grads 3:2.2.1-2 source package in Ubuntu

Changelog

grads (3:2.2.1-2) unstable; urgency=medium

  * Use debhelper-compat (=12)
  * Standards-Version: 4.4.0

 -- Alastair McKinstry <email address hidden>  Mon, 05 Aug 2019 14:07:36 +0100

Upload details

Uploaded by:
Alastair McKinstry
Uploaded to:
Sid
Original maintainer:
Alastair McKinstry
Architectures:
any
Section:
utils
Urgency:
Medium Urgency

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Series Pocket Published Component Section

Downloads

File Size SHA-256 Checksum
grads_2.2.1-2.dsc 2.6 KiB edfcf8f23f64812d0f4518803e5ce1caff1c9c8d037da3eb4864ad6516fd10ec
grads_2.2.1.orig-data.tar.xz 1.1 MiB e8d239dc06248365ae2ba966e6691b9ce41f82a198a31bfa165f19d5061ef181
grads_2.2.1.orig-example.tar.xz 1.3 MiB 28ce375aa90eb15a12267efaad0f8216468f69ec2a47ed0f6c76490a79d19eb3
grads_2.2.1.orig.tar.xz 4.3 MiB 8b9540677909ebdb38062dfe22b3773eaf73933fad70ceb0f6525925e51dc9f1
grads_2.2.1-2.debian.tar.xz 71.2 KiB 7aa12aaef9800e79e77c39f31e07973890773082e0ed0f3dbc1286477235f085

No changes file available.

Binary packages built by this source

grads: Grid Analysis and Display System for earth science data

 The Grid Analysis and Display System (GrADS) is an interactive desktop tool
 that is used for easy access, manipulation, and visualization of earth
 science data. The format of the data may be either binary, GRIB, NetCDF, or
 HDF-SDS (Scientific Data Sets). GrADS has been implemented worldwide on
 a variety of commonly used operating systems and is freely distributed
 over the Internet.
 .
 GrADS uses a 4-Dimensional data environment: longitude, latitude,
 vertical level, and time. Data sets are placed within the 4-D space
 by use of a data descriptor file. GrADS interprets station data as well as
 gridded data, and the grids may be regular, non-linearly spaced, gaussian, or
 of variable resolution. Data from different data sets may be graphically
 overlaid, with correct spatial and time registration. Operations are executed
 interactively by entering FORTRAN-like expressions at the command line.
 A rich set of built-in functions are provided, but users may also add their
 own functions as external routines written in any programming language.
 .
 Data may be displayed using a variety of graphical techniques: line and
 bar graphs, scatter plots, smoothed contours, shaded contours, streamlines,
 wind vectors, grid boxes, shaded grid boxes, and station model plots.
 Graphics may be output in PostScript or image formats. GrADS provides
 geophysically intuitive defaults, but the user has the option to control
 all aspects of graphics output.
 .
 GrADS has a programmable interface (scripting language) that allows for
 sophisticated analysis and display applications. Use scripts to display
 buttons and dropmenus as well as graphics, and then take action based on user
 point-and-clicks. GrADS can be run in batch mode, and the scripting language
 facilitates using GrADS to do long overnight batch jobs.

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