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  2. Exponentiation - Wikipedia

    en.wikipedia.org/wiki/Laws_of_exponents

    This makes the principal n th root a continuous function in the whole complex plane, except for negative real values of the radicand. This function equals the usual n th root for positive real radicands. For negative real radicands, and odd exponents, the principal n th root is not real, although the usual n th root is real.

  3. Order of operations - Wikipedia

    en.wikipedia.org/wiki/Order_of_operations

    Calculators may associate exponents to the left or to the right. For example, the expression a^b^c is interpreted as a (b c) on the TI-92 and the TI-30XS MultiView in "Mathprint mode", whereas it is interpreted as (a b) c on the TI-30XII and the TI-30XS MultiView in "Classic mode".

  4. Algebraic operation - Wikipedia

    en.wikipedia.org/wiki/Algebraic_operation

    They may also be performed, in a similar way, on variables, algebraic expressions, [2] and more generally, on elements of algebraic structures, such as groups and fields. [3] An algebraic operation may also be defined more generally as a function from a Cartesian power of a given set to the same set.

  5. Algebraic expression - Wikipedia

    en.wikipedia.org/wiki/Algebraic_expression

    Since taking the square root is the same as raising to the power ⁠ 1 / 2 ⁠, the following is also an algebraic expression: 1 − x 2 1 + x 2 {\displaystyle {\sqrt {\frac {1-x^{2}}{1+x^{2}}}}} An algebraic equation is an equation involving polynomials , for which algebraic expressions may be solutions .

  6. Arithmetic - Wikipedia

    en.wikipedia.org/wiki/Arithmetic

    Roots are a special type of exponentiation using a fractional exponent. For example, the square root of a number is the same as raising the number to the power of 1 2 {\displaystyle {\tfrac {1}{2}}} and the cube root of a number is the same as raising the number to the power of 1 3 {\displaystyle {\tfrac {1}{3}}} .

  7. Descartes' rule of signs - Wikipedia

    en.wikipedia.org/wiki/Descartes'_rule_of_signs

    To find the number of negative roots, change the signs of the coefficients of the terms with odd exponents, i.e., apply Descartes' rule of signs to the polynomial = + + This polynomial has two sign changes, as the sequence of signs is (−, +, +, −) , meaning that this second polynomial has two or zero positive roots; thus the original ...