A student in an undergraduate physics lab is studying Archimedes' principle of bouyancy. The student is...
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A student in an undergraduate physics lab is studying Archimedes' principle of bouyancy. The student is given a brass cylinder of mass 1.25 kg. The density of this particular alloy of brass is 8.56 g/cm³. The student ties a massless string to one end of the cylinder, submerges it into a tank of water, and observes a reduction in the apparent weight of the cylinder. With this information, calculate the volume V of the cylinder and the tension 7 in the string when it is submerged in the tank of water. The density of water is 1.00 g/cm³, and the acceleration due to gravity is g = V = cm3 T= 9.81 m/s N A student in an undergraduate physics lab is studying Archimedes' principle of bouyancy. The student is given a brass cylinder of mass 1.25 kg. The density of this particular alloy of brass is 8.56 g/cm³. The student ties a massless string to one end of the cylinder, submerges it into a tank of water, and observes a reduction in the apparent weight of the cylinder. With this information, calculate the volume V of the cylinder and the tension 7 in the string when it is submerged in the tank of water. The density of water is 1.00 g/cm³, and the acceleration due to gravity is g = V = cm3 T= 9.81 m/s N A student in an undergraduate physics lab is studying Archimedes' principle of bouyancy. The student is given a brass cylinder of mass 1.25 kg. The density of this particular alloy of brass is 8.56 g/cm³. The student ties a massless string to one end of the cylinder, submerges it into a tank of water, and observes a reduction in the apparent weight of the cylinder. With this information, calculate the volume V of the cylinder and the tension 7 in the string when it is submerged in the tank of water. The density of water is 1.00 g/cm³, and the acceleration due to gravity is g = V = cm3 T= 9.81 m/s N A student in an undergraduate physics lab is studying Archimedes' principle of bouyancy. The student is given a brass cylinder of mass 1.25 kg. The density of this particular alloy of brass is 8.56 g/cm³. The student ties a massless string to one end of the cylinder, submerges it into a tank of water, and observes a reduction in the apparent weight of the cylinder. With this information, calculate the volume V of the cylinder and the tension 7 in the string when it is submerged in the tank of water. The density of water is 1.00 g/cm³, and the acceleration due to gravity is g = V = cm3 T= 9.81 m/s N
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Given Mass of cylinder m 125 kg Density of brass brass 856 gcm Density of water water 100 gcm Accele... View the full answer
Related Book For
Elementary Principles of Chemical Processes
ISBN: 978-1119498759
4th edition
Authors: Richard M. Felder, ? Ronald W. Rousseau, ? Lisa G. Bullard
Posted Date:
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