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84939338815
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Electromechanical Filter Consisting of a Disc Vibrator with Double Resonance in Radial and Bending Modes and Differential Type Filter Consisting of Two Disc Vibrators with Single Resonance
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Japan
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M. Konno and Y. Tomikawa, “Electromechanical Filter Consisting of a Disc Vibrator with Double Resonance in Radial and Bending Modes and Differential Type Filter Consisting of Two Disc Vibrators with Single Resonance,” J.A.S., Japan, 24, 3 (1968) p. 143–150.
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Analysis of Characteristics of Multi-Mode Resonators Vibrating in Longitudinal and Flexural Modes
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Japan
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Analysis of Piezoelectric Multiple Mode Resonators Vibrating in Longitudinal and Flexural Modes
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Japan
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H. Jumonji and M. Onoe, “Analysis of Piezoelectric Multiple Mode Resonators Vibrating in Longitudinal and Flexural Modes,” J.E.C.E., Japan, 51-A, 3 (1968), p. 110–117.
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Finite-Difference Method for the Investigation of the Vibration of Solids and the Evaluation of the Equivalent-Circuit Characteristics of Piezoelectric Resonators I, II
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P. Lloyd and M. Redwood, “Finite-Difference Method for the Investigation of the Vibration of Solids and the Evaluation of the Equivalent-Circuit Characteristics of Piezoelectric Resonators I, II,” Jour. Acoust. Soc. Am., 39, 2 (1966) p. 346–361.
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Finite Element Analysis of Flexure-Type Vibrators with Electrostrictive Transducers
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Application of a Finite Element Method of Vibration Problems in which Electrical and Mechanical Systems are Coupled—An Analysis of Flexure Type Vibrators with Electrostrictive Transducers
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Japan
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Y. Kagawa and G. M. L. Gladwell, “Application of a Finite Element Method of Vibration Problems in which Electrical and Mechanical Systems are Coupled—An Analysis of Flexure Type Vibrators with Electrostrictive Transducers,” J.A.S., Japan 26, 3 (1970) p. 117.
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Analysis and Design of Electromechanical Filters by Finite Element Technique
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Japan
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Y. Kagawa, “Analysis and Design of Electromechanical Filters by Finite Element Technique,” J.A.S., Japan, 27, 4 (1971) p. 201.
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A New Approach to Analysis and Design of Electromechanical Filters by Finite Element Technique
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Y. Kagawa, “A New Approach to Analysis and Design of Electromechanical Filters by Finite Element Technique,” J. Acoust. Soc. Am. 49. 5 (part 1) (1971) p. 1348.
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Finite Element Method in Two-Dimensional Electromechanical Vibrator
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Acoust. Soc., Japan
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T. Yamabuchi and Y. Kagawa, “Finite Element Method in Two-Dimensional Electromechanical Vibrator,” Rep. 1973 Spring Meeting, Acoust. Soc., Japan, 2-4-5, p. 299.
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Finite Element Calculation of Two-Dimensional Electromechanical Resonators
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Acoust. Soc., Japan
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T. Yamabuchi and Y. Kagawa, “Finite Element Calculation of Two-Dimensional Electromechanical Resonators,” Rep. 1973 Autumn Meeting, Acoust. Soc., Japan, 2-1-5, p. 249.
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Matrix Method in Vibrations and Responses
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I-4-B Baihukan
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T. Kawai, “Matrix Method in Vibrations and Responses,” Computer Structural Engineering Series, 1-4-B Baihukan (1971).
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Design of Resonant Piezoelectric Devices
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The Finite Element Method in Structual and Continuum Mechanics
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McGraw-Hill
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A General High-Order Finite-Element Waveguide Analysis Program
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84939333623
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On the Application of the Finite Element Method to the Vibration Analysis of Space Plate Structures
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Y. Nakao, N. Sasaki, F. Kado, and M. Kawashima, “On the Application of the Finite Element Method to the Vibration Analysis of Space Plate Structures,” J. Mitsubishi Heavy Ind., 9, 6 (1972), p. 767.
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84939318748
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Application of the Finite Element Technique to Trapped Energy Resonators
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Acoust. Soc., Japan
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H. Arai, T. Yamabuchi and Y. Kagawa, “Application of the Finite Element Technique to Trapped Energy Resonators,” Rep. 1973 Autumn Meeting, Acoust. Soc., Japan, 2-1-4, p. 247.
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Arai, H.1
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19
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84939389587
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Finite Element Technique in Two-Dimensional Electromechanical Resonators with Electric Field Distribution Undetermined
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Acoust, Soc., Japan
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T. Yamabuchi and Y. Kagawa, “Finite Element Technique in Two-Dimensional Electromechanical Resonators with Electric Field Distribution Undetermined,” Rep. 1973 Autumn Meeting, Acoust, Soc., Japan, 2-1-6, p. 251.
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