Legendre polynomials: Difference between revisions
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Carl McBride (talk | contribs) (New page: '''Legendre polynomials''' (aka. Legendre functions of the first kind, Legendre coefficients, or zonal harmonics) are solutions of the Legendre differential equation]. The Legendre pol...) |
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'''Legendre polynomials''' (aka. Legendre functions of the first kind, Legendre coefficients, or zonal harmonics) | '''Legendre polynomials''' (aka. Legendre functions of the first kind, Legendre coefficients, or zonal harmonics) | ||
are solutions of the [[Legendre differential equation | are solutions of the [[Legendre differential equation]]. | ||
The Legendre polynomial, <math>P_n (z)</math> can be defined by the contour integral | The Legendre polynomial, <math>P_n (z)</math> can be defined by the contour integral | ||
Revision as of 19:04, 30 May 2007
Legendre polynomials (aka. Legendre functions of the first kind, Legendre coefficients, or zonal harmonics) are solutions of the Legendre differential equation. The Legendre polynomial, can be defined by the contour integral
The first seven Legendre polynomials are:
"shifted" Legendre polynomials (which obey the orthogonality relationship):
Powers in terms of Legendre polynomials:
Associated Legendre polynomials.
- Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle P_2^0 (x) =\frac{1}{2}(3x^2-1)}
- Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle P_2^1 (x) =-3x(1-x^2)^{1/2}}
- Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle P_2^2 (x) =3(1-x^2)}
etc.