The physics of sound
This book incorporates the developments in digital audio technology, including consumer products, into a firm foundation of the physics of sound. No knowledge of physics, mathematics, or music is required. Includes updated information on musical synthesizers. Provides recent information on the ear, including new advances in cochlear implant technology. Updates material for modern technology, particularly MP3. Features abundant examples, including discussion of demonstration experiments. Includes historical discussion of musical temperaments and instruments. Offers videotapes of musical demonstrations on topics discussed in the book, available from author. A useful reference for musicians or anyone interested in learning more about the physics of music.
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Waves and Sound
Standing Waves and the Overtone Series
Analysis and Synthesis of Complex Waves
10 other sections not shown
acoustical additional amplifier amplitude antinode audio baroque bass bell brass instruments changes clarinet compact disc complex wave components disc discussed effect electrical electronic equal equal-tempered scale fifth Figure filter flute formant Fourier spectrum frequency ratio fundamental frequency graph half-step harmonics hearing Helmholtz resonator intensity intonation keyboard length longitudinal waves loudness loudspeaker magnetic major third microphone minor third modes modulation motion moving nodal node noise normal notes obtained octave oscillation overtone series phase physical piano pipe pitch level played player position preamplifier pressure produced pulse range recorder reed reflected result reverberation rope shown in Fig signal sine wave sound intensity level sound waves speaker speed of sound standing wave string instruments sum wave synthesizer tape temperament tone quality transverse transverse waves trumpet tuning valve velocity vibrations violin vocal voltage wave shape wavelength woodwind woodwind instruments