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The genre of Menippean satire is a form of satire, usually in prose, that is characterized by attacking mental attitudes rather than specific individuals or entities. [1] It has been broadly described as a mixture of allegory, picaresque narrative, and satirical commentary. [2]
Satire is a genre of the visual, literary, and performing arts, usually in the form of fiction and less frequently non-fiction, in which vices, follies, abuses, and shortcomings are held up to ridicule, often with the intent of exposing or shaming the perceived flaws of individuals, corporations, government, or society itself into improvement. [1]
Horatian – Horace (as in Horatian satire) Humean – David Hume; Hunterian – William Hunter (anatomist) (as in Hunterian Museum) Hussite – Jan Hus (as in Hussite Wars) Hutterite – Jacob Hutter; Ignatian – Ignatius of Loyola (as in Ignatian spirituality) Imeldific – Imelda Marcos (meaning ostentatious; extravagant)
Quintus Horatius Flaccus (Classical Latin: [ˈkʷiːntʊs (h)ɔˈraːtiʊs ˈfɫakːʊs]; 8 December 65 BC – 27 November 8 BC), [1] commonly known in the English-speaking world as Horace (/ ˈ h ɒr ɪ s /), was the leading Roman lyric poet during the time of Augustus (also known as Octavian).
A good model will always be found in Homer (ll, 1–152). (b) Dramatic poetry calls for special care – as to character drawing, propriety of representation, length of a play, number of actors, use of the chorus and its music, special features for the satyric type, verse-forms, and employment of Greek models (ll. 153–294).
Horatian; Juvenalian; Menippean; Social and political fiction. Libertarian sci-fi; Social sci-fi; Political thriller; Theatre-fiction; Thriller (or suspense): typically dark and suspenseful plot-driven fiction involving a person or group facing imminent harm, and the attempts made to evade that harm.
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The polarizable continuum model (PCM) is a commonly used method in computational chemistry to model solvation effects. If it is necessary to consider each solvent molecule as a separate molecule, the computational cost of modeling a solvent-mediated chemical reaction would grow prohibitively high.