Part A What is the weight Wh of the ball? Express your answer numerically in newtons. • View Available Hint(s) Templates Symbols undo redo reset keyboard shortcuts 'help Wb = Submit • Part B What is the reading W2 of the scale when the ball is held in this submerged position? Assume that none of the water that spills over stays on the scale. Calculate your answer from the quantities given in the problem and express it numerically in newtons.

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter15: Fluids
Section: Chapter Questions
Problem 29PQ
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Part A
What is the weight Wh of the ball?
Express your answer numerically in newtons.
• View Available Hint(s)
Templates Symbols undo redo reset keyboard shortcuts 'help
Wh =
N
Submit
Part B
What is the reading W2 of the scale when the ball is held in this submerged position? Assume that none of the water that spills over stays on the scale.
Calculate your answer from the quantities given in the problem and express it numerically in newtons.
• View Available Hint(s)
Templates Symbols undo redo reset keyboard shortcuts 'help
W2 =
N
Submit
Transcribed Image Text:Part A What is the weight Wh of the ball? Express your answer numerically in newtons. • View Available Hint(s) Templates Symbols undo redo reset keyboard shortcuts 'help Wh = N Submit Part B What is the reading W2 of the scale when the ball is held in this submerged position? Assume that none of the water that spills over stays on the scale. Calculate your answer from the quantities given in the problem and express it numerically in newtons. • View Available Hint(s) Templates Symbols undo redo reset keyboard shortcuts 'help W2 = N Submit
A cylindrical beaker of height 0.100 m and negligible weight is filled to the brim with a fluid of density
p = 890 kg/m3. When the beaker is placed on a scale, its weight is measured to be 1.00 N .(Figure 1)
A ball of density P = 5000 kg/m and volume V = 60.0 cm3 is then submerged in the fluid, so that some of
the fluid spills over the side of the beaker. The ball is held in place by a stiff rod of negligible volume and weight.
Throughout the problem, assume the acceleration due to gravity is g = 9.81 m/s
Figure
1 of 2 (>
Transcribed Image Text:A cylindrical beaker of height 0.100 m and negligible weight is filled to the brim with a fluid of density p = 890 kg/m3. When the beaker is placed on a scale, its weight is measured to be 1.00 N .(Figure 1) A ball of density P = 5000 kg/m and volume V = 60.0 cm3 is then submerged in the fluid, so that some of the fluid spills over the side of the beaker. The ball is held in place by a stiff rod of negligible volume and weight. Throughout the problem, assume the acceleration due to gravity is g = 9.81 m/s Figure 1 of 2 (>
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