= = A block of mass m₁ 7 kg that is free to move along a horizontal frictionless table, is connected by a string that wraps over a frictionless pulley to a second block of mass m2 2 kg which is hanging above the ground. The table is accelerating upward with constant acceleration ao = 1 m/s². m1 m2 αρ a. At which acceleration does block m2 falls relative to the table (that is, relative to an observer that is standing on the table)? Now the table is accelerated to the right with acceleration ao, as seen in the figure: m1 m2 g αρ b. What will be the downward acceleration of block m2 relative to the table in this case?
= = A block of mass m₁ 7 kg that is free to move along a horizontal frictionless table, is connected by a string that wraps over a frictionless pulley to a second block of mass m2 2 kg which is hanging above the ground. The table is accelerating upward with constant acceleration ao = 1 m/s². m1 m2 αρ a. At which acceleration does block m2 falls relative to the table (that is, relative to an observer that is standing on the table)? Now the table is accelerated to the right with acceleration ao, as seen in the figure: m1 m2 g αρ b. What will be the downward acceleration of block m2 relative to the table in this case?
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 13P
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