Kulz"s cylinder - traducción al árabe
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Kulz"s cylinder - traducción al árabe

HISTORICAL METHOD FOR GIVING ADDRESSES TO PHYSICAL DATA BLOCKS ON HARD DISK DRIVES
Cylinder-Head-Sector; Cylinder (disk drive); Disk drive cylinder; Cylinder Head Sector; Disk Cylinder; Disk cylinder; C/H/S
  • Cylinder, head, and sector of a hard drive.
  • schematic of the hard drive geometry

Kulz's cylinder      
‎ أسطوانة كولتس,أُسْطُوانَةُ الغَيبوبَةِ السُّكَّرِيَّة‎
Single-cylinder engine         
  •  [[DKW]] RT 250 (1952–1953) motorcycle engine
  • Villiers]] engine in a 1959 [[Bond Minicar]]
  • Yamaha SRX600]] (1985–1997) motorcycle engine
PISTON ENGINE WITH ONE CYLINDER
Single cylinder; Single-cylinder; One-cylinder engine; One cylinder engine; 1 cylinder; Single cylinder engine
محرك بأسطوانة واحدة
CYLINDRICAL         
  • apex]] is at infinity, which corresponds visually to a cylinder in perspective appearing to be a cone towards the sky.
  • Cylindric sections of a right circular cylinder
  • ''h''}}
  • A right and an oblique circular cylinder
  • ''h''}}
  • A sphere has 2/3 the volume and surface area of its circumscribing cylinder including its bases
  • [[Tycho Brahe Planetarium]] building, Copenhagen, is an example of a truncated cylinder
  • Parabolic cylinder
  • Hollow cylinder
SURFACE FORMED BY THE POINTS AT A FIXED DISTANCE FROM A GIVEN STRAIGHT LINE CALLED THE AXIS OF THE CYLINDER; ONE OF THE MOST BASIC CURVILINEAR GEOMETRIC SHAPES
Cylindrical; Cylinders; Right cylinder; Elliptic cylinder; Circular cylinder; Cilinder; Cylinder (computer); Oblique Cylinder; Oblique cylinder; Polyhedral cylinder; Cylindrical surface; Parabolic cylinder; Cylindre; Volume of a cylinder; Volume Of A Cylinder; Right circular hollow cylinder; Cylinder (geometry); Right-circular cylinder; Hyperbolic cylinder; Surface area of a cylinder

الصفة

أُسْطُوَانيّ

Definición

Cylinder
·noun The barrel of an air or other pump.
II. Cylinder ·noun Any hollow body of cylindrical form.
III. Cylinder ·noun The bore of a gun; the turning chambered breech of a revolver.
IV. Cylinder ·noun The revolving square prism carrying the cards in a Jacquard loom.
V. Cylinder ·noun The chamber of a steam engine in which the piston is moved by the force of steam.
VI. Cylinder ·noun The space inclosed by any cylindrical surface. The space may be limited or unlimited in length.
VII. Cylinder ·noun The revolving platen or bed which produces the impression or carries the type in a cylinder press.
VIII. Cylinder ·noun A solid body which may be generated by the rotation of a parallelogram round one its sides; or a body of rollerlike form, of which the longitudinal section is oblong, and the cross section is circular.

Wikipedia

Cylinder-head-sector

Cylinder-head-sector (CHS) is an early method for giving addresses to each physical block of data on a hard disk drive.

It is a 3D-coordinate system made out of a vertical coordinate head, a horizontal (or radial) coordinate cylinder, and an angular coordinate sector. Head selects a circular surface: a platter in the disk (and one of its two sides). Cylinder is a cylindrical intersection through the stack of platters in a disk, centered around the disk's spindle. Combined, cylinder and head intersect to a circular line, or more precisely: a circular strip of physical data blocks called track. Sector finally selects which data block in this track is to be addressed, as the track is subdivided into several equally-sized portions, each of which is an arc of (360/n) degrees, where n is the number of sectors in the track.

CHS addresses were exposed, instead of simple linear addresses (going from 0 to the total block count on disk - 1), because early hard drives didn't come with an embedded disk controller, that would hide the physical layout. A separate generic controller card was used, so that the operating system had to know the exact physical "geometry" of the specific drive attached to the controller, to correctly address data blocks. The traditional limits were 512 bytes/sector × 63 sectors/track × 255 heads (tracks/cylinder) × 1024 cylinders, resulting in a limit of 8032.5 MiB for the total capacity of a disk.

As the geometry became more complicated (for example, with the introduction of zone bit recording) and drive sizes grew over time, the CHS addressing method became restrictive. Since the late 1980s, hard drives began shipping with an embedded disk controller that had good knowledge of the physical geometry; they would however report a false geometry to the computer, e.g., a larger number of heads than actually present, to gain more addressable space. These logical CHS values would be translated by the controller, thus CHS addressing no longer corresponded to any physical attributes of the drive.

By the mid 1990s, hard drive interfaces replaced the CHS scheme with logical block addressing (LBA), but many tools for manipulating the master boot record (MBR) partition table still aligned partitions to cylinder boundaries; thus, artifacts of CHS addressing were still seen in partitioning software by the late 2000s.

In the early 2010s, the disk size limitations imposed by MBR became problematic and the GUID Partition Table (GPT) was designed as a replacement; modern computers using UEFI firmware without MBR support no longer use any notions from CHS addressing.