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Hyperbole (/ h aɪ ˈ p ɜːr b əl i / ⓘ; adj. hyperbolic / ˌ h aɪ p ər ˈ b ɒ l ɪ k / ⓘ) is the use of exaggeration as a rhetorical device or figure of speech. In rhetoric , it is also sometimes known as auxesis (literally 'growth').
Hyperbolic may refer to: of or pertaining to a hyperbola, a type of smooth curve lying in a plane in mathematics Hyperbolic geometry, a non-Euclidean geometry; Hyperbolic functions, analogues of ordinary trigonometric functions, defined using the hyperbola; of or pertaining to hyperbole, the use of exaggeration as a rhetorical device or figure ...
The word "hyperbola" derives from the Greek ὑπερβολή, meaning "over-thrown" or "excessive", from which the English term hyperbole also derives. Hyperbolae were discovered by Menaechmus in his investigations of the problem of doubling the cube, but were then called sections of obtuse cones. [2]
Auxesis (Ancient Greek: αὔξησις, aúxēsis) is the Greek word for "growth" or "increase".In rhetoric, it refers to varying forms of increase: . hyperbole (overstatement): intentionally overstating a point, its importance, or its significance [1] [2] [3]
You may have vague recollections of hyperbole from high school English or Language Arts class es. Or, perhaps you’re a seasoned writer looking to add more hyperbole examples to your arsenal.
Hyperbolic functions are used to express the angle of parallelism in hyperbolic geometry. They are used to express Lorentz boosts as hyperbolic rotations in special relativity . They also occur in the solutions of many linear differential equations (such as the equation defining a catenary ), cubic equations , and Laplace's equation in ...
In Hungarian, csilliárd is used [citation needed] in the same "indefinitely large number" sense as "zillion" in English, and is thought to be a humorous portmanteau of the words csillag ("star", referring to the vast number of stars) and milliárd ("billion", cf. long scale).
Hyperbolic coordinates plotted on the Euclidean plane: all points on the same blue ray share the same coordinate value u, and all points on the same red hyperbola share the same coordinate value v. In mathematics, hyperbolic coordinates are a method of locating points in quadrant I of the Cartesian plane