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  2. Separation of variables - Wikipedia

    en.wikipedia.org/wiki/Separation_of_variables

    Separation of variables may be possible in some coordinate systems but not others, [2] and which coordinate systems allow for separation depends on the symmetry properties of the equation. [3] Below is an outline of an argument demonstrating the applicability of the method to certain linear equations, although the precise method may differ in ...

  3. Function of several complex variables - Wikipedia

    en.wikipedia.org/wiki/Function_of_several...

    The theory of functions of several complex variables is the branch of mathematics dealing with functions defined on the complex coordinate space, that is, n-tuples of complex numbers. The name of the field dealing with the properties of these functions is called several complex variables (and analytic space ), which the Mathematics Subject ...

  4. Separable partial differential equation - Wikipedia

    en.wikipedia.org/wiki/Separable_partial...

    Laplace's equation on is an example of a partial differential equation that admits solutions through -separation of variables; in the three-dimensional case this uses 6-sphere coordinates. (This should not be confused with the case of a separable ODE, which refers to a somewhat different class of problems that can be broken into a pair of ...

  5. Spheroidal wave function - Wikipedia

    en.wikipedia.org/wiki/Spheroidal_wave_function

    Spheroidal wave functions are solutions of the Helmholtz equation that are found by writing the equation in spheroidal coordinates and applying the technique of separation of variables, just like the use of spherical coordinates lead to spherical harmonics.

  6. Schrödinger equation - Wikipedia

    en.wikipedia.org/wiki/Schrödinger_equation

    Solving the equation by separation of variables means seeking a solution of the form of a product of spatial and temporal parts [19] (,) = (), where () is a function of all the spatial coordinate(s) of the particle(s) constituting the system only, and () is a function of time only.

  7. Partial differential equation - Wikipedia

    en.wikipedia.org/wiki/Partial_differential_equation

    In the method of separation of variables, one reduces a PDE to a PDE in fewer variables, which is an ordinary differential equation if in one variable – these are in turn easier to solve. This is possible for simple PDEs, which are called separable partial differential equations, and the domain is generally a rectangle (a product of intervals).

  8. Biharmonic equation - Wikipedia

    en.wikipedia.org/wiki/Biharmonic_equation

    Download as PDF; Printable version; In other projects ... which can be solved by separation of variables. The result is the Michell solution. 2-dimensional space ...

  9. Spherical harmonics - Wikipedia

    en.wikipedia.org/wiki/Spherical_harmonics

    An orthogonal basis of spherical harmonics in higher dimensions can be constructed inductively by the method of separation of variables, by solving the Sturm-Liouville problem for the spherical Laplacian = ⁡ ⁡ + ⁡ where φ is the axial coordinate in a spherical coordinate system on S n−1.