cylindrical coordinates - ορισμός. Τι είναι το cylindrical coordinates
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Τι (ποιος) είναι cylindrical coordinates - ορισμός

THREE-DIMENSIONAL ORTHOGONAL COORDINATE SYSTEM
Cylindrical coordinates; Cylindrical coordinate; Cylinder coordinates; Cylindrical polar coordinates; Cylindrical polar coordinate; Polar cylindrical coordinate; Galactocentric cylindrical polar coordinate; Polar cylindrical coordinates; Galactocentric cylindrical polar coordinates; Cylindrical polars; Cylindrical coordination; Radial line
  • z}} (blue), each increasing at a constant rate. The point is at the intersection between the three colored surfaces.
  • P}} are roughly (1.0, −1.732, 1.0).

Elliptic cylindrical coordinates         
  • Cartesian coordinates]] roughly (2.182, -1.661, 1.0).  The foci of the ellipse and hyperbola lie at ''x'' = ±2.0.
3D ORTHOGONAL COORDINATE SYSTEM THAT RESULTS FROM PROJECTING THE 2D ELLIPTIC COORDINATE SYSTEM IN THE PERPENDICULAR Z-DIRECTION
Elliptic cylinder coordinates; Elliptic cylinder coordinate system
Elliptic cylindrical coordinates are a three-dimensional orthogonal coordinate system that results from projecting the two-dimensional elliptic coordinate system in the
Cylindrical coordinate measuring machine         
  • This is an example of a Cylindrical Coordinate Measuring Machine (CCMM), a special type of CMM that uses a rotating table to move the part relative to the inspection probe.  In this case the CCMM is a camera and telecentric lens system, which is fitted with a tactile probe.
MEASURING MACHINE
User:Turbonut/sandbox/Cylindrical Coordinate Measuring Machine; Draft:Cylindrical Coordinate Measuring Machine; Cylindrical Coordinate Measuring Machine
Cylindrical coordinate measuring machine or CCMM, is a special variation of a standard coordinate measuring machine (CMM) which incorporates a moving table to rotate the part relative to the probe. The probe moves perpendicular to the part axis and radial data is collected at regular angular intervals.
Homogeneous coordinates         
MATHEMATICS
Homogenous coordinates; Homogeneous coordinate; Homogeneous co-ordinates; Homogeneous coordinate system; Projective coordinates; Homogeneous Coordinates; Homogenous coordinate
In mathematics, homogeneous coordinates or projective coordinates, introduced by August Ferdinand Möbius in his 1827 work ,August Ferdinand Möbius: Der barycentrische Calcul, Verlag von Johann Ambrosius Barth, Leipzig, 1827.

Βικιπαίδεια

Cylindrical coordinate system

A cylindrical coordinate system is a three-dimensional coordinate system that specifies point positions by the distance from a chosen reference axis (axis L in the image opposite), the direction from the axis relative to a chosen reference direction (axis A), and the distance from a chosen reference plane perpendicular to the axis (plane containing the purple section). The latter distance is given as a positive or negative number depending on which side of the reference plane faces the point.

The origin of the system is the point where all three coordinates can be given as zero. This is the intersection between the reference plane and the axis. The axis is variously called the cylindrical or longitudinal axis, to differentiate it from the polar axis, which is the ray that lies in the reference plane, starting at the origin and pointing in the reference direction. Other directions perpendicular to the longitudinal axis are called radial lines.

The distance from the axis may be called the radial distance or radius, while the angular coordinate is sometimes referred to as the angular position or as the azimuth. The radius and the azimuth are together called the polar coordinates, as they correspond to a two-dimensional polar coordinate system in the plane through the point, parallel to the reference plane. The third coordinate may be called the height or altitude (if the reference plane is considered horizontal), longitudinal position, or axial position.

Cylindrical coordinates are useful in connection with objects and phenomena that have some rotational symmetry about the longitudinal axis, such as water flow in a straight pipe with round cross-section, heat distribution in a metal cylinder, electromagnetic fields produced by an electric current in a long, straight wire, accretion disks in astronomy, and so on.

They are sometimes called "cylindrical polar coordinates" and "polar cylindrical coordinates", and are sometimes used to specify the position of stars in a galaxy ("galactocentric cylindrical polar coordinates").