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A scuba diver releases a 3.00 -cm-diameter (spherical) bubble of air from a depth of 14.0 $\mathrm{m}$ in a lake. Assume the temperature is constant at 298 $\mathrm...

Question

A scuba diver releases a 3.00 -cm-diameter (spherical) bubble of air from a depth of 14.0 $\mathrm{m}$ in a lake. Assume the temperature is constant at 298 $\mathrm{K}$ , and the air behaves as a perfect gas. How large is the bubble when it reaches the surface?

A scuba diver releases a 3.00 -cm-diameter (spherical) bubble of air from a depth of 14.0 $\mathrm{m}$ in a lake. Assume the temperature is constant at 298 $\mathrm{K}$ , and the air behaves as a perfect gas. How large is the bubble when it reaches the surface?



Answers

A scuba diver releases a 3.00 -cm-diameter (spherical) bubble of air from a depth of 14.0 $\mathrm{m}$ in a lake. Assume the temperature is constant at 298 $\mathrm{K}$ , and the air behaves as a perfect gas. How large is the bubble when it reaches the surface?


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