A farmer making grape juice fills a glass bottle to the brim and caps it tightly. The juice expands more than the glass when it warms up, in such a way that the volume AV increases by 0.3% (that is, = 3 x 107 Vo 10-3) relative to the space available. Calculate the magnitude (in N/m²) of the normal force per square meter exerted by the juice if its bulk modulus is 1.6 x 109 N/m², assuming the bottle does not break. N/m² In view of your answer, do you think the bottle will survive? (Hint: How many atmospheres is this?) O Yes O No

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relative to the space available. Calculate the magnitude (in N/m²) of the normal force per square meter exerted by the juice if
its bulk modulus is 1.6 × 10⁹ N/m², assuming the bottle does not break.
A farmer making grape juice fills a glass bottle to the brim and caps it tightly. The juice expands more than the glass when it warms up, in such a way that the volume
AV
increases by 0.3% (that is, = 3 x 10-3
V
N/m²
In view of your answer, do you think the bottle will survive? (Hint: How many atmospheres is this?)
O Yes
O No
Transcribed Image Text:relative to the space available. Calculate the magnitude (in N/m²) of the normal force per square meter exerted by the juice if its bulk modulus is 1.6 × 10⁹ N/m², assuming the bottle does not break. A farmer making grape juice fills a glass bottle to the brim and caps it tightly. The juice expands more than the glass when it warms up, in such a way that the volume AV increases by 0.3% (that is, = 3 x 10-3 V N/m² In view of your answer, do you think the bottle will survive? (Hint: How many atmospheres is this?) O Yes O No
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