How to Install and Uninstall libcoq-mathcomp-fingroup Package on Kali Linux
Last updated: November 13,2024
1. Install "libcoq-mathcomp-fingroup" package
This is a short guide on how to install libcoq-mathcomp-fingroup on Kali Linux
$
sudo apt update
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$
sudo apt install
libcoq-mathcomp-fingroup
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2. Uninstall "libcoq-mathcomp-fingroup" package
Please follow the steps below to uninstall libcoq-mathcomp-fingroup on Kali Linux:
$
sudo apt remove
libcoq-mathcomp-fingroup
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$
sudo apt autoclean && sudo apt autoremove
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3. Information about the libcoq-mathcomp-fingroup package on Kali Linux
Package: libcoq-mathcomp-fingroup
Source: ssreflect (2.1.0-1)
Version: 2.1.0-1+b1
Installed-Size: 7941
Maintainer: Debian OCaml Maintainers
Architecture: amd64
Replaces: libssreflect-coq
Provides: libcoq-mathcomp-fingroup-1h320
Depends: libcoq-mathcomp-ssreflect (= 2.1.0-1+b1), libcoq-hierarchy-builder-qv203, libcoq-stdlib-6gs52
Breaks: libssreflect-coq (<= 2.1.0-1+b1)
Size: 2020800
SHA256: b7268aac3d17e4b52bcaf9b22b3e7c449dfcf736e4a493c4b8c8c25b0c128aaf
SHA1: 14dd1329763bf4bb7e88ec6da546a3d84d1a0c41
MD5sum: 6478d73e9fecbdd0c7b96bd76dc1888f
Description: Mathematical Components library for Coq (finite groups)
The Mathematical Components Library is an extensive and coherent
repository of formalized mathematical theories. It is based on the
Coq proof assistant, powered with the Coq/SSReflect language.
.
These formal theories cover a wide spectrum of topics, ranging from
the formal theory of general-purpose data structures like lists,
prime numbers or finite graphs, to advanced topics in algebra.
.
The formalization technique adopted in the library, called "small
scale reflection", leverages the higher-order nature of Coq's
underlying logic to provide effective automation for many small,
clerical proof steps. This is often accomplished by restating
("reflecting") problems in a more concrete form, hence the name. For
example, arithmetic comparison is not an abstract predicate, but
rather a function computing a Boolean.
.
This package installs the finite groups theory part of the library
(finite groups, group quotients, group morphisms, group presentation,
group action...).
Description-md5:
Homepage: https://math-comp.github.io/math-comp/
Section: math
Priority: optional
Filename: pool/main/s/ssreflect/libcoq-mathcomp-fingroup_2.1.0-1+b1_amd64.deb
Source: ssreflect (2.1.0-1)
Version: 2.1.0-1+b1
Installed-Size: 7941
Maintainer: Debian OCaml Maintainers
Architecture: amd64
Replaces: libssreflect-coq
Provides: libcoq-mathcomp-fingroup-1h320
Depends: libcoq-mathcomp-ssreflect (= 2.1.0-1+b1), libcoq-hierarchy-builder-qv203, libcoq-stdlib-6gs52
Breaks: libssreflect-coq (<= 2.1.0-1+b1)
Size: 2020800
SHA256: b7268aac3d17e4b52bcaf9b22b3e7c449dfcf736e4a493c4b8c8c25b0c128aaf
SHA1: 14dd1329763bf4bb7e88ec6da546a3d84d1a0c41
MD5sum: 6478d73e9fecbdd0c7b96bd76dc1888f
Description: Mathematical Components library for Coq (finite groups)
The Mathematical Components Library is an extensive and coherent
repository of formalized mathematical theories. It is based on the
Coq proof assistant, powered with the Coq/SSReflect language.
.
These formal theories cover a wide spectrum of topics, ranging from
the formal theory of general-purpose data structures like lists,
prime numbers or finite graphs, to advanced topics in algebra.
.
The formalization technique adopted in the library, called "small
scale reflection", leverages the higher-order nature of Coq's
underlying logic to provide effective automation for many small,
clerical proof steps. This is often accomplished by restating
("reflecting") problems in a more concrete form, hence the name. For
example, arithmetic comparison is not an abstract predicate, but
rather a function computing a Boolean.
.
This package installs the finite groups theory part of the library
(finite groups, group quotients, group morphisms, group presentation,
group action...).
Description-md5:
Homepage: https://math-comp.github.io/math-comp/
Section: math
Priority: optional
Filename: pool/main/s/ssreflect/libcoq-mathcomp-fingroup_2.1.0-1+b1_amd64.deb