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  2. Strut channel - Wikipedia

    en.wikipedia.org/wiki/Strut_channel

    Shapes Cross section diagram of standard strut channel. Basic strut channel comes in the open box section 1 + 58 in (41 mm) square. A half height 1 + 58 in × 13 ⁄ 16 in (41 mm × 21 mm) version is also available, used mostly where mounted directly to a wall as it has significantly less stiffness and ability to carry loads across an open space or brace.

  3. Working load limit - Wikipedia

    en.wikipedia.org/wiki/Working_load_limit

    The factor can be as high as 10:1 or 10 to 1, if the equipment poses a risk to a person's life. Working Load Limit ( WLL) is the maximum working load designed by the manufacturer. This load represents a force that is much less than that required to make the lifting equipment fail or yield. The WLL is calculated by dividing MBL by a safety ...

  4. Load factor (electrical) - Wikipedia

    en.wikipedia.org/wiki/Load_factor_(electrical)

    load factor = ( [ 57 200 kWh / {30 d × 24 h/d} ] / 436 kW) × 100% = 18.22% It can be derived from the load profile of the specific device or system of devices. Its value is always less than one because maximum demand is never lower than average demand, since facilities likely never operate at full capacity for the duration of an entire 24 ...

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  6. Highway Capacity Manual - Wikipedia

    en.wikipedia.org/wiki/Highway_Capacity_Manual

    The Highway Capacity Manual ( HCM) is a publication of the Transportation Research Board (TRB) of the National Academies of Sciences, Engineering, and Medicine in the United States. It contains concepts, guidelines, and computational procedures for computing the capacity and quality of service of various highway facilities, including freeways ...

  7. Strength of materials - Wikipedia

    en.wikipedia.org/wiki/Strength_of_materials

    It is defined MS = Failure Load/(Factor of Safety × Predicted Load) − 1. For example, to achieve a factor of safety of 4, the allowable stress in an AISI 1018 steel component can be calculated to be R = U T S / F S {\displaystyle R=UTS/FS} = 440/4 = 110 MPa, or R {\displaystyle R} = 110×10 6 N/m 2 .

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