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The falconer's knot is a knot used in falconry to tether a bird of prey to a perch. Some sources show this knot to be identical to the halter hitch , [ 1 ] but with a specific method of single-handed tying needed when the other hand is occupied holding the bird.
The halter hitch is topologically the same knot as the Falconer's knot, i. e. a slipped overhand knot around the main part. [3] The falconer has to tie the same knot one handed, throwing the end around the anchor object (the perch), gripping it with a scissoring fingers act, pulling the bight from opposite side of the main part using the back of the thumb.
Various pieces of falconry equipment (Hunt Museum, Ireland) — includes rings, call, bell and hood from the 17th–20th centuriesThe bird wears: A hood, which is used in the manning process (acclimatising to humans and the human world) and to keep the raptor in a calm state, both in the early part of its training and throughout its falconry career.
Water knot (also known as Tape Knot, Double Overhand Bend, Ring Bend): The Water knot is useful to tie together two ends of ropes. Often used with webbing. Binding Strangle knot: The Strangle knot is a simple binding knot. It forms both sides of a Double fisherman's knot, and is also used to back up loop knots and both ends of bends. Hitches
Hitching tie – simple knot used to tie off drawstring bags that allows quick access; Honda knot a.k.a. lariat loop – loop knot commonly used in a lasso; Hoxton knot – a method of arranging a scarf about the neck; Hunter's bend a.k.a. rigger's bend – joins two lines
A jess (plural "jesses") is a thin strap, traditionally made from leather, used to tether a hawk, falcon, or owl in falconry. [1] Jesses allow a falconer to keep control of a bird while it is on the glove or in training, and allow a bird to be secured on a perch outside its aviary. [1]
One of the fundamental structures used to tie knots. Specifically, it is a U-form narrower than a bight. [17] A type of knot used to create a closed circle in a line. A loop is one of the fundamental structures used to tie knots. It is a full circle formed by passing the working end of a rope over itself.
The discovery of all possible ways to tie a tie depends on a mathematical formulation of the act of tying a tie. In their papers (which are technical) and book (which is for a lay audience, apart from an appendix), the authors show that necktie knots are equivalent to persistent random walks on a triangular lattice, with some constraints on how the walks begin and end.