A marine biologist is preparing a deep-sea submersible for a dive. The sub stores breathing air under high pressure in a spherical air tank that measures 90.0 cm wide. The biologist estimates she will need 6600. L of air for the dive. Calculate the pressure to which this volume of air must be compressed in order to fit into the air tank. Write your answer in atmospheres. Round your answer to 3 significant digits. atm Ox10

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Calculate the pressure to which this volume of air must be compressed in order to fit into the air tank. Write your answer in atmospheres. Round your answer to 3 significant digits.

O STATES OF MATTER
Solving applications of Boyle's Law
A marine biologist is preparing a deep-sea submersible for a dive. The sub stores breathing air under high pressure in a
spherical air tank that measures 90.0 cm wide.
The biologist estimates she will need 6600. L of air for the dive. Calculate the pressure to which this volume of air must
be compressed in order to fit into the air tank. Write your answer in atmospheres. Round your answer to 3 significant
digits.
al-
atm
Ox10
Ar
Transcribed Image Text:O STATES OF MATTER Solving applications of Boyle's Law A marine biologist is preparing a deep-sea submersible for a dive. The sub stores breathing air under high pressure in a spherical air tank that measures 90.0 cm wide. The biologist estimates she will need 6600. L of air for the dive. Calculate the pressure to which this volume of air must be compressed in order to fit into the air tank. Write your answer in atmospheres. Round your answer to 3 significant digits. al- atm Ox10 Ar
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