strongly typed - Definition. Was ist strongly typed
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Was (wer) ist strongly typed - definition

MATERIALS WITH ELECTRICAL PROPERTIES THAT CANNOT BE EXPLAINED BY NON-INTERACTING ENTITIES
Strongly Correlated Material; Strongly correlated Material; Strongly Correlated material; Strongly correlated materials; Strongly correlated Materials; Strongly Correlated materials; Strongly Correlated Materials; Strongly correlated electrons; Strongly correlated electron systems

strongly typed         
PROGRAMMING LANGUAGE TYPE SYSTEMS
Strongly typed languages; Strongly typed language; Strong typing; Weakly-typed programming language; Strongly-typed (programming language); Strongly-typed programming languages; Weakly-typed programming languages; Strongly-typed (programming languages); Strongly-typed; Strongly typed; Weakly-typed (programming languages); Weakly-typed; Weakly typed; Weak typing; Strong type; Strong data typing; Loose typing; Strongly-typed programming language; Strongly typed programming language; Type strength; Weak and Strong typing; Loosely-typed; Weakly typed language; Loosely typed; Strictly typed
strong typing         
PROGRAMMING LANGUAGE TYPE SYSTEMS
Strongly typed languages; Strongly typed language; Strong typing; Weakly-typed programming language; Strongly-typed (programming language); Strongly-typed programming languages; Weakly-typed programming languages; Strongly-typed (programming languages); Strongly-typed; Strongly typed; Weakly-typed (programming languages); Weakly-typed; Weakly typed; Weak typing; Strong type; Strong data typing; Loose typing; Strongly-typed programming language; Strongly typed programming language; Type strength; Weak and Strong typing; Loosely-typed; Weakly typed language; Loosely typed; Strictly typed
<programming> Strict enforcement of type rules with no exceptions. Incorrect type usage can be detected either at run time or at compile time. Strong typing catches more type errors than weak typing, resulting in fewer hard errors. In a strongly typed language, conversion between types requires the use of explicit conversion functions as opposed to implicit type coercion. Typing strength is a continuum; ML is more strongly typed than Java, which is more strongly typed than C. Strong or weak typing is independent of the choice between static typing and dynamic typing. Among strongly typed languages, Ada, Java, Haskell and ML are statically typed, whereas Python and Ruby are dynamically typed. (2004-07-20)
Strong and weak typing         
PROGRAMMING LANGUAGE TYPE SYSTEMS
Strongly typed languages; Strongly typed language; Strong typing; Weakly-typed programming language; Strongly-typed (programming language); Strongly-typed programming languages; Weakly-typed programming languages; Strongly-typed (programming languages); Strongly-typed; Strongly typed; Weakly-typed (programming languages); Weakly-typed; Weakly typed; Weak typing; Strong type; Strong data typing; Loose typing; Strongly-typed programming language; Strongly typed programming language; Type strength; Weak and Strong typing; Loosely-typed; Weakly typed language; Loosely typed; Strictly typed
In computer programming, one of the many ways that programming languages are colloquially classified is whether the language's type system makes it strongly typed or weakly typed (loosely typed). However, there is no precise technical definition of what the terms mean and different authors disagree about the implied meaning of the terms and the relative rankings of the "strength" of the type systems of mainstream programming languages.

Wikipedia

Strongly correlated material

Strongly correlated materials are a wide class of compounds that include insulators and electronic materials, and show unusual (often technologically useful) electronic and magnetic properties, such as metal-insulator transitions, heavy fermion behavior, half-metallicity, and spin-charge separation. The essential feature that defines these materials is that the behavior of their electrons or spinons cannot be described effectively in terms of non-interacting entities. Theoretical models of the electronic (fermionic) structure of strongly correlated materials must include electronic (fermionic) correlation to be accurate. As of recently, the label quantum materials is also used to refer to strongly correlated materials, among others.