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  2. Logical shift - Wikipedia

    en.wikipedia.org/wiki/Logical_shift

    Logical right shift differs from arithmetic right shift. Thus, many languages have different operators for them. For example, in Java and JavaScript, the logical right shift operator is >>>, but the arithmetic right shift operator is >>. (Java has only one left shift operator (<<), because left shift via logic and arithmetic have the same effect.)

  3. Arithmetic shift - Wikipedia

    en.wikipedia.org/wiki/Arithmetic_shift

    The two basic types are the arithmetic left shift and the arithmetic right shift. For binary numbers it is a bitwise operation that shifts all of the bits of its operand; every bit in the operand is simply moved a given number of bit positions, and the vacant bit-positions are filled in.

  4. Shift operator - Wikipedia

    en.wikipedia.org/wiki/Shift_operator

    ⁠ The shift operator acting on functions of a real variable is a unitary operator on ⁠ (). In both cases, the (left) shift operator satisfies the following commutation relation with the Fourier transform: F T t = M t F , {\displaystyle {\mathcal {F}}T^{t}=M^{t}{\mathcal {F}},} where M t is the multiplication operator by exp( itx ) .

  5. Bitwise operation - Wikipedia

    en.wikipedia.org/wiki/Bitwise_operation

    Java adds the operator ">>>" to perform logical right shifts, but since the logical and arithmetic left-shift operations are identical for signed integer, there is no "<<<" operator in Java. More details of Java shift operators: [10] The operators << (left shift), >> (signed right shift), and >>> (unsigned right shift) are called the shift ...

  6. JavaScript syntax - Wikipedia

    en.wikipedia.org/wiki/JavaScript_syntax

    var x1 = 0; // A global variable, because it is not in any function let x2 = 0; // Also global, this time because it is not in any block function f {var z = 'foxes', r = 'birds'; // 2 local variables m = 'fish'; // global, because it wasn't declared anywhere before function child {var r = 'monkeys'; // This variable is local and does not affect the "birds" r of the parent function. z ...

  7. Operator associativity - Wikipedia

    en.wikipedia.org/wiki/Operator_associativity

    Consider the expression 5^4^3^2, in which ^ is taken to be a right-associative exponentiation operator. A parser reading the tokens from left to right would apply the associativity rule to a branch, because of the right-associativity of ^, in the following way: Term 5 is read. Nonterminal ^ is read. Node: "5^". Term 4 is read. Node: "5^4".

  8. Right shift - Wikipedia

    en.wikipedia.org/wiki/Right_shift

    Right shift may refer to: Logical right shift, a computer operation; Arithmetic right shift, a computer operation; Right Shift key, a key on a computer keyboard; Rightshiting (cultural change), changing mindsets away from overly analytical to more synergistic (also known as the Marshall Model)

  9. Talk:Arithmetic shift - Wikipedia

    en.wikipedia.org/wiki/Talk:Arithmetic_shift

    Both shift x -2 and x `shift` -2 will evaluate to the value of x shifted right by two.) Both a signed-argument function (shift with a positive argument for left shifts, negative for right shifts) and a pair of unsigned-argument functions (shiftL and shiftR) are provided. I just updated the Haskell information to indicate this; I show the signed ...