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Department Of Electrical Engineering Osaka University | 論文
- Behavior of Electron Traps in Phosphidized GaAs by Nitrogen Plasma Treatment
- Application of Monte Carlo Simulation to a Structural Analysis for Two-Layered/Substrate System
- Ni-Silicide Formation : Dependence on Crystallographic Orientation of Si Substrates
- High-Pulse-Energy Ultraviolet Ce^ : LiCaAIF_6 Laser Oscillator with Newly Designed Pumping Schemes
- High-Pulse-Energy, All-Solid-State, Ultraviolet Laser Oscillator Using Large Czochralski-Grown Ce:LiCAF Crystal
- K Emission Spectra of Nontransition Elements Dissolved in Noble or Transition Metals : X-RAY EMISSION SPECTROSCOPY
- Fabrication of Diamond Films at Low Pressure and Low-Temperature by Magneto-Active Microwave Plasma Chermical Vapor Deposition ( Plasma Processing)
- Kidney-Alone Transplantation in Diabetic Patients with End-Stage Renal Disease
- Output Feedback Control of Multirate Sampled Systems with an Adaptive Output Estimator and Its Application to a Liquid Level Process Control
- Detection of mRNA of Kinesin Superfamily 3A in the Cerebrum and Cerebellum : Biotin-Tyramine-Catalyzed Signal Amplification for In Situ Hybridization
- Current Injection Control Scheme of Voltage Sag Compensation by Parallel Type Compensator with Series Inductor
- Standby Mode Operation of Series Type SMES for Voltage Sag Compensation (特集:平成17年〔電気学会〕電力・エネルギー部門大会)
- Simultaneous Measurement of Thickness and Water Content of Thin Black Ink Films for the Printing Using THz Radiation : Optics and Quantum Electronics
- THz-Radiation Emitter and Receiver System Based on a 2 T Permanent Magnet, 1040 nm Compact Fiber Laser and Pyroelectric Thermal Receiver : Optics and Quantum
- Enhanced THz Radiation from Femtosecond Laser Pulse Irradiated InAs Clean Surface
- Precursor Observed in a Pressure Driven Shock Wave
- The Ionizational Relaxation behind Shock Front in Argon
- The Ionizational Relaxation behind Shock Front in Argon
- A New Bessel-Box Energy Analyzer for Sputtered Neutral Mass Spectrometry
- New Potential of a Direct Laser-Diode-Pumped Yb:YAG Laser