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The image of an opera singer breaking glass with her booming voice is not a new one. From cartoons to Ella Fitzgerald in the classic 1970's Memorex commercial, the association between loud, piercing sounds and shattering glass is very familiar. It should come as no surprise this phenomenon has been tested and retested in a wide variety of acoustical situations, and it turns out that it is indeed very possible to shatter a wine glass with nothing but ordinary sound The typical experimenter will begin by tapping a wine glass to excite the fundamental frequency associated with natural oscillations (the fundamental mode of vibration entails the circular rim of the glass periodically distorting into an ellipse). analyzer, strobe light, musician with perfect pitch, or whatever methods desired, the experiment discovers the fundamental frequency. frequency is then usually mimed over a loud speaker (or by an operaAt resonance, the wine glass distorts and strains until

the brittle vessel fractures violently. This phenomenon is a demonstration of both the fragility of glass and the often surprising Unlike materials such as quartz or iron, the molecules in glass are arranged in an amorphous structure rather than aThe lack of a crystal lattice structure makes glass very brittle, and it shatters via a conchoidal fracture that does not exhibitMost ordinary glass used in windows and jars is soda-lime glass, while many drinking glasses are made from borosilicate glass instead to protect them from the thermal strain of hot In fracture mechanics, the typical measure of fracture resistance is fracture toughness, which describes the ability of a material containing a crack to resist fracture. glass, the value of the fracture toughness is KIc = 0.7 MPa-m1/2, compared to about 50The fracture toughness is related to the stress σ and crack length a Most glass will contain microscopic cracks

that serve as the seed crack from the fracture. For a thin sheet of material in a wine glass, the weak material properties of glass substantially ease the ability of sound pressure waves to meet the energy threshold of a fracture. The destructive power of resonance and forced oscillations is probably most famously demonstrated by the collapse of
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glass can be crudely modeled as an damped harmonic oscillator with a resonant frequency equal to the fundamental mode's frequency. coupling of the wine glass to the pressure waves of sound is analogous to the coupling of sympathetic vibrations between two tuning forks withStriking one tuning fork will allow some of the
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best wine with vegetablesThe sound source in this case, be it a large speaker or simply a human voice, acts to drive the wine glass. The intensity of the vibrational response is dependent on the line width caused by dampening. With little or no dampening, the intensity I(ω) is a delta function at the resonantI(ω) is described by the frequency-domain Lorentzian Where gamma is the linewidth and ω is the

Although, dampening caused by impurities in the glass and its amorphous structure causes a widening of the frequencyLead crystal tends to have significantly less dampening, which is demonstrated by the long, pure ring when a crystal glass is struck. Low-quality glass will often ring with a brief, dull tone. that in most demonstrations of this effect, a typical function generator (or singer) precision of plus or minus 1/2 Hz is sufficient to match the Due to the finite dampening in a wine glass, it is necessary to provide sufficient energy to overcome the dampening to the point of catastrophic stress. In most demonstrations, the necessary loudness of the exciting sound is very, very loud at approximately 135-140dB. This corresponds to a pressure perturbation of roughly 200Pa. This pressure level is approximately the loudness of a rifle being fired from a distance of 1m, and is normally beyond the threshold of pain forFor a single, sustained frequency, such a noise would be

very painful and piercing to most listeners anywhere near the The most common question about the phenomenon of breaking a wine glass with sound is whether the feat can be performed with unamplified human voice. Normal conversation takes place at around 50dB, so for a human to sing a pure pitch as loud as 140dB is possibleWhile the phenomenon has been demonstrated with unamplified human voice, it is a very challenging feat, that likely requires very pure glass and a booming singer. over large speakers is very doable with good equipment, but generally the energy levels involved in shattering glass with sound are very high and both the sound waves and the shards of glass can be very harmful to the experimenter if proper precautions are not taken. © 2007 Anthony Scodary. permission to copy, distribute and display this work in unaltered form, with attribution to the author, for noncommercial purposes only. other rights, including commercial rights, are reserved to the