See anentropy in All languages combined, or Wiktionary
{ "etymology_templates": [ { "args": { "1": "en", "2": "an", "3": "entropy" }, "expansion": "an- + entropy", "name": "prefix" } ], "etymology_text": "From an- + entropy.", "forms": [ { "form": "anentropies", "tags": [ "plural" ] } ], "head_templates": [ { "args": { "1": "~" }, "expansion": "anentropy (countable and uncountable, plural anentropies)", "name": "en-noun" } ], "lang": "English", "lang_code": "en", "pos": "noun", "senses": [ { "categories": [ { "kind": "topical", "langcode": "en", "name": "Physical chemistry", "orig": "en:Physical chemistry", "parents": [ "Chemistry", "Physics", "Sciences", "All topics", "Fundamental" ], "source": "w" }, { "kind": "topical", "langcode": "en", "name": "Thermodynamics", "orig": "en:Thermodynamics", "parents": [ "Physics", "Sciences", "All topics", "Fundamental" ], "source": "w" }, { "_dis": "77 7 16", "kind": "other", "name": "English entries with incorrect language header", "parents": [ "Entries with incorrect language header", "Entry maintenance" ], "source": "w+disamb" }, { "_dis": "81 10 9", "kind": "other", "name": "Pages with 1 entry", "parents": [], "source": "w+disamb" }, { "_dis": "89 5 6", "kind": "other", "name": "Pages with entries", "parents": [], "source": "w+disamb" } ], "examples": [ { "ref": "2001, Automatic Documentation and Mathematical Linguistics, page 15:", "text": "Treivus has pointed out that the anentropy, apart from a constant factor (the universal gas constant) is equal to the chemical affinity for one componenent in a themodynamic system.", "type": "quote" } ], "glosses": [ "A measure of the purity or chemical affinity in a thermodynamic system." ], "id": "en-anentropy-en-noun-S6Q66jzJ", "links": [ [ "physical chemistry", "physical chemistry" ], [ "thermodynamics", "thermodynamics" ], [ "purity", "purity" ], [ "chemical", "chemical" ], [ "affinity", "affinity" ], [ "thermodynamic", "thermodynamic" ] ], "raw_glosses": [ "(physical chemistry, thermodynamics, countable and uncountable) A measure of the purity or chemical affinity in a thermodynamic system." ], "tags": [ "countable", "physical", "uncountable" ], "topics": [ "chemistry", "natural-sciences", "physical-sciences", "physics", "thermodynamics" ] }, { "categories": [ { "kind": "topical", "langcode": "en", "name": "Statistics", "orig": "en:Statistics", "parents": [ "Formal sciences", "Mathematics", "Sciences", "All topics", "Fundamental" ], "source": "w" } ], "examples": [ { "ref": "2004, F. Wall, A. N. Zaitsev, Phoscorites and Carbonatites from Mantle to Mine, →ISBN, page 66:", "text": "The advantages of the RHA method are that it is flexible and can deal with all variants of phoscorites, including diopside and phlogopite-bearing varieties, as well as the continuous series through to carbonatite (Table 2.4) and other related rocks. It gives a measure of complexity of composition and of minor components in the entropy and anentropy values.", "type": "quote" }, { "ref": "2012 March, Томас Георгиевич Петров, S.V. Moshkin, “RHA (Т)-System for Coding of Discrete Distributions and Their Alteration Processes”, in Proceedings of the 3rd International Multi-Conference on Complexity, Informatics and Cybernetics IMCIC-2012:", "text": "Here, R is rank formula of composition – a sequence of components by reduction of their value (contents); Н is Shannon information entropy – complexity measure; А – anentropy – measure of purity; Т – tolerance – measure of ultrapurity.", "type": "quote" } ], "glosses": [ "A measure of the simplicity or purity of a distribution." ], "id": "en-anentropy-en-noun-4yaoFyh-", "links": [ [ "statistics", "statistics" ], [ "simplicity", "simplicity" ], [ "purity", "purity" ], [ "distribution", "distribution" ] ], "raw_glosses": [ "(statistics, countable and uncountable) A measure of the simplicity or purity of a distribution." ], "tags": [ "countable", "uncountable" ], "topics": [ "mathematics", "sciences", "statistics" ] }, { "categories": [ { "_dis": "21 11 68", "kind": "other", "name": "English terms prefixed with an-", "parents": [], "source": "w+disamb" } ], "examples": [ { "ref": "1997, Robert L. Schwarz, Metaphors and Action Schemes: Some Themes in Intellectual History, →ISBN:", "text": "All these assume a kind of anentropy, a rising of order out of disorder, implicitly embodying a kind of anthropic intent, which Plato articulated as the soul, identified as the primal mover, the initiator of action.", "type": "quote" }, { "ref": "2000, D. B. Clark, Self-Development and Transcendence, →ISBN, page 57:", "text": "It is anentropy in the midst of entropy. Therefore, regarding life as defined the concept of homeostasis is only applicable in a relative sense.", "type": "quote" }, { "ref": "2014, Colin Hannaford, Educating Messiahs, →ISBN, page 40:", "text": "Science has the happy distinction of finding a balance between entropy and anentropy: between the need to conserve order with progress.", "type": "quote" } ], "glosses": [ "An increase in order." ], "id": "en-anentropy-en-noun-TF78fj3R", "links": [ [ "increase", "increase" ], [ "order", "order" ] ], "raw_glosses": [ "(uncountable) An increase in order." ], "tags": [ "uncountable" ] } ], "word": "anentropy" }
{ "categories": [ "English countable nouns", "English entries with incorrect language header", "English lemmas", "English nouns", "English terms prefixed with an-", "English uncountable nouns", "Pages with 1 entry", "Pages with entries" ], "etymology_templates": [ { "args": { "1": "en", "2": "an", "3": "entropy" }, "expansion": "an- + entropy", "name": "prefix" } ], "etymology_text": "From an- + entropy.", "forms": [ { "form": "anentropies", "tags": [ "plural" ] } ], "head_templates": [ { "args": { "1": "~" }, "expansion": "anentropy (countable and uncountable, plural anentropies)", "name": "en-noun" } ], "lang": "English", "lang_code": "en", "pos": "noun", "senses": [ { "categories": [ "English countable nouns", "English terms with quotations", "English uncountable nouns", "en:Physical chemistry", "en:Thermodynamics" ], "examples": [ { "ref": "2001, Automatic Documentation and Mathematical Linguistics, page 15:", "text": "Treivus has pointed out that the anentropy, apart from a constant factor (the universal gas constant) is equal to the chemical affinity for one componenent in a themodynamic system.", "type": "quote" } ], "glosses": [ "A measure of the purity or chemical affinity in a thermodynamic system." ], "links": [ [ "physical chemistry", "physical chemistry" ], [ "thermodynamics", "thermodynamics" ], [ "purity", "purity" ], [ "chemical", "chemical" ], [ "affinity", "affinity" ], [ "thermodynamic", "thermodynamic" ] ], "raw_glosses": [ "(physical chemistry, thermodynamics, countable and uncountable) A measure of the purity or chemical affinity in a thermodynamic system." ], "tags": [ "countable", "physical", "uncountable" ], "topics": [ "chemistry", "natural-sciences", "physical-sciences", "physics", "thermodynamics" ] }, { "categories": [ "English countable nouns", "English terms with quotations", "English uncountable nouns", "en:Statistics" ], "examples": [ { "ref": "2004, F. Wall, A. N. Zaitsev, Phoscorites and Carbonatites from Mantle to Mine, →ISBN, page 66:", "text": "The advantages of the RHA method are that it is flexible and can deal with all variants of phoscorites, including diopside and phlogopite-bearing varieties, as well as the continuous series through to carbonatite (Table 2.4) and other related rocks. It gives a measure of complexity of composition and of minor components in the entropy and anentropy values.", "type": "quote" }, { "ref": "2012 March, Томас Георгиевич Петров, S.V. Moshkin, “RHA (Т)-System for Coding of Discrete Distributions and Their Alteration Processes”, in Proceedings of the 3rd International Multi-Conference on Complexity, Informatics and Cybernetics IMCIC-2012:", "text": "Here, R is rank formula of composition – a sequence of components by reduction of their value (contents); Н is Shannon information entropy – complexity measure; А – anentropy – measure of purity; Т – tolerance – measure of ultrapurity.", "type": "quote" } ], "glosses": [ "A measure of the simplicity or purity of a distribution." ], "links": [ [ "statistics", "statistics" ], [ "simplicity", "simplicity" ], [ "purity", "purity" ], [ "distribution", "distribution" ] ], "raw_glosses": [ "(statistics, countable and uncountable) A measure of the simplicity or purity of a distribution." ], "tags": [ "countable", "uncountable" ], "topics": [ "mathematics", "sciences", "statistics" ] }, { "categories": [ "English terms with quotations", "English uncountable nouns" ], "examples": [ { "ref": "1997, Robert L. Schwarz, Metaphors and Action Schemes: Some Themes in Intellectual History, →ISBN:", "text": "All these assume a kind of anentropy, a rising of order out of disorder, implicitly embodying a kind of anthropic intent, which Plato articulated as the soul, identified as the primal mover, the initiator of action.", "type": "quote" }, { "ref": "2000, D. B. Clark, Self-Development and Transcendence, →ISBN, page 57:", "text": "It is anentropy in the midst of entropy. Therefore, regarding life as defined the concept of homeostasis is only applicable in a relative sense.", "type": "quote" }, { "ref": "2014, Colin Hannaford, Educating Messiahs, →ISBN, page 40:", "text": "Science has the happy distinction of finding a balance between entropy and anentropy: between the need to conserve order with progress.", "type": "quote" } ], "glosses": [ "An increase in order." ], "links": [ [ "increase", "increase" ], [ "order", "order" ] ], "raw_glosses": [ "(uncountable) An increase in order." ], "tags": [ "uncountable" ] } ], "word": "anentropy" }
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