Modern digital control for a small iterative analog computer - The APE II digital module
Digital computer module for control of iterative analog computer system
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Digital computer module for control of iterative analog computer system
Rates of convergence for iterative methods for nonlinear systems of equations
Iterative solution of perturbation equations
Divergence equations and iterative processes
Iterative method for systems of two-point boundary value differential equations based on contraction mapping principle
Iterative method for calculating bound state eigenvalues and properties of radial Schroedinger equation
Least squares iterative method for solving simultaneous linear equations having singular coefficient matrix
Boundary conditions and iterative procedures for plasma sheath problems, using matrix equation to represent differenced Poisson equation
Radial Schrodinger equation bound state eigenvalues and properties by iterative method, calculating Coulomb potentials
Gas laser iterative alignment of Mach-Zehnder interferometer for monochromatic and white light fringes
Applications of partial orderings to study of positive definiteness, monotonicity, and convergence of iterative methods for linear systems
Class on nonlinear functions and convergence of Gauss-Seidel and Newton-Gauss-Seidel iterations
Boundary condition iteration methods in chemical process plant optimal design and control, considering simplicity and ease of programming, computation time and storage requirements
Shaped beam radiation patterns synthesis by iterative sampling method with line sources or uniformly spaced antenna arrays
Convergence rates of multistep iterative procedures for finding zero of nonlinear function defined on R to nth power
Iterative clustering technique for minimizing probability of differences between binary data reconstructions from cluster codes and initial data
Orders of convergence for iterative procedures for finding zero of nonlinear function, considering secant and Steffenson method
A cubically convergent iterative method for computing the generalized inverse of an arbitrary M X N matrix A is developed and a FORTRAN subroutine by which the method was implemented for real matrices on a CDC 3200 is given, with a numerical example to illustrate accuracy. Application to a redundant single-gimbal CMG assembly steering law is discussed.