{"id":41418,"date":"2019-09-27T02:11:19","date_gmt":"2019-09-27T01:11:19","guid":{"rendered":"https:\/\/www.thermal-engineering.org\/que-es-la-formula-de-energia-cinetica-ecuacion-definicion\/"},"modified":"2020-01-14T16:56:39","modified_gmt":"2020-01-14T15:56:39","slug":"que-es-la-formula-de-energia-cinetica-ecuacion-definicion","status":"publish","type":"post","link":"https:\/\/www.thermal-engineering.org\/es\/que-es-la-formula-de-energia-cinetica-ecuacion-definicion\/","title":{"rendered":"\u00bfQu\u00e9 es la f\u00f3rmula de energ\u00eda cin\u00e9tica? Ecuaci\u00f3n: definici\u00f3n"},"content":{"rendered":"<div class=\"su-quote su-quote-style-default\">\n<div class=\"su-quote-inner su-clearfix\">La f\u00f3rmula o ecuaci\u00f3n cl\u00e1sica de energ\u00eda cin\u00e9tica se puede utilizar en la mayor\u00eda de los casos.\u00a0Si la velocidad de un objeto est\u00e1 cerca de la velocidad de la luz, es necesario usar la f\u00f3rmula de energ\u00eda cin\u00e9tica relativista.\u00a0Ingenieria termal<\/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>F\u00f3rmula de energ\u00eda cin\u00e9tica<\/h2>\n<p><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/conservartion-of-mechanical-energy-pendulum.png\"><img loading=\"lazy\" class=\"alignright size-full wp-image-15713 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/conservartion-of-mechanical-energy-pendulum.png\" alt=\"conservaci\u00f3n de p\u00e9ndulo de energ\u00eda mec\u00e1nica\" width=\"282\" height=\"214\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/conservartion-of-mechanical-energy-pendulum.png\" \/><\/a><\/p>\n<p><strong>La energ\u00eda cin\u00e9tica,\u00a0<em>K<\/em><\/strong>\u00a0, se define como la energ\u00eda almacenada en un objeto debido a su movimiento.\u00a0Un objeto en movimiento tiene la capacidad de hacer trabajo y, por lo tanto, se puede decir que tiene energ\u00eda.\u00a0Se llama energ\u00eda cin\u00e9tica, de la palabra griega kinetikos, que significa &#8220;movimiento&#8221;.<\/p>\n<p>La\u00a0<strong>energ\u00eda cin\u00e9tica<\/strong>\u00a0depende de la velocidad de un objeto y es la capacidad de un objeto en movimiento para trabajar en otros objetos cuando choca con ellos.\u00a0Por otro lado, la energ\u00eda cin\u00e9tica de un objeto representa la cantidad de energ\u00eda requerida para aumentar la velocidad del objeto desde el reposo (v = 0) hasta su velocidad final.\u00a0La energ\u00eda cin\u00e9tica tambi\u00e9n depende linealmente de la masa, que es una medida num\u00e9rica de la\u00a0<strong>inercia<\/strong>\u00a0del objeto\u00a0y la medida de la resistencia de un objeto a la aceleraci\u00f3n cuando se aplica una fuerza.<\/p>\n<p><strong>F\u00f3rmula de energ\u00eda cin\u00e9tica<\/strong>\u00a0:<\/p>\n<p><em><strong>K = \u00bd mv\u00a0<sup>2<\/sup><\/strong><\/em><\/p>\n<p>Es la\u00a0<strong>energ\u00eda cin\u00e9tica traslacional<\/strong>\u00a0del objeto.\u00a0Debe agregarse, se llama energ\u00eda cin\u00e9tica &#8220;traslacional&#8221; para distinguirla de la energ\u00eda cin\u00e9tica rotacional.<\/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>F\u00f3rmula de energ\u00eda cin\u00e9tica relativista versus no relativista<\/h2>\n<figure id=\"attachment_16610\" class=\"wp-caption alignright\" aria-describedby=\"caption-attachment-16610\"><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/relativistic-kinetic-energy.png\"><img loading=\"lazy\" class=\"size-medium wp-image-16610 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/relativistic-kinetic-energy-300x182.png\" alt=\"energ\u00eda cin\u00e9tica relativista\" width=\"300\" height=\"182\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/relativistic-kinetic-energy-300x182.png\" \/><\/a><figcaption id=\"caption-attachment-16610\" class=\"wp-caption-text\">A medida que la velocidad de un objeto se acerca a la velocidad de la luz, la energ\u00eda cin\u00e9tica relativista se acerca al infinito.\u00a0Es causada por el factor Lorentz, que se acerca al infinito para v \u2192 c.<\/figcaption><\/figure>\n<p>La relaci\u00f3n previa entre el trabajo y la energ\u00eda cin\u00e9tica se basa en\u00a0<strong>las leyes del movimiento de Newton<\/strong>\u00a0.\u00a0Cuando generalizamos estas leyes de acuerdo con el principio de relatividad, necesitamos una generalizaci\u00f3n correspondiente de la ecuaci\u00f3n para\u00a0<strong>la energ\u00eda cin\u00e9tica<\/strong>\u00a0.\u00a0Si la velocidad de un objeto est\u00e1 cerca de la velocidad de la luz, es necesario utilizar una\u00a0<strong>mec\u00e1nica relativista<\/strong>\u00a0para calcular su\u00a0<strong>energ\u00eda cin\u00e9tica<\/strong>\u00a0.<\/p>\n<p><span>En\u00a0<\/span><strong><span>mec\u00e1nica cl\u00e1sica<\/span><\/strong><span>\u00a0, la energ\u00eda cin\u00e9tica y el momento se expresan como:<\/span><\/p>\n<p><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/classical-momentum-and-kinetic-energy.png\"><img loading=\"lazy\" class=\"aligncenter size-full wp-image-16618 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/classical-momentum-and-kinetic-energy.png\" alt=\"momento cl\u00e1sico y energ\u00eda cin\u00e9tica\" width=\"295\" height=\"113\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/classical-momentum-and-kinetic-energy.png\" \/><\/a><\/p>\n<p><span>La derivaci\u00f3n de sus\u00a0<\/span><strong><span>relaciones relativistas<\/span><\/strong><span>\u00a0se basa en la relaci\u00f3n\u00a0<\/span><strong><span>relativista\u00a0<\/span><\/strong><strong><span>energ\u00eda-momento:<\/span><\/strong><\/p>\n<p><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/energy-momentum-relation.png\"><img loading=\"lazy\" class=\"aligncenter size-full wp-image-16620 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/energy-momentum-relation.png\" alt=\"relaci\u00f3n energ\u00eda-momento\" width=\"217\" height=\"51\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/energy-momentum-relation.png\" \/><\/a><\/p>\n<p><span>Se puede derivar, la\u00a0<\/span><strong><span>energ\u00eda cin\u00e9tica relativista<\/span><\/strong><span>\u00a0y el momento relativista son:<\/span><\/p>\n<p><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/relativistic-kinetic-energy-formula.png\"><img loading=\"lazy\" class=\"aligncenter size-full wp-image-16619 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/relativistic-kinetic-energy-formula.png\" alt=\"energ\u00eda cin\u00e9tica relativista - f\u00f3rmula\" width=\"350\" height=\"145\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/relativistic-kinetic-energy-formula.png\" \/><\/a><\/p>\n<p><span>El primer t\u00e9rmino (\u00a0<\/span><strong><span>\u0263mc\u00a0<\/span><sup><span>2<\/span><\/sup><\/strong><span>\u00a0) de la\u00a0<\/span><strong><span>energ\u00eda cin\u00e9tica relativista<\/span><\/strong><span>\u00a0aumenta con la velocidad v de la part\u00edcula.\u00a0El segundo t\u00e9rmino (\u00a0<\/span><strong><span>mc\u00a0<\/span><sup><span>2<\/span><\/sup><\/strong><span>\u00a0) es constante;\u00a0Se llama\u00a0<\/span><strong><span>energ\u00eda en reposo<\/span><\/strong><span>\u00a0\u00a0(masa en reposo) de la part\u00edcula, y representa una forma de energ\u00eda que tiene una part\u00edcula incluso cuando est\u00e1 a\u00a0<\/span><strong><span>velocidad cero<\/span><\/strong><span>\u00a0.\u00a0Cuando la velocidad de un objeto se acerca a la velocidad de la luz, la\u00a0<\/span><strong><span>energ\u00eda cin\u00e9tica se acerca al infinito<\/span><\/strong><span>\u00a0.\u00a0Es causada por el\u00a0<\/span><strong><span>factor Lorentz<\/span><\/strong><span>\u00a0, que se acerca al infinito para\u00a0<\/span><strong><span>v \u2192 c<\/span><\/strong><span>\u00a0.\u00a0Por lo tanto, la velocidad de la luz no puede ser alcanzada por ninguna part\u00edcula masiva.<\/span><\/p>\n<p><span>El primer t\u00e9rmino (\u0263mc\u00a0<\/span><sup><span>2<\/span><\/sup><span>\u00a0) se conoce como la\u00a0<\/span><strong><span>energ\u00eda total E<\/span><\/strong><span>\u00a0de la part\u00edcula, porque es igual a la energ\u00eda en reposo m\u00e1s la energ\u00eda cin\u00e9tica:<\/span><\/p>\n<p><span>E = K + mc\u00a0<\/span><sup><span>2<\/span><\/sup><\/p>\n<p><span>Para una part\u00edcula en reposo, es decir, K es cero, por lo que la energ\u00eda total es su energ\u00eda en reposo:<\/span><\/p>\n<p><span>E = mc\u00a0<\/span><sup><span>2<\/span><\/sup><\/p>\n<p><span>Este es uno de los resultados sorprendentes de\u00a0<\/span><strong><span>la teor\u00eda de la relatividad de Einstein<\/span><\/strong><span>\u00a0es que la\u00a0<\/span><strong><span>masa y la energ\u00eda son equivalentes y convertibles<\/span><\/strong><span>\u00a0una en la otra.\u00a0La famosa f\u00f3rmula\u00a0<a href=\"https:\/\/www.nuclear-power.com\/nuclear-power\/nuclear-energy\/emc2-meaning\/\"><strong>E = mc\u00a0<\/strong><\/a><a href=\"https:\/\/www.nuclear-power.com\/nuclear-power\/nuclear-energy\/emc2-meaning\/\"><strong><sup>2<\/sup><\/strong><\/a>\u00a0describe la\u00a0<\/span><strong><span>equivalencia<\/span><\/strong><span>\u00a0de la masa y la energ\u00eda\u00a0.\u00a0Este resultado ha sido confirmado experimentalmente innumerables veces en f\u00edsica de part\u00edculas nucleares y elementales.\u00a0Por ejemplo, vea\u00a0<a href=\"https:\/\/www.nuclear-power.com\/nuclear-power\/reactor-physics\/interaction-radiation-matter\/interaction-gamma-radiation-matter\/pair-production\/\">Producci\u00f3n de pares de positrones-electrones<\/a>\u00a0o\u00a0<a href=\"https:\/\/www.nuclear-power.com\/laws-of-conservation\/law-of-conservation-of-energy\/conservation-of-energy-in-nuclear-reactions\/\">Conservaci\u00f3n de energ\u00eda en reacciones nucleares<\/a>\u00a0.<\/span><\/p>\n<p><span>Ver tambi\u00e9n:\u00a0<\/span><a title=\"Masa relativista\" href=\"https:\/\/www.nuclear-power.com\/nuclear-engineering\/thermodynamics\/thermodynamic-properties\/what-is-mass-and-weight\/relativistic-mass-2\/\"><span>masa relativista<\/span><\/a><\/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 art\u00edculo se basa en la traducci\u00f3n autom\u00e1tica del art\u00edculo original en ingl\u00e9s. Para m\u00e1s informaci\u00f3n vea el art\u00edculo en ingl\u00e9s. Puedes ayudarnos. Si desea corregir la traducci\u00f3n, env\u00edela a: translations@nuclear-power.com o complete el formulario de traducci\u00f3n en l\u00ednea. Agradecemos su ayuda, actualizaremos la traducci\u00f3n lo antes posible. Gracias.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>La f\u00f3rmula o ecuaci\u00f3n cl\u00e1sica de energ\u00eda cin\u00e9tica se puede utilizar en la mayor\u00eda de los casos.\u00a0Si la velocidad de un objeto est\u00e1 cerca de la velocidad de la luz, es necesario usar la f\u00f3rmula de energ\u00eda cin\u00e9tica relativista.\u00a0Ingenieria termal F\u00f3rmula de energ\u00eda cin\u00e9tica La energ\u00eda cin\u00e9tica,\u00a0K\u00a0, se define como la energ\u00eda almacenada en un &#8230; <a title=\"\u00bfQu\u00e9 es la f\u00f3rmula de energ\u00eda cin\u00e9tica? Ecuaci\u00f3n: definici\u00f3n\" class=\"read-more\" href=\"https:\/\/www.thermal-engineering.org\/es\/que-es-la-formula-de-energia-cinetica-ecuacion-definicion\/\" aria-label=\"M\u00e1s en \u00bfQu\u00e9 es la f\u00f3rmula de energ\u00eda cin\u00e9tica? Ecuaci\u00f3n: definici\u00f3n\">Leer m\u00e1s<\/a><\/p>\n","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":[],"categories":[16],"tags":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v15.4 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>\u00bfQu\u00e9 es la f\u00f3rmula de energ\u00eda cin\u00e9tica? Ecuaci\u00f3n: definici\u00f3n<\/title>\n<meta name=\"description\" content=\"La f\u00f3rmula o ecuaci\u00f3n cl\u00e1sica de energ\u00eda cin\u00e9tica se puede utilizar en la mayor\u00eda de los casos. 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