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For example, in designing a staircase, a dead load factor may be 1.2 times the weight of the structure, and a live load factor may be 1.6 times the maximum expected live load. These two "factored loads" are combined (added) to determine the "required strength" of the staircase.
Load affects the performance of circuits with respect to output voltages or currents, such as in sensors, voltage sources, and amplifiers. Mains power outlets provide an easy example: they supply power at constant voltage, with electrical appliances connected to the power circuit collectively making up the load.
In physics and engineering, a free body diagram (FBD; also called a force diagram) [1] is a graphical illustration used to visualize the applied forces, moments, and resulting reactions on a free body in a given condition. It depicts a body or connected bodies with all the applied forces and moments, and reactions, which act on the body(ies).
In engineering, a factor of safety (FoS) or safety factor (SF) expresses how much stronger a system is than it needs to be for an intended load.Safety factors are often calculated using detailed analysis because comprehensive testing is impractical on many projects, such as bridges and buildings, but the structure's ability to carry a load must be determined to a reasonable accuracy.
Electricity is the set of physical phenomena associated with the presence and motion of matter possessing an electric charge.Electricity is related to magnetism, both being part of the phenomenon of electromagnetism, as described by Maxwell's equations.
At first it is stated that the wind is a live load then later it is stated it is not a live load. I'm almost certain (at least in the US) that wind is not considered a live load but someone else should confirm this. Wind load is absolutely in every country in the world considered a live load. 110% Sam Lacey 03:15, 11 January 2009 (UTC)
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In this case, a force balance on a free body that includes the load, W, and n supporting sections of a rope with tension T, yields: n T − W = 0. {\displaystyle nT-W=0.} The ratio of the load to the input tension force is the mechanical advantage MA of the pulley system, [ 13 ]
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