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Department of Polymer Materials Engineering, Faculty of Engineering, Yamagata University | 論文
- Application of Piezoelectric Film of Vinylidene Fluoride-Trifluoroethylene Copolymer to a Highly Sensitive Miniature Hydrophone : Ultrasonic Transduction
- Short Pulse Response of UltrasonicTransducer Mode of Piezoelectric Copolymer Films of Vinylidene Fluoride-Trifluoroethylene : Ultrasonic Transduction
- Wide-band Multi-layer Ultrasonic Transducers Made of Piezoelectric Films of Vinylidene Fluoride-Trifluoroethylene Copolymer : Ultrasonic Transduction
- Mechanical Relaxations and Transitions in Polytetrafluoroethylene
- Anisotropy in Mechanical Relaxations in Uniaxially Oriented Polymers
- Effect of Cell Window Birefringence in Dynamic Electric Birefringence Measurement
- A New Method of Dynamic Electric Birefringence Measurement Using a Sinusoidal Digital Lock-In System
- Recent Development in Measuring Techniques of Ultrasonic Velocity and Absorption
- Acoustic Relaxations in Toluene and Alcohols in the Frequency Range of 10 to 300 kHz Measured by the Resonance Reverberation Method
- Dielectric Relaxations in Polyoxymethylene and Polyethylene Oxide
- Rheololgical Properties of Asphalt Manufactured from Petroleum Oils of Different Origins
- Viscoelastic Behavior of Copolymers of Methyl Methacrylate and n-Butyl Methacrylate and Glass Polishing by Use of Them
- Non-Ohmic Conduction in Vacuum-Deposited SiO Films
- Measurement of Low Frequency Adiabatic Compressibility of Liquids : Physical Acoustics
- Measurement of Complex Adiabatic Compressibility of Liquids in the Low Frequency Range : Physical Acoustics
- Measurement of Adibatic Temperature change in a Liquid Induced by Periodic Pressure Variation : Physical Acoustics
- Universality in Critical Anomaly of Acoustic Properties of Binary Mixtures : Physical Acoustics
- Sound Velocity in Critical Binary Mixtures : Physical Acoustics
- New Instrument for Rapid and Accurate Measurement of Ultrasonic Velocity and Attenuation Using a Minicomputer System
- Resonance Reverberation Method for Ultrasonic Measurement of Liquids from 10 to 300 Kilocycles