Moment distribution method and cannes method
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Deflection of beam means amount by which beam gets deflected from its original position.
monment is force by distance however the deflection is a displacement of point measured by distance
The minimum slope shall be 1% to 2%.
The slope of the cut and fill alongside a road is called the "embankment slope" or "borrow slope." It refers to the graded side slopes created when soil is excavated (cut) and used to build up an area (fill). Proper design of these slopes is crucial for stability and drainage, ensuring safety and longevity of the roadway.
Slope refers to the how upward or downward a point is whereas deflection at a point refers to how bent a particular point is.
The deflection v is the displacement in the y direction of any point on the axis of the beam. Because the y axis is positive + upward, the deflection is also positive when upward (when downward, of course it is negative).Now the slope of the deflection, v', is the first derivative dv/dx of the expression for the deflection v. In geometric terms, the slope is the increment dv in the deflection (as we go from point m1 to point m2) divided by the increment dx in the distance along the xaxis.Since dv and dx are infinitesimally small, the slope dv/dx is equal to the tangent of the angle of rotation θ. Thus, dv/dx=tanθ and θ=arctan dv/dx.I hope i was helpful :P :)
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Its a method to determine high resistance. Hope that helps.
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The half deflection method is called so because it involves measuring the deflection of a beam or structure at a midpoint, typically at half the span of the element. This approach allows engineers to evaluate the structural behavior and performance under load conditions by analyzing the deflection at this critical point. The term "half" signifies the specific location where the deflection is observed, which is crucial for calculating bending moments and ensuring structural integrity.
We can find it by using wheatstone bridge.
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determination of metal to ligand ratio by slope ratio method
Deflection on a structure can be calculated using structural analysis methods such as the moment-area method, virtual work method, or finite element analysis. These methods involve determining the forces acting on the structure and applying principles of equilibrium to calculate the deflections at various points. The specific method chosen depends on the complexity of the structure and the accuracy required for the analysis.
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