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1A Treatise on Differential Equations: Supplementary Volume

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“A Treatise on Differential Equations: Supplementary Volume” Metadata:

  • Title: ➤  A Treatise on Differential Equations: Supplementary Volume
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  • Publisher: Macmillan
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Access and General Info:

  • First Year Published: 1865
  • Is Full Text Available: Yes
  • Is The Book Public: Yes
  • Access Status: Public

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    Antiderivative

    antiderivative, inverse derivative, primitive function, primitive integral or indefinite integral of a continuous function f is a differentiable function F whose

    Elliptic integral

    In integral calculus, an elliptic integral is one of a number of related functions defined as the value of certain integrals, which were first studied

    Integral

    In mathematics, an integral is the continuous analog of a sum, which is used to calculate areas, volumes, and their generalizations. Integration, the process

    Lebesgue integral

    Lebesgue integral, named after French mathematician Henri Lebesgue, is one way to make this concept rigorous and to extend it to more general functions

    Integral equation

    equation contains integrals. A direct comparison can be seen with the mathematical form of the general integral equation above with the general form of a differential

    First-order partial differential equation

    {\displaystyle r=1} . Once a complete integral is found, a general solution can be constructed from it. The general integral is obtained by making the constants

    Henstock–Kurzweil integral

    Perron integral, but not to be confused with the more general wide Denjoy integral – is one of a number of inequivalent definitions of the integral of a

    Integral theory

    Integral theory as developed by Ken Wilber is a synthetic metatheory aiming to unify a broad spectrum of Western theories and models and Eastern meditative

    Grönwall's inequality

    Grönwall in 1919 (the integral form below with α and β being constants). Richard Bellman proved a slightly more general integral form in 1943. A nonlinear

    Leibniz integral rule

    the Leibniz integral rule for differentiation under the integral sign, named after Gottfried Wilhelm Leibniz, states that for an integral of the form