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PHYS102


H3-15: TWIRL-A-TUNE AND VACUUM CLEANER

Purpose: Demonstrate standing wave resonances in an open tube.

H3-12: ROARING TUBE - 4 FT

Purpose: Demonstrate standing sound waves in air excited by convection currents.

H3-13: ROARING TUBE - 8 FT

Purpose: Demonstrate standing sound waves in air excited by convection currents.

H3-11: TUNING FORKS AND RESONANT TUBE

Purpose: Illustrate resonance in an air column.

H2-26: PHASE REVERSAL BETWEEN STEREO SPEAKERS - MUSIC

Purpose: Demonstrate interference of sound in a dramatic way.

F5-03: THIN METAL SHEETS - COANDA EFFECT

Purpose: Demonstrate a fluid-flow model of the vocal folds.

G2-12: BARTON'S PENDULUMS

Purpose: Demonstrate driven resonance.

G4-22: CHLADNI FIGURES - OSCILLATOR DRIVEN

Purpose: Show two-dimensional standing waves in a metal plate

G4-03: RIPPLE TANK - DOPPLER EFFECT

Purpose: Show how wave fronts crowd together in front of and spread out behind a moving source.

H4-34: GUITAR AND OSCILLOSCOPE

Category: H4 Music

Purpose: Illustrate how a guitar works

H2-11: SOUND LENS

Purpose: Demonstrate focusing of sound by refraction in a sound lens

G2-07: PSYCHOACOUSTIC VIBRATION TRANSDUCER

Purpose: Challenge your students to recognize pseudoscience while illustrating resonance

J4-51: THEREMIN

Purpose: Demonstrate the theremin

H5-21: THREE DECIBELS

Category: H5 The Ear

Purpose: Demonstrate the logarithmic nature of dBs

H2-52: BEATS AND RESONANCE - TUNING BARS

Purpose: To demonstrate beats, and to demonstrate resonance between two identical tuning bar resonators.

H4-42 RECORDER

Category: H4 Music

Purpose: Can hear the sounds of a recorder

H4-11 SAVART'S DISCS

Category: H4 Music

Purpose: Demonstrates the relationship of pitch and musical intervals to mechanical vibration frequency

H4-04 FOURIER ANALYSIS - DIGITAL OSCILLOSCOPE

Category: H4 Music

Purpose: Demonstrates the Fourier spectrum of complex waves

H3-61 BEAKER BREAKER

Purpose: Breaks a glass beaker with sound

H3-24 OPEN AND CLOSED PIPES

Purpose: Demonstrates open and closed tube standing resonances
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