P 4.32 Two blocks of masses mı and m2 (mi > m2) are placed on a frictionless table in contact with each other. A horizontal force of magnitude F is applied to the block of mass mi in the figure below. (a) IfP is the magnitude of the contact force between the blocks, draw the free-body diagrams for each block. (b) What is the net force on the system consisting of both blocks? (c) What is the net force acting on mi? (d) What is the net force acting on m2? (e) Write the x- component of Newton's second law for each block. (f) Solve the resulting system of two equations and two unknowns, expressing the acceleration a and contact force P in terms of the masses and force. (g) How would the answers change if the force had been applied to m2 instead? (Hint: use symmetry; don't calculate!) Is the contact force larger, smaller, or the same in this case? Why? т1 m2 7 TH P 4.32 Two blocks of masses mi and m2 ( mi > m2) are placed on a frictionless table in contact with each other. A horizontal force of magnitude F is applied to the block of mass mi in the figure below. (a) If P is the magnitude of the contact force between the blocks, draw the free-body diagrams for each block. (b) What is the net force on the system consisting of both blocks? (c) What is the net force acting on mi? (d) What is the net force acting on m2? (e) Write the x- component of Newton's second law for each block. (f) Solve the resulting system of two equations and two unknowns, expressing the acceleration a and contact force P in terms of the masses and force. (g) How would the answers change if the force had been applied to m2 instead? (Hint: use symmetry; don't calculate!) Is the contact force larger, smaller, or the same in this case? Why? m1 m2 ul
P 4.32 Two blocks of masses mı and m2 (mi > m2) are placed on a frictionless table in contact with each other. A horizontal force of magnitude F is applied to the block of mass mi in the figure below. (a) IfP is the magnitude of the contact force between the blocks, draw the free-body diagrams for each block. (b) What is the net force on the system consisting of both blocks? (c) What is the net force acting on mi? (d) What is the net force acting on m2? (e) Write the x- component of Newton's second law for each block. (f) Solve the resulting system of two equations and two unknowns, expressing the acceleration a and contact force P in terms of the masses and force. (g) How would the answers change if the force had been applied to m2 instead? (Hint: use symmetry; don't calculate!) Is the contact force larger, smaller, or the same in this case? Why? т1 m2 7 TH P 4.32 Two blocks of masses mi and m2 ( mi > m2) are placed on a frictionless table in contact with each other. A horizontal force of magnitude F is applied to the block of mass mi in the figure below. (a) If P is the magnitude of the contact force between the blocks, draw the free-body diagrams for each block. (b) What is the net force on the system consisting of both blocks? (c) What is the net force acting on mi? (d) What is the net force acting on m2? (e) Write the x- component of Newton's second law for each block. (f) Solve the resulting system of two equations and two unknowns, expressing the acceleration a and contact force P in terms of the masses and force. (g) How would the answers change if the force had been applied to m2 instead? (Hint: use symmetry; don't calculate!) Is the contact force larger, smaller, or the same in this case? Why? m1 m2 ul
Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter4: The Laws Of Motion
Section: Chapter Questions
Problem 49P: In Example 4.5, we pushed on two blocks on a table. Suppose three blocks are in contact with one...
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