When the structure shown below is supported at point P, it is in equilibrium. Find the magnitude of force F and the magnitude and direction of the force applied at P. The weight of the structure is negligible. (Enter the magnitudes in newtons and the direction of the force applied at P in degrees counterclockwise from the +x-axis. Assume that the +x-axis is to the right. Due to the nature of this problem, do not use rounded intermediate values in your calculations-including answers submitted in WebAssign.) F 2.0 m +2.0 m -4.0 m - 2.0 m - 3.0 m 6,900 N 3,500 N magnitude of F 643.16 X N magnitude of the force at P 2232.04 X N direction of the force at P 99.7 counterclockwise from the +x-axis
When the structure shown below is supported at point P, it is in equilibrium. Find the magnitude of force F and the magnitude and direction of the force applied at P. The weight of the structure is negligible. (Enter the magnitudes in newtons and the direction of the force applied at P in degrees counterclockwise from the +x-axis. Assume that the +x-axis is to the right. Due to the nature of this problem, do not use rounded intermediate values in your calculations-including answers submitted in WebAssign.) F 2.0 m +2.0 m -4.0 m - 2.0 m - 3.0 m 6,900 N 3,500 N magnitude of F 643.16 X N magnitude of the force at P 2232.04 X N direction of the force at P 99.7 counterclockwise from the +x-axis
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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Rotational Equilibrium And Rotational Dynamics
In physics, the state of balance between the forces and the dynamics of motion is called the equilibrium state. The balance between various forces acting on a system in a rotational motion is called rotational equilibrium or rotational dynamics.
Equilibrium of Forces
The tension created on one body during push or pull is known as force.
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