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  2. Structural load - Wikipedia

    en.wikipedia.org/wiki/Structural_load

    The size of the load factor is based on the probability of exceeding any specified design load. Dead loads have small load factors, such as 1.2, because weight is mostly known and accounted for, such as structural members, architectural elements and finishes, large pieces of mechanical, electrical and plumbing (MEP) equipment, and for buildings ...

  3. Eurocode 1: Actions on structures - Wikipedia

    en.wikipedia.org/wiki/Eurocode_1:_Actions_on...

    In the Eurocode series of European standards (EN) related to construction, Eurocode 1: Actions on structures (abbreviated EN 1991 or, informally, EC 1) describes how to design load-bearing structures. It includes characteristic values for various types of loads and densities for all materials which are likely to be used in construction.

  4. Limit state design - Wikipedia

    en.wikipedia.org/wiki/Limit_state_design

    In determining the specific magnitude of the factors, more deterministic loads (like dead loads, the weight of the structure and permanent attachments like walls, floor treatments, ceiling finishes) are given lower factors (for example 1.4) than highly variable loads like earthquake, wind, or live (occupancy) loads (1.6).

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  6. Dead and live loads - Wikipedia

    en.wikipedia.org/?title=Dead_and_live_loads&...

    Retrieved from "https://en.wikipedia.org/w/index.php?title=Dead_and_live_loads&oldid=436216624"

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  8. Load profile - Wikipedia

    en.wikipedia.org/wiki/Load_Profile

    Graphs by hour of California's total electric load, the total load less solar and wind power (known as the duck curve) and solar power output. Data is for October 22, 2016, a day when the wind power output was low and steady throughout the day. In electrical engineering, a load profile is a graph of the variation in the electrical load versus ...

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