s shown below, if F = 77.0 N and M = 2.00 kg, what is the magnitude of the acceleration (in m/s?) of the suspended object? All surfaces are frictionless. 30° 2M M
s shown below, if F = 77.0 N and M = 2.00 kg, what is the magnitude of the acceleration (in m/s?) of the suspended object? All surfaces are frictionless. 30° 2M M
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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
Transcribed Image Text:**Problem Statement:**
As shown below, if \( F = 77.0 \, \text{N} \) and \( M = 2.00 \, \text{kg} \), what is the magnitude of the acceleration (in \(\text{m/s}^2\)) of the suspended object? All surfaces are frictionless.
**Diagram Explanation:**
- A blue block labeled \( 2M \) is on a horizontal surface.
- To the left of the \( 2M \) block, there is a force \( F = 77.0 \, \text{N} \) acting at a \( 30^\circ \) angle relative to the horizontal.
- This force is shown with a red arrow pointing downwards and to the left at the angle.
- The \( 2M \) block is attached by a string that runs over a pulley to a hanging pink block labeled \( M \).
- The system is set up in such a way that the pulley is frictionless and the surfaces are frictionless, allowing smooth motion of the blocks without resistance.
**Key Points:**
- The \( M \) block is suspended vertically.
- The problem asks for the acceleration of the suspended block.
- The \( 2M \) block moves horizontally due to the force \( F \).
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