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Tokushima University | 論文
- ❲4❳ 進行性筋ヂストロフィーのリハビリテーション(第2回 日本リハビリテーション医学会)
- Transport Property of Electrons in Gases under Electric Field 1.Lateral Diffusion Coefficient
- Durability of Affordable Neural Networks against Damaging Neurons
- Effectiveness of High-Pressure Synthesis of Bulk High-Temperature Superconductors of Hg-Ba-Ca-Cu-O System
- Theory of FTI Method for the Analysis of Electron and Ion Transport Properties
- Retrospective Survey of Endovascular Treatment for Ruptured Intracranial Aneurysm in Japan : Retrospective Endovascular Subarachnoid Aneurysm Treatment (RESAT) Study
- Novel Analyses of Ion Transport Properties with the FTI Method
- Boltzmann Equation Analyses for the Relaxation of Velocity Distribution of Neutrals with the Transient FTI Method
- Characterization of High-T_c Superconductors by High-Resolution and Analytical Electron Microscopy : I-B Crystal Structures : I. Oxide Superconductors, Experiments I : Material Syntheses and Crystal Structures
- Electron Energy Loss Spectroscopy on Oxygen K-Edge Fine Structure of YBa_2Cu_3O_y Containing Dopants (La, Ca, Co)
- Oxygen K-Edge Fine Structure of Tl_1Ba_2Ca_Cu_nO_ Studied by Electron Energy Loss Spectroscopy
- A Pipelined Architecture for Normalized LMS Adaptive Digital Filters (Special Section on VLSI for Digital Signal Processing)
- Pipelined Architecture of the LMS Adaptive Digital Filter with the Minimum Output Latency(Special Section on Digital Signal Processing)
- Virtual Drift Velocity of Electrons (Condensed Matter : Structure, Mechanical and Thermal Properties)
- Variation of Ion Transport Properties under Electric Field with Mass Ratios
- Variation of Reduced Mobilities of Ions in Gases under 12-4 Potentials
- Ion Transport Properties in Model Gases Based on A・r^ Type Single Potentials
- Trajectory Analyses of Electron Transport Properties under Anisotropy in Elastic and Inelastic Scatterings
- Validity of Pseudo-Isotropic Analysis of Electron Transport Using the Momentum Transfer Cross Section
- Novel Method for Ion Drift Velocity Measurement Using Frequency Response Analysis