Differential Scanning Calorimetry.
  • interprets related thermograms.
  • identify topographic three dimensional images of surface of solid sample using Atomic Force Microscope (AFM).
  • translates basically theoric knowledge about Atomic Force Microscopy.
  • expresses primary applications of Atomic Force Microscopy.

  • Info on the Institution
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  • General Description
  • List of Programmes Offered
  • General Admission Requirements
  • Recognition of Prior Learning
  • Registration Procedures
  • ECTS Credit Allocation
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  • Info on Degree Programmes
  • Doctorate Degree / Proficieny in Arts
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