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D8 : Other matrix equations (e.g., AX+XB=C)

F01ECF    Real matrix exponential
F01EDF    Real symmetric matrix exponential
F01EFF    Function of a real symmetric matrix
F01EJF    Real matrix logarithm
F01EKF    Exponential, sine, cosine, sinh or cosh of a real matrix (Schur–Parlett algorithm)
F01ELF    Function of a real matrix (using numerical differentiation)
F01EMF    Function of a real matrix (using user-supplied derivatives)
F01FCF    Complex matrix exponential
F01FDF    Complex Hermitian matrix exponential
F01FFF    Function of a complex Hermitian matrix
F01FJF    Complex matrix logarithm
F01FKF    Exponential, sine, cosine, sinh or cosh of a complex matrix (Schur–Parlett algorithm)
F01FLF    Function of a complex matrix (using numerical differentiation)
F01FMF    Function of a complex matrix (using user-supplied derivatives)
F01GAF    Action of a real matrix exponential on a real matrix
F01GBF    Action of a real matrix exponential on a real matrix (reverse communication)
F01HAF    Action of a complex matrix exponential on a complex matrix
F01HBF    Action of a complex matrix exponential on a complex matrix (reverse communication)
F01JAF    Condition number for the exponential, logarithm, sine, cosine, sinh or cosh of a real matrix
F01JBF    Condition number for a function of a real matrix (using numerical differentiation)
F01JCF    Condition number for a function of a real matrix (using user-supplied derivatives)
F01KAF    Condition number for the exponential, logarithm, sine, cosine, sinh or cosh of a complex matrix
F01KBF    Condition number for a function of a complex matrix (using numerical differentiation)
F01KCF    Condition number for a function of a complex matrix (using user-supplied derivatives)
F08QHF    Solve real Sylvester matrix equation AX+XB=C, A and B are upper quasi-triangular or transposes
F08QVF    Solve complex Sylvester matrix equation AX+XB=C, A and B are upper triangular or conjugate-transposes
F08YHF    Solves the real-valued generalized Sylvester equation
F08YVF    Solves the complex generalized Sylvester equation

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© The Numerical Algorithms Group Ltd, Oxford UK. 2013