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The function T cannot be written as a closed-form expression.
This can occur, for instance, when the solution does not have a closed-form expression, or is too complicated.
The solution to the Schrödinger equation for hydrogen is closed-form expression.
After some algebraic handling, their closed-form expression can be found:
If an integer relation is found, this suggests a possible closed-form expression for the original series, product or integral.
The maximum-likelihood estimates lack a closed-form expression and must be found by numerical methods.
A closed-form expression for first-order beta wavelets can easily be derived.
Most functions do not have explicit general closed-form expressions for the n-th iterate.
A standard example of an elementary function whose antiderivative does not have a closed-form expression is:
There is no known closed-form expression of the MRB constant.
Closed-form expressions for situations where the product form condition does not hold can be computed numerically as described below in the simulation section.
Closed-form expressions for beta wavelets and scale functions as well as their spectra are derived.
A closed-form solution (or closed-form expression) is any formula that can be evaluated in a finite number of standard operations.
For example, in principle the Jordan form could give a closed-form expression for the exponential exp(A).
Certain special cases of conic optimization problems have notable closed-form expressions of their dual problems.
In 1991 a closed-form expression was developed for the equivalent depth (d) that can replace the Hooghoudt tables:
Unfortunately, there is no direct closed-form expression for the geometric median; it is typically computed using iterative methods.
If a closed-form expression is needed, the method of moments can be applied to estimate from the sample skew, by inverting the skewness equation.
A conjugate prior is an algebraic convenience, giving a closed-form expression for the posterior: otherwise a difficult numerical integration may be necessary.
In general, there is no closed-form expression for the best-fitting parameters, as there is in linear regression.
However, the class of expressions considered to be analytical expressions tends to be wider than that for closed-form expressions.
The quantile function can be expressed in a closed-form expressions using the Lambert W function:
A CIR process is a special case of a basic affine jump diffusion, which still permits a closed-form expression for bond prices.
Recurrence relations may lead to previously unknown properties of a sequence, but generally closed-form expressions for the terms of a sequence are more desired.
Methods for separately calculating the extinction from each species using closed-form expressions are described in Schaefer (1993) and Schaefer (1998).