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* ordinary differential equations and dynamical systems.
* ordinary differential equations and dynamical systems.
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* special functions at eqworld: the world of mathematical equations.
* special functions at eqworld: the world of mathematical equations.
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"equations of hydrodynamics in statistical mechanics" (in ukrainian).
"equations of hydrodynamics in statistical mechanics" (in ukrainian).
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* j. leech, "some solutions of diophantine equations", "proc.
* j. leech, "some solutions of diophantine equations", "proc.
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"(provides a treatment of maxwell's equations in terms of differential forms.
"(provides a treatment of maxwell's equations in terms of differential forms.
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using the euler-lagrange equations, this can be shown in polar coordinates as follows.
using the euler–lagrange equations, this can be shown in polar coordinates as follows.
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also, under what conditions do smooth solutions to the navier–stokes equations exist?
also, under what conditions do smooth solutions to the navier–stokes equations exist?
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simple'ın İngilizce açılımı ise "semi-implicit method for pressure linked equations"'dır.
"simple" is an acronym for semi-implicit method for pressure linked equations.
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=== serbest parçacık kutupsal koordinatlarda ===trivial examples help to appreciate the use of the action principle via the euler-lagrangian equations.
===example: free particle in polar coordinates===trivial examples help to appreciate the use of the action principle via the euler–lagrange equations.
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== klasik alanları için eylem prensibi ==the action principle can be extended to obtain the equations of motion for fields, such as the electromagnetic field or gravity.
==action principle for fields=====classical field theory===the action principle can be extended to obtain the equations of motion for fields, such as the electromagnetic field or gravity.
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the constraints arise almost always because the differential equations must obey a set of boundary conditions, and the boundary has a non-trivial homotopy group, preserved by the differential equations.
the constraints arise almost always because the differential equations must obey a set of boundary conditions, and the boundary has a non-trivial homotopy group, preserved by the differential equations.
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* representing attitude with euler angles and quaternions: a reference, technical report and matlab toolbox summarizing all common attitude representations, with detailed equations and discussion on features of various methods.
* representing attitude with euler angles and quaternions: a reference, technical report and matlab toolbox summarizing all common attitude representations, with detailed equations and discussion on features of various methods.
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"basal"== biyoloji ==*İlkel memeliler, tek delikliler, protheria== meteoroloji ==* primitive equations, a set of nonlinear differential equations that are used to approximate atmospheric flow== matematik ==* primitive element (field theory)* primitive element (finite field)* primitive cell (crystallography)* primitive notion, axiomatic systems* primitive polynomial (disambiguation), one of two concepts* İlkel fonksiyon, "f"′ = "f"* primitive permutation group* "primitive root of unity"; see root of unity#definition.
"basal"==meteorology==* primitive equations, a set of nonlinear differential equations that are used to approximate atmospheric flow==mathematics==* primitive element (field theory)* primitive element (finite field)* primitive cell (crystallography)* primitive notion, axiomatic systems* primitive polynomial (disambiguation), one of two concepts* primitive function or antiderivative, "f"′ = "f"* primitive permutation group* primitive root of unity; see root of unity#general definition.
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