equation 35.13 eq:expwa-laplace-speed

open in the book · parts/03-classical-mechanics/18-exp-waves-acoustics.tex:725

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equation 35.13: eq:expwa-laplace-speed35.13experiment : Buys Ballot: the Doppler effect on a moving trainexperime…experiment : Kundt's tube: sound speeds from dust figuresexperime…phenomenon 35.12: Dust ridges mark the half-wavelength spacing of a standing wave in a gas35.12phenomenon 35.11: The shortfall is the square root of the specific-heat ratio35.11experiment : Newton, Laplace and the speed of soundexperime…equation 35.21: eq:expwa-doppler-observer35.21equation 35.20: eq:expwa-doppler-source35.20equation 35.19: eq:expwa-kundt-gases35.19equation 35.17: eq:expwa-kundt-ratio35.17proof : ch:18-exp-waves-acoustics@proof-7proofequation 35.14: eq:expwa-newton-speed35.14proof : ch:18-exp-waves-acoustics@proof-6proofequation 35.16: eq:expwa-gamma-from-sound35.16

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typedirectionnode provenancewhere
assumes Buys Ballot: the Doppler effect on a moving train declared parts/03-classical-mechanics/18-exp-waves-acoustics.tex:966
assumes Kundt's tube: sound speeds from dust figures declared parts/03-classical-mechanics/18-exp-waves-acoustics.tex:845
depends_on Dust ridges mark the half-wavelength spacing of a standing wave in a gas declared parts/03-classical-mechanics/18-exp-waves-acoustics.tex:892
depends_on The shortfall is the square root of the specific-heat ratio declared parts/03-classical-mechanics/18-exp-waves-acoustics.tex:776
tests Newton, Laplace and the speed of sound declared parts/03-classical-mechanics/18-exp-waves-acoustics.tex:642