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  2. Gyms are scrambling to add squat racks for the strength ... - AOL

    www.aol.com/gyms-scrambling-add-squat-racks...

    To fully outfit a 1,300-2,800-square-foot gym for strength-training, you need dumbbells, kettlebells, barbells, medicine balls, three to four racks, and flooring that can withstand heavy weights.

  3. Power rack - Wikipedia

    en.wikipedia.org/wiki/Power_rack

    A power rack (also known as a power cage, squat cage or squat rack) is a piece of weight training equipment that functions as a mechanical spotter for free weight barbell exercises without the movement restrictions imposed by equipment such as the Smith machine. Its general design is four upright posts with two adjustable horizontal bar catches ...

  4. Smith machine - Wikipedia

    en.wikipedia.org/wiki/Smith_machine

    A Smith machine can be used for a variation of a squat. The Smith machine is a weight machine used for weight training. It consists of a barbell that is fixed within steel rails allowing for only strict vertical movement. Some Smith machines have the barbell counterbalanced.

  5. Burli - Wikipedia

    en.wikipedia.org/wiki/Burli

    "Burli" is the name of a controversial song in German by Austrian band Erste Allgemeine Verunsicherung. It is the eighth track of their album entitled Liebe, Tod & Teufel ( Love, Death and Devil ). The song is about a boy named Burli, who suffered mutations due to a nuclear power plant disaster.

  6. Squatting - Wikipedia

    en.wikipedia.org/wiki/Squatting

    The space was used for different purposes ranging from a place to live, gather or party, to producing propaganda and planning right-wing terrorist activities. The squat dissolved at the end of 1990 because of disagreements in the heterogenous group of squatters. [111] A short-lived squat in Reykjavík in 2009.

  7. Burali-Forti paradox - Wikipedia

    en.wikipedia.org/wiki/Burali-Forti_paradox

    We will prove this by contradiction. Let Ω be a set consisting of all ordinal numbers.; Ω is transitive because for every element x of Ω (which is an ordinal number and can be any ordinal number) and every element y of x (i.e. under the definition of Von Neumann ordinals, for every ordinal number y < x), we have that y is an element of Ω because any ordinal number contains only ordinal ...

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