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  2. Lambert W function - Wikipedia

    en.wikipedia.org/wiki/Lambert_W_function

    The product logarithm Lambert W function plotted in the complex plane from −2 − 2i to 2 + 2i The graph of y = W(x) for real x < 6 and y > −4. The upper branch (blue) with y ≥ −1 is the graph of the function W 0 (principal branch), the lower branch (magenta) with y ≤ −1 is the graph of the function W −1. The minimum value of x is ...

  3. Monotonic function - Wikipedia

    en.wikipedia.org/wiki/Monotonic_function

    A monotonically non-increasing function Figure 3. A function that is not monotonic. In mathematics, a monotonic function (or monotone function) is a function between ordered sets that preserves or reverses the given order. [1] [2] [3] This concept first arose in calculus, and was later generalized to the more abstract setting of order theory.

  4. Slow-growing hierarchy - Wikipedia

    en.wikipedia.org/wiki/Slow-growing_hierarchy

    g α (n) < f α (n) < g α (n + 1) where f α are the functions in the fast-growing hierarchy. He further showed that the first α this holds for is the ordinal of the theory ID <ω of arbitrary finite iterations of an inductive definition. [5] However, for the assignment of fundamental sequences found in [3] the first match up occurs at the ...

  5. Logarithmic growth - Wikipedia

    en.wikipedia.org/wiki/Logarithmic_growth

    In mathematics, logarithmic growth describes a phenomenon whose size or cost can be described as a logarithm function of some input. e.g. y = C log (x). Any logarithm base can be used, since one can be converted to another by multiplying by a fixed constant. [1] Logarithmic growth is the inverse of exponential growth and is very slow. [2]

  6. Exponential growth - Wikipedia

    en.wikipedia.org/wiki/Exponential_growth

    "Due to the exponential rate of increase, at any point in the chain reaction 99% of the energy will have been released in the last 4.6 generations. It is a reasonable approximation to think of the first 53 generations as a latency period leading up to the actual explosion, which only takes 3–4 generations." [4]

  7. Lebesgue integral - Wikipedia

    en.wikipedia.org/wiki/Lebesgue_integral

    The function g k is zero everywhere, except on a finite set of points. Hence its Riemann integral is zero. Each g k is non-negative, and this sequence of functions is monotonically increasing, but its limit as k → ∞ is 1 Q, which is not Riemann integrable.

  8. Increment theorem - Wikipedia

    en.wikipedia.org/wiki/Increment_theorem

    In nonstandard analysis, a field of mathematics, the increment theorem states the following: Suppose a function y = f(x) is differentiable at x and that Δx is infinitesimal. Then Δ y = f ′ ( x ) Δ x + ε Δ x {\displaystyle \Delta y=f'(x)\,\Delta x+\varepsilon \,\Delta x} for some infinitesimal ε , where Δ y = f ( x + Δ x ) − f ( x ...

  9. Entire function - Wikipedia

    en.wikipedia.org/wiki/Entire_function

    In particular, if for meromorphic functions one can generalize the factorization into simple fractions (the Mittag-Leffler theorem on the decomposition of a meromorphic function), then for entire functions there is a generalization of the factorization — the Weierstrass theorem on entire functions.