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Topik Penelitian Simulasi Komputer Berbagai Model Sistem Mikro/Nano


Berikut ini adalah beberapa contoh topik penelitian dan judul skripsi/tesis/disertasi dengan pemodelan matematis dan pembuatan software simulasi komputer untuk berbagai model sistem mikro/nano terutama pada bidang studi Teknik Material, Biofisika, Fisika Partikel dan Matematika Terapan :  
  • AGORITMA PEMODELAN PERKOLASI MEKANISME PEMERHASIL NOISE PADA RANDOM TELEGRAPH SIGNAL (RTS) MELALUI METAL-OXIDE-SEMICONDUCTOR FIELD-EFFECT TRANSISTOR (MOSFET)
  • PEMODELAN PERKOLASI SISTEM FIBER POLIMER PADA ASPECT RATIO TINGGI MELALUI SIMULASI MONTE CARLO 
  • SIMULASI MONTE CARLO 3 DIMENSI UNTUK MODEL PERKOLASI KONDUKTIF PADA CARBON NANOFIBER COMPISITE 
  • SIMULASI MONTE CARLO MODEL CONTINUUM PERCOLATION THRESHOLD PADA OBJEK BERBENTUK BOLA DAN SPHEROCYLINDER DENGAN BERBAGAI UKURAN 
  • PEMODELAN PERKOLASI KONDUKTIF DAN SIMULASI MONTE CARLO PADA NANOCOMPOSITE MELALUI TEORI PENSKALAAN BERHINGGA 
  • ALGORITMA CEPAT PEMODELAN PERKOLASI PADA IKATAN KISI-KISI TAK BERATURAN MELALUI RANDOM GRAPH 
  • EXPERIMENTAL STUDY ON THE INFLUENCE OF PERCOLATION PATTERNS ON THE REMOVAL OF SOLUBLE ELEMENTS IN STRATIFIED SITES 
  • DETERMINISTIC AND PROBABILISTIC TRACTOGRAPHY BASED ON COMPLEX FIBRE ORIENTATION DISTRIBUTIONS 
  • SIMULATION AND EXPERIMENTAL VERIFICATION OF THE DIFFUSION IN AN ANISOTROPIC FIBER 
  • MODELLING OF SELF-DIFFUSION AND RELAXATION TIME NMR IN MULTICOMPARTMENT SYSTEMS WITH CYLINDRICAL GEOMETRY 
  • RESOLVING CROSSING FIBRES USING CONSTRAINED SPHERICAL DECONVOLUTION 
  • GEOMETRICAL PROPERTIES OF GEL AND FLUID CLUSTERS IN DMPC/DSPC BILAYERS : MONTE CARLO SIMULATION APPROACH USING A TWO-STATE MODEL 
  • MONTE CARLO SIMULATION OF TWO-COMPONENT BILAYERS : DMPC/DSPC MIXTURES  
  • TIME-DEPENDENT DIFFUSION OF WATER IN A BIOLOGICAL MODEL SYSTEM 
  • MONTE CARLO LATTICE SIMULATION STUDY OF CHROMOSOME DYNAMICS, MOLECULAR CROWDING, AND DIFFUSION IN THE INTERPHASE CELL NUCLEUS 
  • THE SPATIAL MAPPING OF TRANSLATIONAL DIFFUSION COEFFICIENTS BY THE NMR IMAGING TECHNIQUE 
  • QUANTIFYING GRAPH-THEORETIC IMPACT OF NODES DURING PERCOLATION IN NETWORKS 
  • MODELING LUMBER MANUFACTURING PROCESSES USING MONTE CARLO COMPUTER SIMULATION 
  • MONTE CARLO SIMULATIONS OF ENZYME REACTIONS IN TWO DIMENSIONS : FRACTAL KINETICS AND SPATIAL SEGREGATION 
  • PERCOLATION MODEL OF NEURAL MORPHOMETRY AND CONNECTIVITY 
  • INVESTIGATING THE MECHANISM OF PEPTIDE AGGREGATION: INSIGHTS FROM MIXED MONTE CARLO-MOLECULAR DYNAMICS SIMULATIONS 
  • MODEL PERCOLATION SIMULATION OF STICKY NANOTUBES 
  • PERCOLATION STUDY OF NANO-COMPOSITE CONDUCTIVITY USING MONTE CARLO SIMULATION  
  • COMPUTER SIMULATION OF THE 30-NANOMETER CHROMATIN FIBER 
  • PERCOLATION IN RANDOM NETWORKS OF HETEROGENEOUS NANOTUBES 
  • MOLECULAR SIZE DISTRIBUTION IN THREE DIMENSIONAL POLYMERS 
  • MONTE CARLO SIMULATION FOR DIFFUSION MAGNETIC RESONANCE IMAGING 
  • RECONSIDERATION OF CONTINUUM PERCOLATION OF ISOTROPICALLY ORIENTED STICKS IN THREE DIMENSIONS  
  • MONTE CARLO SIMULATIONS OF ISOTROPIC-NEMATIC TRANSITION AND COMPARISONS WITH VIRIAL EXPANSION OF SOFT-CORE SPHEROCYLINDERS  
  • VORONOI-DELAUNAY ANALYSIS OF VOIDS IN SYSTEMS OF NONSPHERICAL PARTICLES 
  • MORPHOLOGY OF VOIDS IN MOLECULAR SYSTEMS : A VORONOI-DELAUNAY ANALYSIS OF A SIMULATED DMPC MEMBRANE 
  • 3D SIMULATION OF PACKED PARTICLE BED AND TRANSPORT PROPERTIES PREDICTION FOR PRODUCT OPTIMIZATION THROUGH VIRTUAL EXPERIMENTS  
  • SURFACE CRITICAL PHENOMENA IN THREE-DIMENSIONAL PERCOLATION 
  • MODELLING OF INSULATOR-CONDUCTOR TRANSITION IN POLYMER NANOCOMPOSITES 
  • SCALING LAWS AND MESOSCOPIC MODELING OF THERMAL CONDUCTIVITY IN CARBON NANOTUBE MATERIALS 
  • DISORDERED, QUASICRYSTALLINE AND CRYSTALLINE PHASES OF DENSELY PACKED TETRAHEDRA 
  • MONTE CARLO AND MEAN-FELD STUDIES OF PHASE EVOLUTION IN CONCENTRATED SURFACTANT SOLUTIONS 
  • PERCOLATIVE PROPERTIES OF HARD OBLATE ELLIPSOIDS OF REVOLUTION WITH A SOFT SHELL 
  • MORPHOLOGICAL CHARACTERIZATION AND MODELLING OF ELECTRICAL CONDUCTIVITY OF MULTI-WALLED CARBON NANOTUBE / POLY(P-PHENYLENE SULFIDE) NANOCOMPOSITES OBTAINED BY TWIN SCREW EXTRUSION 
  • GRANULAR FLOW SIMULATIONS AND EXPERIMENTS FOR THE FOOD INDUSTRY 
  • RANDOM WALK BASED STOCHASTIC MODELING OF 3D FIBER SYSTEMS 
  • IMAGING PERCOLATION DURING CORE FORMATION BY HIGH-RESOLUTION 3D TOMOGRAPHY 
  • STATISTICAL ANALYSIS AND VISUALIZATION OF PERCOLATION AND ANISOTROPIC PERMEABILITY IN 3D MICRO-TOMOGRAPHIC MODEL 
  • PORE-SCALE MODELING DEVELOPMENTS OF MICROCOSMIC PERCOLATION IN POROUS MEDIA 
  • MORPHOMETRY AND PHYSICS OF PARTICULATE AND POROUS MEDIA  
  • DYNAMICS OF DRYING IN 3D POROUS MEDIA
  • IONIZATION-CLUSTER DISTRIBUTIONS OF ALPHA-PARTICLES IN NANOMETRIC VOLUMES OF PROPANE 
  • CONTINUUM PERCOLATION OF ISOTROPICALLY ORIENTED STICKS IN 3D 
  • LOCALLY ANISOTROPIC MOTION IN A MACROSCOPICALLY ISOTROPIC SYSTEM 
  • ANALYTICAL APPROXIMATION OF THE TWO-DIMENSIONAL PERCOLATION THRESHOLD FOR FIELDS OF OVERLAPPING ELLIPSES 
  • MODELLING MICROSTRUCTURE EFFECTS ON THE CONDUCTION IN FIBROUS MATERIALS WITH FIBRE–FIBRE INTERFACE BARRIERS  
  • COMPUTATIONAL ANALYSIS OF THE PERCOLATION THRESHOLD AND THE ELECTRICAL CONDUCTIVITY OF CARBON NANOTUBES FILLED POLYMERIC MATERIALS 
  • EXPERIMENTAL AND COMPUTATIONAL ANALYSIS OF RANDOM CYLINDER PACKINGS
  • COMPUTER SIMULATION STUDY OF PERCOLATION IN A RANDOM NETWORK OF CONDUCTING NANOTUBES