Two toddlers Anne (12.0 kg) and Bob (15.0 kg) sat on both ends of a uniform 5.00-m see-saw supported at the center. If Anne sites on the leftmost edge of the see-saw, where should Bob sit from the right edge to keep the system horizontal and in equilibrium? O 2.50 m from the right edge O 2.00 m from the right edge O 0.500 m from the right edge O 1.50 m from the right edge

University Physics Volume 1
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Author:William Moebs, Samuel J. Ling, Jeff Sanny
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Chapter12: Static Equilibrium And Elasticity
Section: Chapter Questions
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Two toddlers Anne (12.0 kg) and Bob (15.0 kg) sat on both ends of
a uniform 5.00-m see-saw supported at the center. If Anne sites on
the leftmost edge of the see-saw, where should Bob sit from the
right edge to keep the system horizontal and in equilibrium?
O 2.50 m from the right edge
O 2.00 m from the right edge
O 0.500 m from the right edge
O 1.50 m from the right edge
Transcribed Image Text:Two toddlers Anne (12.0 kg) and Bob (15.0 kg) sat on both ends of a uniform 5.00-m see-saw supported at the center. If Anne sites on the leftmost edge of the see-saw, where should Bob sit from the right edge to keep the system horizontal and in equilibrium? O 2.50 m from the right edge O 2.00 m from the right edge O 0.500 m from the right edge O 1.50 m from the right edge
A non-uniform rod of length 1.00 m is hung horizontally,
supported by strings on both ends. If the center of gravity of the
rod is 0.200 m from the left end, what is the magnitude of the
tension applied by the string on the right end of the rod?
O Cannot be determined unless the weight of the rod is given
O 80% of the weight of the rod
O 50% of the weight of the rod
O 20% of the weight of the rod
Transcribed Image Text:A non-uniform rod of length 1.00 m is hung horizontally, supported by strings on both ends. If the center of gravity of the rod is 0.200 m from the left end, what is the magnitude of the tension applied by the string on the right end of the rod? O Cannot be determined unless the weight of the rod is given O 80% of the weight of the rod O 50% of the weight of the rod O 20% of the weight of the rod
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