In each case, a block is fully submerged in water and is in equilibrium at the bottom of the container. The blocks are m

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In each case, a block is fully submerged in water and is in equilibrium at the bottom of the container. The blocks are m

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In Each Case A Block Is Fully Submerged In Water And Is In Equilibrium At The Bottom Of The Container The Blocks Are M 1
In Each Case A Block Is Fully Submerged In Water And Is In Equilibrium At The Bottom Of The Container The Blocks Are M 1 (49.58 KiB) Viewed 54 times
In each case, a block is fully submerged in water and is in equilibrium at the bottom of the container. The blocks are made of different materials and vary in mass and volume as shown. M₁ = 60 g V₁= 20 cm³ B M₁ = 100 g V₁ = 10 cm³ M₁ = 80 g Vb = 50 cm³ D a) Rank the buoyant force exerted by the water on the blocks. Least: Greatest Mr = 50 g V₁ = 40 cm³ (25 points) Answer all these questions in a piece of paper. Your work must be organized and legible. Once you are done take a picture of your work and upload the file(s) with your answers. Before you submit your exam (or before it closes on Moodle): make sure you take a screenshot of this question and the instructions so that you will have it available for when recording the video. b) Rank the normal force on the blocks. Least: For figure A only: c) Draw a free body diagram, labeling the forces properly as well as the direction in which they are oriented d) Calculate the value of the buoyant force e) Calculate the value of the normal force Greatest
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