Arithmetic and Logic Unit - translation to ολλανδικά
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Arithmetic and Logic Unit - translation to ολλανδικά

Arithmetic Frobenius; Geometric Frobenius; Frobenius mapping; Arithmetic and geometric frobenius

Arithmetic and Logic Unit         
  • The [[combinational logic]] circuitry of the [[74181]] integrated circuit, an early four-bit ALU
COMBINATIONAL DIGITAL CIRCUIT THAT PERFORMS ARITHMETIC AND BITWISE OPERATIONS ON BINARY-CODED INTEGER NUMBERS
Arithmetic and logic unit; Arithmetic-logic unit; Arithmetical and logical unit; Arithmetic Logic Unit; Arithmetic and logical unit; Arithmetic and logic structures; Computer arithmetic; Arithmetic and Logical Unit; Arithmetic logic unit\; Integer arithmetic operation; Integer operation; Arithmetic–logic unit; Arithmetic / logic unit; Multiple-precision arithmetic; Arithmetic logic units; Arithmetic logical unit
aritmetische en logische eenheid (zich in verwerkend systeem in computer bevindend en rekenkundige en logische activiteiten verricht), (ALU - afk.)
arithmetic logic unit         
  • The [[combinational logic]] circuitry of the [[74181]] integrated circuit, an early four-bit ALU
COMBINATIONAL DIGITAL CIRCUIT THAT PERFORMS ARITHMETIC AND BITWISE OPERATIONS ON BINARY-CODED INTEGER NUMBERS
Arithmetic and logic unit; Arithmetic-logic unit; Arithmetical and logical unit; Arithmetic Logic Unit; Arithmetic and logical unit; Arithmetic and logic structures; Computer arithmetic; Arithmetic and Logical Unit; Arithmetic logic unit\; Integer arithmetic operation; Integer operation; Arithmetic–logic unit; Arithmetic / logic unit; Multiple-precision arithmetic; Arithmetic logic units; Arithmetic logical unit
Rekenkundige logica eenheid (een deel van computer verwerker die verantwoordelijk is voor rekenkundige handelingen)
logic gate         
  • A synchronous 4-bit up/down decade counter symbol (74LS192) in accordance with ANSI/IEEE Std. 91-1984 and IEC Publication 60617-12.
  • AND symbol
  • AND symbol
  • Buffer symbol
  • Buffer symbol
  • [[CMOS]] diagram of a [[NOT gate]], also known as an inverter. [[MOSFET]]s are the most common way to make logic gates.
  • NAND symbol
  • NAND symbol
  • NOR symbol
  • NOR symbol
  • NOT symbol
  • NOT symbol
  • OR symbol
  • OR symbol
  • Animation of how an SR [[NOR gate]] latch works.
  • The 7400 chip, containing four NANDs. The two additional pins supply power (+5 V) and connect the ground.
  • A tristate buffer can be thought of as a switch. If ''B'' is on, the switch is closed. If B is off, the switch is open.
  • XNOR symbol
  • XNOR symbol
  • XOR symbol
  • XOR symbol
COMPUTATIONAL EQUIPMENT, PHYSICAL OR THEORETICAL, THAT PERFORMS A BOOLEAN LOGIC FUNCTION
Logic Gate; Logic circuit; Discrete logic; Logic gates; Digital logic; Binary logic elements; Digital Logic; Logical gate; Logic circuits; Logic device; Electronic gate; Bubble pushing; Universal Logic Gate; Universal logic gate; Electronic logic gates; Electronic logic gate; Ideal logic gate; Logical circuit; Gates on chips
logische doorgang (electronische circuit dat boliaanse funktie verwezenlijkt)

Ορισμός

Arithmetic and Logic Unit
<processor> (ALU or "mill") The part of the {central processing unit} which performs operations such as addition, subtraction and multiplication of integers and bit-wise AND, OR, NOT, XOR and other Boolean operations. The CPU's instruction decode logic determines which particular operation the ALU should perform, the source of the operands and the destination of the result. The width in bits of the words which the ALU handles is usually the same as that quoted for the processor as a whole whereas its external busses may be narrower. Floating-point operations are usually done by a separate "{floating-point unit}". Some processors use the ALU for address calculations (e.g. incrementing the program counter), others have separate logic for this. (1995-03-24)

Βικιπαίδεια

Arithmetic and geometric Frobenius

In mathematics, the Frobenius endomorphism is defined in any commutative ring R that has characteristic p, where p is a prime number. Namely, the mapping φ that takes r in R to rp is a ring endomorphism of R.

The image of φ is then Rp, the subring of R consisting of p-th powers. In some important cases, for example finite fields, φ is surjective. Otherwise φ is an endomorphism but not a ring automorphism.

The terminology of geometric Frobenius arises by applying the spectrum of a ring construction to φ. This gives a mapping

φ*: Spec(Rp) → Spec(R)

of affine schemes. Even in cases where Rp = R this is not the identity, unless R is the prime field.

Mappings created by fibre product with φ*, i.e. base changes, tend in scheme theory to be called geometric Frobenius. The reason for a careful terminology is that the Frobenius automorphism in Galois groups, or defined by transport of structure, is often the inverse mapping of the geometric Frobenius. As in the case of a cyclic group in which a generator is also the inverse of a generator, there are in many situations two possible definitions of Frobenius, and without a consistent convention some problem of a minus sign may appear.