higher-order variation - ορισμός. Τι είναι το higher-order variation
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Τι (ποιος) είναι higher-order variation - ορισμός

FORM OF PREDICATE LOGIC THAT IS DISTINGUISHED FROM FIRST-ORDER LOGIC BY ADDITIONAL QUANTIFIERS AND, SOMETIMES, STRONGER SEMANTICS
Higher-order predicate; Higher order logic; Higher order logics; Ordered logic; Higher-order logics; High order logic; High-order logic; Order (logic); Semantics of higher-order logic

Higher-order thinking         
  • Categories in the cognitive domain of [[Bloom's taxonomy]] (Anderson & Krathwohl, 2001)
EDUCATION CONCEPT ARGUING THAT SOME TYPES OF LEARNING REQUIRE MORE COGNITIVE PROCESSING BUT ALSO HAVE MORE GENERALIZED BENEFITS
Higher order thinking skills; Higher order thinking; High Order Thinking Skills
Higher-order thinking, known as higher order thinking skills (HOTS), is a concept of education reform based on learning taxonomies (such as Bloom's taxonomy). The idea is that some types of learning require more cognitive processing than others, but also have more generalized benefits.
Higher-order logic         
In mathematics and logic, a higher-order logic is a form of predicate logic that is distinguished from first-order logic by additional quantifiers and, sometimes, stronger semantics. Higher-order logics with their standard semantics are more expressive, but their model-theoretic properties are less well-behaved than those of first-order logic.
variation         
WIKIMEDIA DISAMBIGUATION PAGE
Variations; Varied; Varying; Variation (disambiguation); Viccitude; Variations (album); Variation (combinatorics); Variations (Combinatorics); Variation (Combinatorics)
¦ noun
1. a change or slight difference in condition, amount, or level.
(also magnetic variation) the angular difference between true north and magnetic north at a particular place.
2. a different or distinct form or version.
Music a new but still recognizable version of a theme.
Ballet a solo dance as part of a performance.
Derivatives
variational adjective

Βικιπαίδεια

Higher-order logic

In mathematics and logic, a higher-order logic is a form of predicate logic that is distinguished from first-order logic by additional quantifiers and, sometimes, stronger semantics. Higher-order logics with their standard semantics are more expressive, but their model-theoretic properties are less well-behaved than those of first-order logic.

The term "higher-order logic", abbreviated as HOL, is commonly used to mean higher-order simple predicate logic. Here "simple" indicates that the underlying type theory is the theory of simple types, also called the simple theory of types (see Type theory). Leon Chwistek and Frank P. Ramsey proposed this as a simplification of the complicated and clumsy ramified theory of types specified in the Principia Mathematica by Alfred North Whitehead and Bertrand Russell. Simple types is nowadays sometimes also meant to exclude polymorphic and dependent types.