{"id":48276,"date":"2019-11-09T23:22:04","date_gmt":"2019-11-09T22:22:04","guid":{"rendered":"https:\/\/www.thermal-engineering.org\/o-que-e-capacidade-de-calor-capacidade-especifica-de-calor-definicao\/"},"modified":"2020-01-28T14:18:13","modified_gmt":"2020-01-28T13:18:13","slug":"o-que-e-capacidade-de-calor-capacidade-especifica-de-calor-definicao","status":"publish","type":"post","link":"https:\/\/www.thermal-engineering.org\/pt-br\/o-que-e-capacidade-de-calor-capacidade-especifica-de-calor-definicao\/","title":{"rendered":"O que \u00e9 capacidade de calor &#8211; Capacidade espec\u00edfica de calor &#8211; Defini\u00e7\u00e3o"},"content":{"rendered":"<div class=\"su-quote su-quote-style-default\">\n<div class=\"su-quote-inner su-clearfix\">A capacidade t\u00e9rmica \u00e9 uma propriedade extensa.\u00a0A capacidade t\u00e9rmica de uma subst\u00e2ncia por unidade de massa \u00e9 denominada capacidade t\u00e9rmica espec\u00edfica (cp).\u00a0\u00c9 proporcionalidade constante entre o calor e a temperatura.\u00a0Engenharia T\u00e9rmica<\/div>\n<\/div>\n<div class=\"su-divider su-divider-style-dotted\"><\/div>\n<div class=\"lgc-column lgc-grid-parent lgc-grid-100 lgc-tablet-grid-100 lgc-mobile-grid-100 lgc-equal-heights lgc-first lgc-last\">\n<div class=\"inside-grid-column\">\n<div class=\"su-spacer\"><\/div>\n<h2>Capacidade de calor<\/h2>\n<p><strong><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/specific-heat-capacities-substances.png\"><img loading=\"lazy\" class=\"alignright size-full wp-image-16879 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/specific-heat-capacities-substances.png\" alt=\"Tabela de capacidades de calor espec\u00edficas\" width=\"301\" height=\"454\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/specific-heat-capacities-substances.png\" \/><\/a>Diferentes subst\u00e2ncias<\/strong>\u00a0s\u00e3o afetadas em\u00a0<strong>diferentes magnitudes<\/strong>\u00a0pela\u00a0<strong>adi\u00e7\u00e3o de calor<\/strong>\u00a0.\u00a0Quando uma determinada quantidade de calor \u00e9 adicionada a diferentes subst\u00e2ncias, suas temperaturas aumentam em diferentes quantidades.\u00a0Essa\u00a0<strong>constante de proporcionalidade<\/strong>\u00a0entre o\u00a0<strong>calor Q<\/strong>\u00a0que o objeto absorve ou perde e a\u00a0<strong>mudan\u00e7a de temperatura<\/strong>\u00a0resultante\u00a0<strong>T<\/strong>\u00a0do objeto \u00e9 conhecida como\u00a0<strong>capacidade de calor C<\/strong>\u00a0de um objeto.<\/p>\n<p><em><strong>C = Q \/ \u0394T<\/strong><\/em><\/p>\n<p><strong>A capacidade de calor<\/strong>\u00a0\u00e9 uma\u00a0<a title=\"Propriedades extensivas e intensivas\" href=\"https:\/\/www.nuclear-power.com\/nuclear-engineering\/thermodynamics\/extensive-and-intensive-properties\/\">propriedade extensa<\/a>\u00a0da mat\u00e9ria, o que significa que \u00e9 proporcional ao tamanho do sistema.\u00a0<strong>A capacidade t\u00e9rmica C<\/strong>\u00a0tem a unidade de energia por grau ou energia por kelvin.\u00a0Ao expressar o mesmo fen\u00f4meno que uma\u00a0<a title=\"Propriedades extensivas e intensivas\" href=\"https:\/\/www.nuclear-power.com\/nuclear-engineering\/thermodynamics\/extensive-and-intensive-properties\/\">propriedade intensiva<\/a>\u00a0, a\u00a0<strong>capacidade de aquecimento<\/strong>\u00a0\u00e9 dividida pela quantidade de subst\u00e2ncia, massa ou volume, portanto, a quantidade \u00e9 independente do tamanho ou extens\u00e3o da amostra.<\/p>\n<\/div>\n<\/div>\n<div class=\"lgc-column lgc-grid-parent lgc-grid-100 lgc-tablet-grid-100 lgc-mobile-grid-100 lgc-equal-heights lgc-first lgc-last\">\n<div class=\"inside-grid-column\">\n<div class=\"su-spacer\"><\/div>\n<h2>Capacidade espec\u00edfica de calor<\/h2>\n<p>A\u00a0<strong>capacidade t\u00e9rmica<\/strong>\u00a0de uma subst\u00e2ncia por unidade de massa \u00e9 denominada\u00a0<strong>capacidade t\u00e9rmica espec\u00edfica (c\u00a0<sub>p<\/sub>\u00a0)<\/strong>\u00a0da subst\u00e2ncia.\u00a0O \u00edndice p indica que a capacidade t\u00e9rmica e\u00a0<strong>a capacidade t\u00e9rmica espec\u00edfica se<\/strong>\u00a0aplicam quando o calor \u00e9 adicionado ou removido\u00a0<strong>a press\u00e3o constante<\/strong>\u00a0.<\/p>\n<p><strong><em>c\u00a0<sub>p<\/sub>\u00a0= Q \/ m\u0394T<\/em><\/strong><\/p>\n<\/div>\n<\/div>\n<div class=\"lgc-column lgc-grid-parent lgc-grid-100 lgc-tablet-grid-100 lgc-mobile-grid-100 lgc-equal-heights lgc-first lgc-last\">\n<div class=\"inside-grid-column\">\n<div class=\"su-spacer\"><\/div>\n<h2>Capacidade de calor espec\u00edfica do g\u00e1s ideal<\/h2>\n<p>No\u00a0<a title=\"Lei do g\u00e1s ideal\" href=\"https:\/\/www.nuclear-power.com\/nuclear-engineering\/thermodynamics\/ideal-gas-law\/\">Modelo de G\u00e1s Ideal<\/a>\u00a0, as\u00a0<strong>propriedades intensivas\u00a0<em>c\u00a0<sub>v<\/sub><\/em><\/strong>\u00a0e\u00a0<em><strong>c\u00a0<sub>p<\/sub><\/strong><\/em>\u00a0s\u00e3o definidas para subst\u00e2ncias compress\u00edveis puras e simples como derivadas parciais da\u00a0<strong>energia interna\u00a0<em>u (T, v)<\/em><\/strong>\u00a0e\u00a0<strong>entalpia\u00a0<em>h (T, p)<\/em><\/strong>\u00a0, respectivamente:<\/p>\n<p><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Specific-Heat-at-Constant-Volume-and-Constant-Pressure.png\"><img loading=\"lazy\" class=\"aligncenter size-full wp-image-16806 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Specific-Heat-at-Constant-Volume-and-Constant-Pressure.png\" alt=\"Calor espec\u00edfico a volume constante e press\u00e3o constante\" width=\"106\" height=\"138\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Specific-Heat-at-Constant-Volume-and-Constant-Pressure.png\" \/><\/a><\/p>\n<p><span>onde os subscritos\u00a0<\/span><strong><span>v<\/span><\/strong><span>\u00a0e\u00a0<\/span><strong><span>p<\/span><\/strong><span>\u00a0denotam as vari\u00e1veis \u200b\u200bmantidas fixas durante a diferencia\u00e7\u00e3o.\u00a0As propriedades\u00a0<\/span><strong><span>c\u00a0<\/span><sub><span>v<\/span><\/sub>\u00a0<\/strong><span>e\u00a0<\/span><strong><span>c\u00a0<\/span><sub><span>p<\/span><\/sub><\/strong><span>\u00a0s\u00e3o referidos como\u00a0<\/span><strong><span>calores espec\u00edficos<\/span><\/strong><span>\u00a0(ou\u00a0<\/span><strong><span>capacidades de calor<\/span><\/strong><span>\u00a0), porque, sob determinadas condi\u00e7\u00f5es especiais dizem respeito a mudan\u00e7a de temperatura de um sistema para a quantidade de energia adicionada pela transfer\u00eancia de calor.\u00a0As suas unidades SI s\u00e3o\u00a0<\/span><strong><span>J \/ kg K<\/span><\/strong><span>\u00a0ou\u00a0<\/span><strong><span>J \/ mol K<\/span><\/strong><span>\u00a0.\u00a0Dois aquecimentos espec\u00edficos s\u00e3o definidos para gases, um para\u00a0<\/span><strong><span>volume constante (c\u00a0<\/span><sub><span>v<\/span><\/sub><span>\u00a0)<\/span><\/strong><span>\u00a0e outro para\u00a0<\/span><strong><span>press\u00e3o constante (c\u00a0<\/span><sub><span>p<\/span><\/sub><span>\u00a0)<\/span><\/strong><span>\u00a0.<\/span><\/p>\n<p><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Molar-specific-heats-ideal-gas.png\"><img loading=\"lazy\" class=\"alignright size-full wp-image-16807 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Molar-specific-heats-ideal-gas.png\" alt=\"Calores molares espec\u00edficos - g\u00e1s ideal\" width=\"353\" height=\"251\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Molar-specific-heats-ideal-gas.png\" \/><\/a><span>De acordo com a\u00a0<\/span><strong><span>primeira lei da termodin\u00e2mica<\/span><\/strong><span>\u00a0, para processos de volume constante com um g\u00e1s ideal monat\u00f4mico, o calor molar espec\u00edfico ser\u00e1:<\/span><\/p>\n<p><strong><em><span>C\u00a0<\/span><sub><span>v<\/span><\/sub><span>\u00a0= 3 \/ 2R = 12,5 J \/ mol K<\/span><\/em><\/strong><\/p>\n<p><span>Porque<\/span><\/p>\n<p><strong><em><span>U = 3 \/ 2nRT<\/span><\/em><\/strong><\/p>\n<p><span>Pode-se derivar que o\u00a0<\/span><strong><span>calor molar espec\u00edfico<\/span><\/strong><span>\u00a0a press\u00e3o constante \u00e9:<\/span><\/p>\n<p><em><strong><span>C\u00a0<\/span><sub><span>p<\/span><\/sub><span>\u00a0= C\u00a0<\/span><sub><span>v<\/span><\/sub><span>\u00a0+ R = 5 \/ 2R = 20,8 J \/ mol K<\/span><\/strong><\/em><\/p>\n<p><span>Este\u00a0<\/span><strong><em><span>C\u00a0<\/span><sub><span>p<\/span><\/sub><\/em><\/strong><span>\u00a0\u00e9 maior do que o calor espec\u00edfico molar a volume constante\u00a0<\/span><strong><em><span>C\u00a0<\/span><sub><span>v<\/span><\/sub><\/em><\/strong><span>\u00a0, porque a energia deve agora ser fornecidos\u00a0<\/span><strong><span>n\u00e3o s\u00f3<\/span><\/strong><span>\u00a0para\u00a0<\/span><strong><span>aumentar a temperatura<\/span><\/strong><span>\u00a0do g\u00e1s, mas tamb\u00e9m para o\u00a0<\/span><strong><span>g\u00e1s de trabalho para fazer<\/span><\/strong><span>\u00a0porque neste volume caso altera\u00e7\u00f5es.<\/span><\/p>\n<\/div>\n<\/div>\n<p>&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;.<\/p>\n<p>Este artigo \u00e9 baseado na tradu\u00e7\u00e3o autom\u00e1tica do artigo original em ingl\u00eas. Para mais informa\u00e7\u00f5es, consulte o artigo em ingl\u00eas. Voc\u00ea pode nos ajudar. Se voc\u00ea deseja corrigir a tradu\u00e7\u00e3o, envie-a para: translations@nuclear-power.com ou preencha o formul\u00e1rio de tradu\u00e7\u00e3o on-line. Agradecemos sua ajuda, atualizaremos a tradu\u00e7\u00e3o o mais r\u00e1pido poss\u00edvel. Obrigado.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>A capacidade t\u00e9rmica \u00e9 uma propriedade extensa.\u00a0A capacidade t\u00e9rmica de uma subst\u00e2ncia por unidade de massa \u00e9 denominada capacidade t\u00e9rmica espec\u00edfica (cp).\u00a0\u00c9 proporcionalidade constante entre o calor e a temperatura.\u00a0Engenharia T\u00e9rmica Capacidade de calor Diferentes subst\u00e2ncias\u00a0s\u00e3o afetadas em\u00a0diferentes magnitudes\u00a0pela\u00a0adi\u00e7\u00e3o de calor\u00a0.\u00a0Quando uma determinada quantidade de calor \u00e9 adicionada a diferentes subst\u00e2ncias, suas temperaturas aumentam em &#8230; <a title=\"O que \u00e9 capacidade de calor &#8211; Capacidade espec\u00edfica de calor &#8211; Defini\u00e7\u00e3o\" class=\"read-more\" href=\"https:\/\/www.thermal-engineering.org\/pt-br\/o-que-e-capacidade-de-calor-capacidade-especifica-de-calor-definicao\/\" aria-label=\"More on O que \u00e9 capacidade de calor &#8211; Capacidade espec\u00edfica de calor &#8211; Defini\u00e7\u00e3o\">Ler mais<\/a><\/p>\n","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":[],"categories":[14],"tags":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v15.4 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>O que \u00e9 capacidade de calor - Capacidade espec\u00edfica de calor - Defini\u00e7\u00e3o<\/title>\n<meta name=\"description\" content=\"A capacidade t\u00e9rmica \u00e9 uma propriedade extensa. 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