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Encyclopedia > Helical
This article is about the shape. See Helix (disambiguation) for other meanings.

A helix (pl: helices), from the Greek word έλικας/έλιξ, is a twisted shape like a spring, screw or a spiral staircase. Helices are important in biology, as DNA is helical and many proteins have helical substructures, known as alpha helices.

Two helices
A left-handed and a right-handed helix.

Right-handed and left-handed helices can be distinguished from each other. If you move along a helix in the direction of your right hand's thumb, and the helix turns in the direction of your right hand's fingers, then it's a right-handed helix, otherwise a left-handed one. Another way to visualize this distinction: picture the helix vertical; if the front strands move from the lower left to the upper right, then it is a right-handed helix. Note that handedness (or chirality) is a property of the helix, not of the perspective: you can turn a right-handed helix around and it's still right-handed.


Most screws are right-handed helices. The alpha helix in biology as well as the A and B forms of DNA are also right-handed helices. The Z form of DNA is left-handed.


The pitch of a helix is the length of one complete helix turn, measured along the helix axis.


In mathematics, a helix is a curve in 3-dimensional space. The following three equations in rectangular coordinates define a helix:

x = cos t
y = sin t
z = t

Here t is a real parameter. As t increases, the point (x,y,z) traces a right-handed helix of pitch 2π about the z-axis, in a right-handed coordinate system.


In cylindrical coordinates (r, θ, h), the same helix is described by:

r = 1
θ = h

Except for rotations, translations, and changes of scale, all right-handed helices are equivalent to the helix defined above. The equivalent left-handed helix can be constructed in a number of ways, the simplest being to negate either the x, y or z component.


In music pitch space is often modeled with helixes or double helixes, most often extending out of a circle such as the circle of fifths, so as to represent octave equivalency.


  Results from FactBites:
 
Method for producing a sieve belt of thermosettable synthetic resin helices for a papermaking machine - Patent 4392902 (3745 words)
The invention relates to a sieve belt composed of a multiplicity of helices of thermosettable synthetic resin monofilament in which adjacent helices are interlocked such that the windings of one helix enter between the windings of the adjacent helix, and having a pintle passed through the channel formed by adjacent helices.
For this reason the helices must be oval to begin with, and in cross section of the helices the inner clearance between the nearly parallel portions or legs of the ovals must be greater than the diameter of the inserted pintle-filament.
Helices of oval cross section are produced from polyester monofilamentary material of 0.7 mm thickness, the maximum and minimum diameters of the oval being 6.8 mm and 3.8 mm, respectively.
  More results at FactBites »

 

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