An inverted test tube partially filled with air floats in a plastic Question 1 vater-filled soft drink bottle as shown in the figure. The amount of air in the tube has been adjusted so that it Just floats. The bottle cap is securely fastened. A slight squeezing of the lastic bottle will cause the test tube to sink to the bottom of the bottle. Explain why does the tube float by drawing a free body diagram that a) clearly illustrates all forces applied on it? b) c) test tube if the water was replaced with a higher density fluid? Why does the tube sinks after squeezing the plastic bottle? What is the change in the magnitude of the squeeze needed to sink the
An inverted test tube partially filled with air floats in a plastic Question 1 vater-filled soft drink bottle as shown in the figure. The amount of air in the tube has been adjusted so that it Just floats. The bottle cap is securely fastened. A slight squeezing of the lastic bottle will cause the test tube to sink to the bottom of the bottle. Explain why does the tube float by drawing a free body diagram that a) clearly illustrates all forces applied on it? b) c) test tube if the water was replaced with a higher density fluid? Why does the tube sinks after squeezing the plastic bottle? What is the change in the magnitude of the squeeze needed to sink the
International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter8: Centroids And Distributed Loads
Section: Chapter Questions
Problem 8.122P: The 12-ft wide quarter-circular gate AB is hinged at A. Determine the contact force between the gate...
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