Fundamentals of Acoustics¶
Kinsler, L. E., Frey, Coppens, & Sanders, J. V. (2000). Fundamentals of Acoustics. Wiley.
Cited by¶
2 citations across 2 artifacts.
Each citation links to the sentence it supports in the citing article.
Primes¶
- Impedance Mismatch and Coupling Efficiency
- The structural insight is robust: an electrical transmission line, an acoustic boundary, a mechanical drive shaft, and an organizational cadence all exhibit the same mismatch-and-loss logic, a parallelism Kinsler, Frey, Coppens, and Sanders (2000) make explicit when they map acoustic-impedance transmission across media to its electrical-circuit analog.
This sourceFoundational acoustics textbook: explicitly maps acoustic impedance and transmission/reflection at material boundaries onto the electrical-circuit analog, demonstrating cross-substrate transfer of the impedance-mismatch logic.
- The structural insight is robust: an electrical transmission line, an acoustic boundary, a mechanical drive shaft, and an organizational cadence all exhibit the same mismatch-and-loss logic, a parallelism Kinsler, Frey, Coppens, and Sanders (2000) make explicit when they map acoustic-impedance transmission across media to its electrical-circuit analog.
- Signal Decay and Fadeout
- Signal decay is a broader pattern encompassing non-oscillatory weakening (exponential decay of a concentration, geometric attenuation of intensity with distance) as well as oscillatory damping, a distinction Kinsler, Frey, Coppens, and Sanders (2000) develop in the canonical fundamentals-of-acoustics treatment by separating viscous-damping decrements from non-oscillatory absorption losses.
This sourceCanonical acoustics textbook: distinguishes viscous and structural damping (oscillatory energy loss per cycle) from non-oscillatory absorption and geometric spreading losses, clarifying damping as a subset of broader signal-decay phenomena.
- Signal decay is a broader pattern encompassing non-oscillatory weakening (exponential decay of a concentration, geometric attenuation of intensity with distance) as well as oscillatory damping, a distinction Kinsler, Frey, Coppens, and Sanders (2000) develop in the canonical fundamentals-of-acoustics treatment by separating viscous-damping decrements from non-oscillatory absorption losses.
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