Kelvin function
nome
differential equation
cylinder function
Hankel function
semitopological
indefinite integral
antiderivative
antiholomorphic
binomial series
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Bessel function
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Bravais lattice
integrable function
Runge-Kutta method
differential topology
Taylor series
complex measure
mathematical analysis
analysis
theta function
Simpson's rule
plurisubharmonic
complex-differentiable
de Moivre's formula
rational function
Euler-Lagrange equation
Boas-Buck polynomial
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elliptic operator
number-theoretic function
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Morse function
chain group
pseudopolynomial
Laplace transform
Jordan algebra
dromion
Herbrand universe
smooth function
Euclidean domain
hyperbolic quaternion
constantive
biharmonic
Möbius transformation
Riccati equation
von Mangoldt function
differentiable
nitrosimine
discrete math
pronilfactor
delay differential equation
volume integral
Cauchy-Riemann equation
crosslinear
Sturm-Liouville form
first fundamental form
algebraic function
irreducible
maxitive
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quintic
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Cauchy problem
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tricomplex number
Bell polynomial
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Grothendieck universe
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Weyl algebra
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Green's function
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difference equation
product rule
semifield
field of quotients
Abel sum
covariant
integral equation
algebra
hypoplactic
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analytic function
quotient set
Gabor atom

English words for 'Any of class of special functions, usually denoted as two pairs of functions berₙ(x), beiₙ(x), kerₙ(x) and keiₙ(x) with variable x and given order number n. The former two functions berₙ(x) and beiₙ(x) respectively correspond to the real part and the imaginary part of the Kelvin differential equation's solution that can be expressed with the Bessel function of the first kind Jₙ(x), and the latter kerₙ(x) and keiₙ(x) correspond to those that can be expressed with the modified Bessel function of the second kind Kₙ(x).'

As you may have noticed, above you will find words for "Any of class of special functions, usually denoted as two pairs of functions berₙ(x), beiₙ(x), kerₙ(x) and keiₙ(x) with variable x and given order number n. The former two functions berₙ(x) and beiₙ(x) respectively correspond to the real part and the imaginary part of the Kelvin differential equation's solution that can be expressed with the Bessel function of the first kind Jₙ(x), and the latter kerₙ(x) and keiₙ(x) correspond to those that can be expressed with the modified Bessel function of the second kind Kₙ(x).". Hover the mouse over the word you'd like to know more about to view its definition. Click search related words by phrase or description. to find a better fitting word. Finally, thanks to ChatGPT, the overall results have been greatly improved.

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