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The answer is the slope at the free end is 0.50 [tex]PL^{2}[/tex]/EI.
By replacing the boundary condition in the slope equation, the slope at the free end is computed. The largest slope will occur at the free end of a cantilever beam with a point load.
A stiff body's equilibrium:
When the sum of external forces and couplings equals zero, an item is said to be in equilibrium.
For a rigid body to be in three-dimensional equilibrium, the sum of external forces acting along.
For a rigid body to be in equilibrium in three dimensions, the sum of external couples about any point should be zero.
Moment of a force:
The moment of a force refers to the propensity of the force to cause rotation on the body it acts upon. The moment’s magnitude can be determined from the product of the force’s magnitude and the distance to the force measured perpendicularly.
Free body diagram:
It is a graphical, symbolic illustration that is used to visualize the applied forces, moments, and reactions on a body for a particular condition
Slope:
Slope refers to the inclination angle between the initial longitudinal axis of the beam and the tangent of the deflection curve.
To calculate the slope at the free end x=L
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