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GERMAN WEBSITES

Domain and Website Information:

e-apply.de

Deutsche




About site:


Domain name - e-apply.de


Site title - Attention Required! | Cloudflare


Go to website - Attention Required! | Cloudflare



Words count at e-apply.de:

you - 6
this - 5
the - 5
cloudflare - 4
blocked - 3
security - 3
please - 2
have - 2
been - 2
are - 2

See complete list



Site GEO location


Location Country - United States



City/Town - Ashburn



Provider - AMAZON-AES



e-apply.de GEO Location on Map



Site Logo



There is no Open Graph data at e-apply.de


Information for domain e-apply.de


IP address:

52.20.84.62


Domain name servers:


ns1.atom.com ns2.atom.com


All records:


☆ e-apply.de. 3600 IN NS ns2.atom.com.
☆ e-apply.de. 3600 IN NS ns1.atom.com.
☆ e-apply.de. 3600 IN A 52.20.84.62
☆ e-apply.de. 3600 IN SOA ns1.atom.com. hostmaster.e-apply.de. 2024060602 10800 3600 604800 3600



Whois server information for e-apply.de

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Domain: e-apply.de
Nserver: ns1.atom.com
Nserver: ns2.atom.com
Status: connect
Changed: 2024-06-21T12:37:21+02:00



Brief facts about apply:

In mathematics and computer science, apply is a function that applies a function to arguments. It is central to programming languages derived from lambda calculus, such as LISP and Scheme, and also in functional languages. It has a role in the study of the denotational semantics of computer programs, because it is a continuous function on complete partial orders. Apply is also a continuous function in homotopy theory, and, indeed underpins the entire theory: it allows a homotopy deformation to be viewed as a continuous path in the space of functions. Likewise, valid mutations of computer programs can be seen as those that are "continuous" in the Scott topology. The most general setting for apply is in category theory, where it is right adjoint to currying in closed monoidal categories. A special case of this are the Cartesian closed categories, whose internal language is simply typed lambda calculus.

Higher-order functions

Adjoint functors

Functional programming

 

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