A set of 360 FORTRAN /level G or H/ subroutines for generating printed plots
FORTRAN 4 subroutines to generate printed plots as normal output
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FORTRAN 4 subroutines to generate printed plots as normal output
Grid search optimization subroutine for analyses on distributed lumped activity networks
FORTRAN subroutine for rotation of three-dimensional line figures
Least squares technique and curve fitting subroutine for backscatter data analysis
NASAP program FORTRAN subroutine LOOPS for loop detection in circuit analysis, discussing automatic instrumentation process for computation time reduction
Subroutine ALLMAT for eigenvalues and eigenvectors of general complex nature
TREETRAN subroutine package in FORTRAN 4 for manipulation of tree structured data
AUPLOT 2, set of callable subroutines for computer graphics
FORTRAN 4 subroutines for coupling coefficients and matrix elements in quantum mechanical theory of angular momentum
Computer subroutines to determine photometric magnitudes of planets and their satellites
List processing subroutines for IBM 1800/1130 information storage and retrieval system
Methods are described for calculating significant factors in the observational environment of orbiting astronomical satellites. These factors must be considered in the process of scheduling observations and in data reduction. Subroutines which perform these calculations are described.
This paper discusses how to numerically test a subroutine for the solution of ordinary differential equations. Results obtained with a variable order Adams method are given for eleven simple test cases.-
This paper discusses how to numerically test a subroutine for the solution of ordinary differential equations. Results obtained with a variable order Adams method are given for eleven simple test cases.-
In this paper we describe a well documented, compactly coded, storage efficient, thoroughly tested, and easy to use set of FORTRAN IV subroutines for use in Kalman filter or least-squares applications. The package contains both the UDU covariance factorization and the square root information filter algorithms developed at the Jet Propulsion Laboratory. Numerical reliability of the algorithms is a key feature of the package.
Software package consists of FORTRAN subroutines that perform universal noiseless coding and decoding of integer and binary data strings. Purpose of this type of coding to achieve data compression in sense that coded data represents original data perfectly (noiselessly) while taking fewer bits to do so. Routines universal because they apply to virtually any "real-world" data source.
HIERARCHY program is tool that assists users in obtaining information about relationships among subroutines in computer program. HIERARCHY written in FORTRAN 77.
This report serves as an instruction and maintenance manual for a collection of CDC CYBER FORTRAN IV subroutines for approximating the unsteady aerodynamic forces in the time domain. The result is a set of constant-coefficient first-order differential equations that approximate the dynamics of the vehicle. Provisions are included for adjusting the number of modes used for calculating the approximations so that an accurate approximation is generated. The number of data points at different values of reduced frequency can also be varied to adjust the accuracy of the approximation over the reduced-frequency range. The denominator coefficients of the approximation may be calculated by means of a gradient method or a least-squares approximation technique. Both the approximation methods use weights on the residual error. A new set of system equations, at a different dynamic pressure, can be generated without the approximations being recalculated.