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Department of Electronics and Informatics, faculty of engineering, Toyama Prefectural University | 論文
- Electrical Conduction by Percolation Process in Insulating Polymer Containing Small Amount of Conducting Polymer
- Numerical Simulations of Films Formed by Cluster/Particle Co-Deposition in Atmospheric-Pressure Chemical Vapor Deposition Process Using Organic SIlicon Vapors and Ozones Gas
- Morphology Control of Films Formed by Atmospheric-Pressure Chemical Vapor Deposition Using Tetraethylorthosilicate/Ozone System
- Film Formation by a New Chemical Vapor Deposition Process Using Ionization of Tetraethylorthosilicate
- Precursors in Atmospheric-Pressure Chemical Vapor Deposition of Silica Films from Tetraethylorthosilicate/Ozone System
- Particle Generation and Film Formation in an Atmospheric-Pressure Chemical Vapor Deposition Reactor Using the Tetraethylorthosilicate (TEOS)/He, TEOS/O_2/He, and TEOS/O_3/He Systems
- Gas-Phase Nucleation in an Atmospheric Pressure Chemical Vapor Deposition Process for SiO_2 Films Using Tetraethylorthosilicate (TEOS)
- Principle of Photoconductive Ferroelectric Memory Preliminary Experiments
- Preparation and Electrical Properties of Rhombohedral Pb(Zr_xTi_)O_3 Thin Films by RF Magnetron Sputtering Method
- Preparation and Electrical Properties of Sol-Gel Derived Zr-rich Pb(Zr,Ti) O_3 Thin Films
- Growth of K_3Li_Nb_O_ Single-Crystal Fibers
- A Fail-Safe Condition for Multiple-Valued Logic Circuits Consisting of AND, OR and NOT Gates
- A Necessary and Sufficient Condition for Kleenean Functions
- Mathematical Foundation on Static Hazards in Multiple-Valued Logic Circuits(Special Section on Papers Selected from ITC-CSCC 2002)
- Mathematical Foundation on Static Hazards in Multiple-Valued Logic Circuits
- Top-Seeded Solution Growth of Pb[(In_Nb_),(Mg_Nb_),Ti]0_3 Single Crystals
- Top-Seeded Solution Growth of Pb[(Zn_Nb_)_Ti_]O_3 Single Crystals
- Preparation and Properties of Niobium-Doped Pb[(Sc_Nb_)_Ti_]O_3 Ceramics Using Hot Isostatic Pressing
- Alignment Technique for Thin-Film-Transistor Liquid-Crystal Displays : Liquid Crystal Display
- Alignment Technique for Thin-Film-Transistor Liquid-Crystal Displays