The Theory of Sound¶
Rayleigh, L. (1894). The Theory of Sound.
Cited by¶
5 citations across 5 artifacts.
Each citation links to the sentence it supports in the citing article.
Primes¶
- Damping
- radiation damping
This sourceComprehensive classical treatment of vibration, forced oscillation, damping, resonance curves, and acoustic radiation.
- radiation damping
- Oscillation
- Lord Rayleigh's 1894 comprehensive treatment
This sourceComprehensive classical treatment of mechanical and acoustic resonance; covers forced vibrations, damping, resonance curves, Q factors, and multi-modal systems; establishes the mathematical theory of resonance in mechanical and acoustic systems as the foundation for all resonance analysis.
- Lord Rayleigh's 1894 comprehensive treatment
- Perturbation Theory
This sourceComprehensive classical treatment of mechanical and acoustic resonance; covers forced vibrations, damping, resonance curves, Q factors, and multi-modal systems; establishes the mathematical theory of resonance in mechanical and acoustic systems as the foundation for all resonance analysis.
- Resonance
- The mathematical framework for understanding this frequency response was systematized by
This sourceComprehensive classical treatment of mechanical and acoustic resonance; covers forced vibrations, damping, resonance curves, Q factors, and multi-modal systems; establishes the mathematical theory of resonance in mechanical and acoustic systems as the foundation for all resonance analysis.
- The mathematical framework for understanding this frequency response was systematized by
- Wave
- The classical theory of mechanical wave propagation in solids was comprehensively developed by Lord Rayleigh in 1894
This sourceComprehensive classical treatment of mechanical and acoustic resonance; covers forced vibrations, damping, resonance curves, Q factors, and multi-modal systems; establishes the mathematical theory of resonance in mechanical and acoustic systems as the foundation for all resonance analysis.
- The classical theory of mechanical wave propagation in solids was comprehensively developed by Lord Rayleigh in 1894
Verification¶
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