{"id":400,"date":"2023-06-19T12:50:28","date_gmt":"2023-06-19T12:50:28","guid":{"rendered":"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/"},"modified":"2023-06-19T12:50:28","modified_gmt":"2023-06-19T12:50:28","slug":"il-moto-circolare-accelera-uniformemente-mcua","status":"publish","type":"post","link":"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/","title":{"rendered":"Moto circolare uniformemente accelerato (mcua)"},"content":{"rendered":"<p>Questo articolo spiega cos&#8217;\u00e8 in fisica il movimento circolare uniformemente accelerato (MCUA), chiamato anche movimento circolare uniformemente vario (MCUA). Troverai anche le caratteristiche dell&#8217;MCUA e tutte le formule per questo tipo di movimento circolare. <\/p>\n<h2 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"%C2%BFQue-es-el-movimiento-circular-uniformemente-acelerado-MCUA\"><\/span> Cos\u2019\u00e8 il moto circolare uniformemente accelerato (UACM)?<span class=\"ez-toc-section-end\"><\/span><\/h2>\n<p> <strong>Il movimento circolare uniformemente accelerato (MCUA)<\/strong> , chiamato anche <strong>movimento circolare uniformemente vario (MCUV)<\/strong> , \u00e8 un movimento che descrive un corpo in movimento che ruota attorno ad un asse con accelerazione angolare costante. Pertanto, la velocit\u00e0 angolare di un MCUA varia uniformemente.<\/p>\n<p> Ad esempio, la ruota di un&#8217;auto in fase di avviamento segue un moto circolare uniformemente accelerato (MCUA). Allo stesso modo, anche fermare un ventilatore o far girare una trottola sono esempi di movimenti circolari uniformemente accelerati. <\/p>\n<figure class=\"wp-block-image aligncenter size-full is-resized\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/exemple-mouvement-circulaire-uniformement-accelere-mcua.png\" alt=\"esempio di moto circolare uniformemente accelerato (UACM)\" class=\"wp-image-7577\" width=\"350\" height=\"294\" srcset=\"https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/exemple-mouvement-circulaire-uniformement-accelere-mcua-300x252.png 300w, https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/exemple-mouvement-circulaire-uniformement-accelere-mcua.png 516w\" sizes=\"auto, (max-width: 300px) 100vw, 300px\"><\/figure>\n<p> La <strong>differenza tra moto circolare uniformemente accelerato (MCUA) e moto circolare uniforme (MCU)<\/strong> \u00e8 il valore della velocit\u00e0 angolare. In un MCU la velocit\u00e0 angolare \u00e8 costante, tuttavia, in un MCUA la velocit\u00e0 angolare aumenta o diminuisce nel tempo. <\/p>\n<div style=\"background-color:#FFFDE7; padding-top: 10px; padding-bottom: 10px; padding-right: 10px; padding-left: 20px; border: 2.5px dashed #FFB74D; border-radius:20px;\"> <span style=\"color:#ff951b\">\u27a4<\/span> <strong>Vedi:<\/strong> <a href=\"https:\/\/physigeek.com\/it\/moto-circolare-uniforme-mcu\/\">Moto Circolare Uniforme (UCM)<\/a> <\/div>\n<h2 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"Caracteristicas-del-movimiento-circular-uniformemente-acelerado\"><\/span> Caratteristiche del moto circolare uniformemente accelerato<span class=\"ez-toc-section-end\"><\/span><\/h2>\n<p> Un moto circolare uniformemente accelerato (MCUA) ha le seguenti caratteristiche:<\/p>\n<ol style=\"color:#4fd12f; font-weight: bold;\">\n<li style=\"margin-bottom:20px\"> <span style=\"color:#101010;font-weight: normal;\"><strong>La caratteristica principale del moto circolare uniformemente accelerato (MCUA) \u00e8 che l&#8217;accelerazione angolare (\u03b1) \u00e8 costante.<\/strong> Pertanto, la velocit\u00e0 angolare di un MCUA non \u00e8 costante, ma aumenta o diminuisce linearmente nel tempo.<\/span><\/li>\n<li style=\"margin-bottom:20px\"> <span style=\"color:#101010;font-weight: normal;\">La velocit\u00e0 del corpo (v) che descrive un moto circolare uniformemente accelerato \u00e8 tangente alla traiettoria circolare, per questo motivo viene chiamata velocit\u00e0 tangenziale o velocit\u00e0 lineare. La velocit\u00e0 del corpo aumenta o diminuisce linearmente con il tempo.<\/span><\/li>\n<li style=\"margin-bottom:20px\"> <span style=\"color:#101010;font-weight: normal;\">L&#8217;accelerazione centripeta (o accelerazione normale) \u00e8 la componente vettoriale dell&#8217;accelerazione del mobile che provoca il cambio di direzione della sua velocit\u00e0 ed \u00e8 quindi la causa della traiettoria circolare. L&#8217;accelerazione centripeta (a <sub>c<\/sub> ) \u00e8 perpendicolare alla velocit\u00e0 tangenziale e punta verso il centro della traiettoria circolare.<\/span><\/li>\n<li style=\"margin-bottom:20px\"> <span style=\"color:#101010;font-weight: normal;\">L&#8217;accelerazione tangenziale ( <sub>at<\/sub> ) \u00e8 tangente alla traiettoria ed \u00e8 la componente vettoriale dell&#8217;accelerazione del mobile che provoca la variazione dell&#8217;ampiezza della sua velocit\u00e0. Pertanto, se l&#8217;accelerazione angolare \u00e8 positiva, anche l&#8217;accelerazione tangenziale sar\u00e0 positiva e la velocit\u00e0 tangenziale aumenter\u00e0. D&#8217;altra parte, se l&#8217;accelerazione angolare \u00e8 negativa, anche l&#8217;accelerazione tangenziale sar\u00e0 negativa e la velocit\u00e0 tangenziale diminuir\u00e0.<\/span> <\/li>\n<\/ol>\n<figure class=\"wp-block-image aligncenter size-full is-resized\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/mouvement-circulaire-uniformement-accelere-mcua.png\" alt=\"moto circolare uniformemente accelerato (MCUA)\" class=\"wp-image-7580\" width=\"302\" height=\"393\" srcset=\"https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/mouvement-circulaire-uniformement-accelere-mcua-231x300.png 231w, https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/mouvement-circulaire-uniformement-accelere-mcua.png 437w\" sizes=\"auto, (max-width: 231px) 100vw, 231px\"><\/figure>\n<h2 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"Formulas-del-movimiento-circular-uniformemente-acelerado\"><\/span> Formule del moto circolare uniformemente accelerato<span class=\"ez-toc-section-end\"><\/span><\/h2>\n<p> Successivamente vedremo quali sono tutte le formule per il movimento circolare uniformemente accelerato (MCUA), noto anche come movimento circolare uniformemente vario (MCUV). Queste formule ci permetteranno di risolvere esercizi di questo tipo di movimento.<\/p>\n<h3 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"Posicion-angular\"><\/span> posizione angolare<span class=\"ez-toc-section-end\"><\/span><\/h3>\n<p> La posizione angolare si riferisce all&#8217;angolo percorso dal mobile che descrive un movimento circolare uniformemente accelerato. Pertanto, la formula per calcolare la posizione angolare di un mobile che esegue un MCUA \u00e8 la seguente:<\/p>\n<p class=\"has-text-align-center\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-7bdba50955cc964a96e6eb130757b984_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\theta =\\theta_0+\\omega_0\\cdot t +\\cfrac{1}{2}\\cdot\\alpha\\cdot t^2\" title=\"Rendered by QuickLaTeX.com\" height=\"38\" width=\"191\" style=\"vertical-align: -12px;\"><\/p>\n<\/p>\n<p style=\"margin-bottom:5px\"> Oro: <\/p>\n<ul style=\"color:#4fd12f; font-weight: bold;\">\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-7b2034939b850e3311120fca462ab64e_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\theta\" title=\"Rendered by QuickLaTeX.com\" height=\"12\" width=\"9\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 la posizione angolare finale, espressa in radianti. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-4ab63afa2b487b4402027ad7d97fbb5f_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\theta_i\" title=\"Rendered by QuickLaTeX.com\" height=\"15\" width=\"13\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 la posizione angolare iniziale, espressa in radianti. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-16d6124ee5830d799cd0f950cbe78fa5_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\omega_0\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"18\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 angolare iniziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-fd9cb27edab3f0a8a249bc80cc9c6ee2_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"t\" title=\"Rendered by QuickLaTeX.com\" height=\"12\" width=\"6\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 il tempo trascorso. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-5f44d9bbc8046069be4aa2989bff19aa_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\alpha\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"11\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 l&#8217;accelerazione angolare.<\/span><\/li>\n<\/ul>\n<h3 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"Velocidad-angular\"><\/span> Velocit\u00e0 angolare<span class=\"ez-toc-section-end\"><\/span><\/h3>\n<p> La velocit\u00e0 angolare \u00e8 la velocit\u00e0 alla quale ruota il mobile descritta dall&#8217;MCUA. La velocit\u00e0 angolare indica quindi la velocit\u00e0 con cui un corpo cambia la sua posizione angolare.<\/p>\n<p> Nel movimento circolare uniformemente accelerato (UACM), la velocit\u00e0 angolare aumenta o diminuisce linearmente in funzione del tempo. Pertanto, in questo caso, la velocit\u00e0 angolare di un istante \u00e8 uguale alla velocit\u00e0 angolare iniziale pi\u00f9 il prodotto dell&#8217;accelerazione angolare per il tempo trascorso.<\/p>\n<p class=\"has-text-align-center\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-51b2ef36d6588d9aba93e29573c6bd1e_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\omega=\\omega_0+\\alpha \\cdot t\" title=\"Rendered by QuickLaTeX.com\" height=\"15\" width=\"106\" style=\"vertical-align: -3px;\"><\/p>\n<\/p>\n<p style=\"margin-bottom:5px\"> Oro: <\/p>\n<ul style=\"color:#4fd12f; font-weight: bold;\">\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-fbffdce91996e0a17795d82e8e6996d9_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\omega\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"11\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 angolare. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-16d6124ee5830d799cd0f950cbe78fa5_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\omega_0\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"18\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 angolare iniziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-5f44d9bbc8046069be4aa2989bff19aa_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\alpha\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"11\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 l&#8217;accelerazione angolare. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-fd9cb27edab3f0a8a249bc80cc9c6ee2_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"t\" title=\"Rendered by QuickLaTeX.com\" height=\"12\" width=\"6\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 l&#8217;istante in cui viene calcolata la velocit\u00e0 angolare. <\/span><\/li>\n<\/ul>\n<div style=\"background-color:#FFFDE7; padding-top: 10px; padding-bottom: 10px; padding-right: 10px; padding-left: 20px; border: 2.5px dashed #FFB74D; border-radius:20px;\"> <span style=\"color:#ff951b\">\u27a4<\/span> <strong>Vedi:<\/strong> <a href=\"https:\/\/physigeek.com\/it\">Esercizio risolto sulla velocit\u00e0 angolare<\/a><\/div>\n<h3 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"Aceleracion-angular\"><\/span>accelerazione angolare<span class=\"ez-toc-section-end\"><\/span><\/h3>\n<p> L&#8217;accelerazione angolare indica la variazione della velocit\u00e0 angolare di un corpo. In altre parole, l&#8217;accelerazione angolare rappresenta la velocit\u00e0 con cui cambia la velocit\u00e0 angolare.<\/p>\n<p> Nel moto circolare uniformemente accelerato, l&#8217;accelerazione angolare \u00e8 costante, quindi si calcola utilizzando la seguente formula:<\/p>\n<p class=\"has-text-align-center\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-fedefe7f3708477dc61b93a792509ab6_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\alpha=\\cfrac{\\Delta\\omega}{\\Delta t}=\\cfrac{\\omega_f-\\omega_i}{t_f-t_i}\" title=\"Rendered by QuickLaTeX.com\" height=\"45\" width=\"148\" style=\"vertical-align: -18px;\"><\/p>\n<\/p>\n<p style=\"margin-bottom:5px\"> Oro: <\/p>\n<ul style=\"color:#4fd12f; font-weight: bold;\">\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-5f44d9bbc8046069be4aa2989bff19aa_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\alpha\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"11\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 l&#8217;accelerazione angolare. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-94f4e26a511e85d1ab00d3f1686bf7e8_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\Delta \\omega\" title=\"Rendered by QuickLaTeX.com\" height=\"13\" width=\"26\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 la variazione della velocit\u00e0 angolare. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-819ab50990df5adf82bea9dfa75ffff2_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\Delta t\" title=\"Rendered by QuickLaTeX.com\" height=\"13\" width=\"21\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 la variazione temporale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-562a49afd4fa3e0e36dd810290074f64_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\omega_f\" title=\"Rendered by QuickLaTeX.com\" height=\"14\" width=\"19\" style=\"vertical-align: -6px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 angolare finale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-90b8586302c2fbf8bfa7a04162507ebd_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\omega_i\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"16\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 angolare iniziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-82d36af17e232807e56da9ccdbbda0d8_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"t_f\" title=\"Rendered by QuickLaTeX.com\" height=\"18\" width=\"14\" style=\"vertical-align: -6px;\"><\/p>\n<p> \u00e8 il momento finale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-bf289b768173104db12fe7044c723db4_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"t_i\" title=\"Rendered by QuickLaTeX.com\" height=\"15\" width=\"11\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 il momento iniziale. <\/span><\/li>\n<\/ul>\n<div style=\"background-color:#FFFDE7; padding-top: 10px; padding-bottom: 10px; padding-right: 10px; padding-left: 20px; border: 2.5px dashed #FFB74D; border-radius:20px;\"> <span style=\"color:#ff951b\">\u27a4<\/span> <strong>Vedi:<\/strong> <a href=\"https:\/\/physigeek.com\/it\">Esercizio risolto sull&#8217;accelerazione angolare<\/a><\/div>\n<h3 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"Velocidad-tangencial\"><\/span> velocit\u00e0 tangenziale<span class=\"ez-toc-section-end\"><\/span><\/h3>\n<p> La velocit\u00e0 tangenziale (o velocit\u00e0 lineare) \u00e8 la velocit\u00e0 tangente alla traiettoria di un movimento circolare, ovvero la velocit\u00e0 tangenziale \u00e8 la velocit\u00e0 istantanea di un corpo che esegue un movimento circolare in un determinato istante.<\/p>\n<p> La formula per calcolare la velocit\u00e0 tangenziale di un corpo che descrive un moto circolare uniformemente vario (MCUV) \u00e8 la seguente:<\/p>\n<p class=\"has-text-align-center\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-f8d0d9abbb8f59e8bb19042091cb64ca_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"v=v_0+a_t\\cdot t\" title=\"Rendered by QuickLaTeX.com\" height=\"15\" width=\"105\" style=\"vertical-align: -3px;\"><\/p>\n<\/p>\n<p> Allo stesso modo, la velocit\u00e0 tangenziale di un istante \u00e8 equivalente alla velocit\u00e0 angolare di questo stesso istante moltiplicata per il raggio della traiettoria:<\/p>\n<p class=\"has-text-align-center\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-ae782b74821f3d74ff5d24c88dfc5b6d_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"v_t=\\omega_t\\cdot r\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"76\" style=\"vertical-align: -3px;\"><\/p>\n<\/p>\n<p style=\"margin-bottom:5px\"> Oro: <\/p>\n<ul style=\"color:#4fd12f; font-weight: bold;\">\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-796872219106704832bd95ce08640b7b_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"v\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"9\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 tangenziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-033c1c43e83708a4a975dedd88f197a8_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"v_0\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"16\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 tangenziale iniziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-ab56b4b3337ead2a6dab40b537d0ba6c_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"a_t\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"14\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 l&#8217;accelerazione tangenziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-fd9cb27edab3f0a8a249bc80cc9c6ee2_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"t\" title=\"Rendered by QuickLaTeX.com\" height=\"12\" width=\"6\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 il tempo trascorso. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-0689315c308e8e72d1c638429ce19f17_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"w_t\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"18\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 angolare nell&#8217;istante in cui viene calcolata la velocit\u00e0 tangenziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-01bcf7e9e043561da78fecf715c8a46e_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"r\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"8\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 il raggio della traiettoria circolare. <\/span><\/li>\n<\/ul>\n<div style=\"background-color:#FFFDE7; padding-top: 10px; padding-bottom: 10px; padding-right: 10px; padding-left: 20px; border: 2.5px dashed #FFB74D; border-radius:20px;\"> <span style=\"color:#ff951b\">\u27a4<\/span> <strong>Vedi:<\/strong> <a href=\"https:\/\/physigeek.com\/it\">Esercizio risolto sulla velocit\u00e0 tangenziale<\/a><\/div>\n<h3 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"Aceleracion-tangencial\"><\/span> Accelerazione tangenziale<span class=\"ez-toc-section-end\"><\/span><\/h3>\n<p> L&#8217;accelerazione tangenziale (o accelerazione lineare) \u00e8 l&#8217;accelerazione tangente al percorso di un movimento circolare. In altre parole, l&#8217;accelerazione tangenziale indica la variazione della velocit\u00e0 tangenziale di un corpo che si muove circolare.<\/p>\n<p> Nel moto circolare uniformemente accelerato (MCUA), l&#8217;accelerazione tangenziale \u00e8 costante, quindi pu\u00f2 essere determinata applicando la seguente formula:<\/p>\n<p class=\"has-text-align-center\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-6207cac9ba38c317443aa089c95aa26f_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"a_t=\\cfrac{\\Delta v_t}{\\Delta t}=\\cfrac{v_f-v_i}{t_f-t_i}\" title=\"Rendered by QuickLaTeX.com\" height=\"45\" width=\"149\" style=\"vertical-align: -18px;\"><\/p>\n<\/p>\n<p> Allo stesso modo, l&#8217;accelerazione tangenziale \u00e8 equivalente all&#8217;accelerazione angolare moltiplicata per il raggio della traiettoria:<\/p>\n<p class=\"has-text-align-center\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-dcadf85fe24bbd678ca72ce3e1f0e582_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"a_t=\\alpha\\cdot r\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"71\" style=\"vertical-align: -3px;\"><\/p>\n<\/p>\n<p style=\"margin-bottom:5px\"> Oro: <\/p>\n<ul style=\"color:#4fd12f; font-weight: bold;\">\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-ab56b4b3337ead2a6dab40b537d0ba6c_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"a_t\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"14\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 l&#8217;accelerazione tangenziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-5f44d9bbc8046069be4aa2989bff19aa_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\alpha\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"11\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 l&#8217;accelerazione angolare. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-94ac7e028a0584ad0183447f9c0fe2f9_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\Delta v\" title=\"Rendered by QuickLaTeX.com\" height=\"13\" width=\"24\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 la variazione della velocit\u00e0 tangenziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-819ab50990df5adf82bea9dfa75ffff2_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\Delta t\" title=\"Rendered by QuickLaTeX.com\" height=\"13\" width=\"21\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 la variazione temporale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-5d8e0d73e36f7ffd98c73baf4bec8be0_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"v_f\" title=\"Rendered by QuickLaTeX.com\" height=\"14\" width=\"17\" style=\"vertical-align: -6px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 tangenziale finale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-c9928f5e418ac3466349509fd03bdead_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"v_i\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"14\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 tangenziale iniziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-82d36af17e232807e56da9ccdbbda0d8_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"t_f\" title=\"Rendered by QuickLaTeX.com\" height=\"18\" width=\"14\" style=\"vertical-align: -6px;\"><\/p>\n<p> \u00e8 il momento finale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-bf289b768173104db12fe7044c723db4_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"t_i\" title=\"Rendered by QuickLaTeX.com\" height=\"15\" width=\"11\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 il momento iniziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-5f44d9bbc8046069be4aa2989bff19aa_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\alpha\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"11\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 l&#8217;accelerazione angolare. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-01bcf7e9e043561da78fecf715c8a46e_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"r\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"8\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 il raggio della traiettoria circolare. <\/span><\/li>\n<\/ul>\n<div style=\"background-color:#FFFDE7; padding-top: 10px; padding-bottom: 10px; padding-right: 10px; padding-left: 20px; border: 2.5px dashed #FFB74D; border-radius:20px;\"> <span style=\"color:#ff951b\">\u27a4<\/span> <strong>Vedi:<\/strong> <a href=\"https:\/\/physigeek.com\/it\">Esercizio risolto sull&#8217;accelerazione tangenziale<\/a><\/div>\n<h3 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"Aceleracion-centripeta\"><\/span> Accelerazione centripeta<span class=\"ez-toc-section-end\"><\/span><\/h3>\n<p> L&#8217;accelerazione centripeta (o accelerazione normale) \u00e8 uguale al quadrato della velocit\u00e0 tangenziale diviso per il raggio della traiettoria. Allo stesso modo, l&#8217;accelerazione centripeta pu\u00f2 essere calcolata anche moltiplicando il quadrato della velocit\u00e0 angolare per il raggio della traiettoria.<\/p>\n<p class=\"has-text-align-center\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-d8e3ff8b9e0dd9293abae7ce56539c75_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"a_c=\\cfrac{v^2}{r}=\\omega^2\\cdot r\" title=\"Rendered by QuickLaTeX.com\" height=\"41\" width=\"122\" style=\"vertical-align: -12px;\"><\/p>\n<\/p>\n<p style=\"margin-bottom:5px\"> Oro: <\/p>\n<ul style=\"color:#4fd12f; font-weight: bold;\">\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-34507a55d19314330bf60a03e52dc3b1_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"a_c\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"15\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 l&#8217;accelerazione centripeta (o accelerazione normale). <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-796872219106704832bd95ce08640b7b_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"v\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"9\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 tangenziale. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-01bcf7e9e043561da78fecf715c8a46e_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"r\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"8\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 il raggio del percorso del movimento circolare. <\/span><\/li>\n<li style=\"margin-bottom:5px\"><span style=\"color:#101010;font-weight: normal;\">\n<p class=\"has-text-align-center\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/ql-cache\/quicklatex.com-fbffdce91996e0a17795d82e8e6996d9_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\omega\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"11\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 angolare. <\/span><\/li>\n<\/ul>\n<div style=\"background-color:#FFFDE7; padding-top: 10px; padding-bottom: 10px; padding-right: 10px; padding-left: 20px; border: 2.5px dashed #FFB74D; border-radius:20px;\"> <span style=\"color:#ff951b\">\u27a4<\/span> <strong>Vedi:<\/strong> <a href=\"https:\/\/physigeek.com\/it\">Esercizio risolto sull&#8217;accelerazione centripeta<\/a> <\/div>\n<h3 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"Resumen-de-las-formulas-del-movimiento-circular-uniformemente-acelerado\"><\/span> Riassunto delle formule per il moto circolare uniformemente accelerato<span class=\"ez-toc-section-end\"><\/span><\/h3>\n<p> Ricapitolando, di seguito vi lasciamo una tabella con tutte le formule per il moto circolare uniformemente accelerato (MCUA). <\/p>\n<figure class=\"wp-block-image aligncenter size-large is-resized\"><img decoding=\"async\" loading=\"lazy\" src=\"https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/formules-mouvement-circulaire-uniformement-accelere-mcua.png\" alt=\"formule per movimenti circolari uniformemente accelerati\" class=\"wp-image-7597\" width=\"453\" height=\"646\" srcset=\"https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/formules-mouvement-circulaire-uniformement-accelere-mcua-210x300.png 210w, https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/formules-mouvement-circulaire-uniformement-accelere-mcua-718x1024.png 718w, https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/formules-mouvement-circulaire-uniformement-accelere-mcua-768x1095.png 768w, https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/formules-mouvement-circulaire-uniformement-accelere-mcua.png 872w\" sizes=\"auto, (max-width: 210px) 100vw, 210px\"><\/figure>\n","protected":false},"excerpt":{"rendered":"<p>Questo articolo spiega cos&#8217;\u00e8 in fisica il movimento circolare uniformemente accelerato (MCUA), chiamato anche movimento circolare uniformemente vario (MCUA). Troverai anche le caratteristiche dell&#8217;MCUA e tutte le formule per questo tipo di movimento circolare. Cos\u2019\u00e8 il moto circolare uniformemente accelerato (UACM)? Il movimento circolare uniformemente accelerato (MCUA) , chiamato anche movimento circolare uniformemente vario (MCUV) &hellip;<\/p>\n<p class=\"read-more\"> <a class=\"\" href=\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/\"> <span class=\"screen-reader-text\">Moto circolare uniformemente accelerato (mcua)<\/span> Leggi altro &raquo;<\/a><\/p>\n","protected":false},"author":1,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"site-sidebar-layout":"default","site-content-layout":"","ast-site-content-layout":"","site-content-style":"default","site-sidebar-style":"default","ast-global-header-display":"","ast-banner-title-visibility":"","ast-main-header-display":"","ast-hfb-above-header-display":"","ast-hfb-below-header-display":"","ast-hfb-mobile-header-display":"","site-post-title":"","ast-breadcrumbs-content":"","ast-featured-img":"","footer-sml-layout":"","theme-transparent-header-meta":"","adv-header-id-meta":"","stick-header-meta":"","header-above-stick-meta":"","header-main-stick-meta":"","header-below-stick-meta":"","astra-migrate-meta-layouts":"","footnotes":""},"categories":[3],"tags":[],"class_list":["post-400","post","type-post","status-publish","format-standard","hentry","category-cinematografico"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v21.3 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>\u25b7 Movimento circolare uniformemente accelerato (MCUA)<\/title>\n<meta name=\"description\" content=\"Qui troverai cos&#039;\u00e8 il moto circolare uniformemente accelerato (UACM), le sue caratteristiche, le sue formule e gli esercizi risolti.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/\" \/>\n<meta property=\"og:locale\" content=\"it_IT\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"\u25b7 Movimento circolare uniformemente accelerato (MCUA)\" \/>\n<meta property=\"og:description\" content=\"Qui troverai cos&#039;\u00e8 il moto circolare uniformemente accelerato (UACM), le sue caratteristiche, le sue formule e gli esercizi risolti.\" \/>\n<meta property=\"og:url\" content=\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/\" \/>\n<meta property=\"article:published_time\" content=\"2023-06-19T12:50:28+00:00\" \/>\n<meta property=\"og:image\" content=\"https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/exemple-mouvement-circulaire-uniformement-accelere-mcua.png\" \/>\n<meta name=\"author\" content=\"Jonathan Reynolds\" \/>\n<meta name=\"twitter:card\" content=\"summary_large_image\" \/>\n<meta name=\"twitter:label1\" content=\"Scritto da\" \/>\n\t<meta name=\"twitter:data1\" content=\"Jonathan Reynolds\" \/>\n\t<meta name=\"twitter:label2\" content=\"Tempo di lettura stimato\" \/>\n\t<meta name=\"twitter:data2\" content=\"5 minuti\" \/>\n<script type=\"application\/ld+json\" class=\"yoast-schema-graph\">{\"@context\":\"https:\/\/schema.org\",\"@graph\":[{\"@type\":\"Article\",\"@id\":\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/#article\",\"isPartOf\":{\"@id\":\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/\"},\"author\":{\"name\":\"Jonathan Reynolds\",\"@id\":\"https:\/\/physigeek.com\/it\/#\/schema\/person\/b9330537c64ba3c583570b08aaecbe8e\"},\"headline\":\"Moto circolare uniformemente accelerato (mcua)\",\"datePublished\":\"2023-06-19T12:50:28+00:00\",\"dateModified\":\"2023-06-19T12:50:28+00:00\",\"mainEntityOfPage\":{\"@id\":\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/\"},\"wordCount\":955,\"commentCount\":0,\"publisher\":{\"@id\":\"https:\/\/physigeek.com\/it\/#organization\"},\"articleSection\":[\"Cinematografico\"],\"inLanguage\":\"it-IT\",\"potentialAction\":[{\"@type\":\"CommentAction\",\"name\":\"Comment\",\"target\":[\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/#respond\"]}]},{\"@type\":\"WebPage\",\"@id\":\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/\",\"url\":\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/\",\"name\":\"\u25b7 Movimento circolare uniformemente accelerato (MCUA)\",\"isPartOf\":{\"@id\":\"https:\/\/physigeek.com\/it\/#website\"},\"datePublished\":\"2023-06-19T12:50:28+00:00\",\"dateModified\":\"2023-06-19T12:50:28+00:00\",\"description\":\"Qui troverai cos&#39;\u00e8 il moto circolare uniformemente accelerato (UACM), le sue caratteristiche, le sue formule e gli esercizi risolti.\",\"breadcrumb\":{\"@id\":\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/#breadcrumb\"},\"inLanguage\":\"it-IT\",\"potentialAction\":[{\"@type\":\"ReadAction\",\"target\":[\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/\"]}]},{\"@type\":\"BreadcrumbList\",\"@id\":\"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/#breadcrumb\",\"itemListElement\":[{\"@type\":\"ListItem\",\"position\":1,\"name\":\"Casa\",\"item\":\"https:\/\/physigeek.com\/it\/\"},{\"@type\":\"ListItem\",\"position\":2,\"name\":\"Moto circolare uniformemente accelerato (mcua)\"}]},{\"@type\":\"WebSite\",\"@id\":\"https:\/\/physigeek.com\/it\/#website\",\"url\":\"https:\/\/physigeek.com\/it\/\",\"name\":\"Physigeek\",\"description\":\"Impara la fisica nel modo pi\u00f9 semplice!\",\"publisher\":{\"@id\":\"https:\/\/physigeek.com\/it\/#organization\"},\"potentialAction\":[{\"@type\":\"SearchAction\",\"target\":{\"@type\":\"EntryPoint\",\"urlTemplate\":\"https:\/\/physigeek.com\/it\/?s={search_term_string}\"},\"query-input\":\"required name=search_term_string\"}],\"inLanguage\":\"it-IT\"},{\"@type\":\"Organization\",\"@id\":\"https:\/\/physigeek.com\/it\/#organization\",\"name\":\"Physigeek\",\"url\":\"https:\/\/physigeek.com\/it\/\",\"logo\":{\"@type\":\"ImageObject\",\"inLanguage\":\"it-IT\",\"@id\":\"https:\/\/physigeek.com\/it\/#\/schema\/logo\/image\/\",\"url\":\"https:\/\/physigeek.com\/it\/wp-content\/uploads\/2023\/10\/physigeek-logo.png\",\"contentUrl\":\"https:\/\/physigeek.com\/it\/wp-content\/uploads\/2023\/10\/physigeek-logo.png\",\"width\":180,\"height\":42,\"caption\":\"Physigeek\"},\"image\":{\"@id\":\"https:\/\/physigeek.com\/it\/#\/schema\/logo\/image\/\"}},{\"@type\":\"Person\",\"@id\":\"https:\/\/physigeek.com\/it\/#\/schema\/person\/b9330537c64ba3c583570b08aaecbe8e\",\"name\":\"Jonathan Reynolds\",\"image\":{\"@type\":\"ImageObject\",\"inLanguage\":\"it-IT\",\"@id\":\"https:\/\/physigeek.com\/it\/#\/schema\/person\/image\/\",\"url\":\"http:\/\/physigeek.com\/it\/wp-content\/uploads\/2023\/10\/Jonathan-Reynolds-96x96.jpg\",\"contentUrl\":\"http:\/\/physigeek.com\/it\/wp-content\/uploads\/2023\/10\/Jonathan-Reynolds-96x96.jpg\",\"caption\":\"Jonathan Reynolds\"},\"sameAs\":[\"http:\/\/physigeek.com\/it\"]}]}<\/script>\n<!-- \/ Yoast SEO plugin. -->","yoast_head_json":{"title":"\u25b7 Movimento circolare uniformemente accelerato (MCUA)","description":"Qui troverai cos&#39;\u00e8 il moto circolare uniformemente accelerato (UACM), le sue caratteristiche, le sue formule e gli esercizi risolti.","robots":{"index":"index","follow":"follow","max-snippet":"max-snippet:-1","max-image-preview":"max-image-preview:large","max-video-preview":"max-video-preview:-1"},"canonical":"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/","og_locale":"it_IT","og_type":"article","og_title":"\u25b7 Movimento circolare uniformemente accelerato (MCUA)","og_description":"Qui troverai cos&#39;\u00e8 il moto circolare uniformemente accelerato (UACM), le sue caratteristiche, le sue formule e gli esercizi risolti.","og_url":"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/","article_published_time":"2023-06-19T12:50:28+00:00","og_image":[{"url":"https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/exemple-mouvement-circulaire-uniformement-accelere-mcua.png"}],"author":"Jonathan Reynolds","twitter_card":"summary_large_image","twitter_misc":{"Scritto da":"Jonathan Reynolds","Tempo di lettura stimato":"5 minuti"},"schema":{"@context":"https:\/\/schema.org","@graph":[{"@type":"Article","@id":"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/#article","isPartOf":{"@id":"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/"},"author":{"name":"Jonathan Reynolds","@id":"https:\/\/physigeek.com\/it\/#\/schema\/person\/b9330537c64ba3c583570b08aaecbe8e"},"headline":"Moto circolare uniformemente accelerato (mcua)","datePublished":"2023-06-19T12:50:28+00:00","dateModified":"2023-06-19T12:50:28+00:00","mainEntityOfPage":{"@id":"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/"},"wordCount":955,"commentCount":0,"publisher":{"@id":"https:\/\/physigeek.com\/it\/#organization"},"articleSection":["Cinematografico"],"inLanguage":"it-IT","potentialAction":[{"@type":"CommentAction","name":"Comment","target":["https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/#respond"]}]},{"@type":"WebPage","@id":"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/","url":"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/","name":"\u25b7 Movimento circolare uniformemente accelerato (MCUA)","isPartOf":{"@id":"https:\/\/physigeek.com\/it\/#website"},"datePublished":"2023-06-19T12:50:28+00:00","dateModified":"2023-06-19T12:50:28+00:00","description":"Qui troverai cos&#39;\u00e8 il moto circolare uniformemente accelerato (UACM), le sue caratteristiche, le sue formule e gli esercizi risolti.","breadcrumb":{"@id":"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/#breadcrumb"},"inLanguage":"it-IT","potentialAction":[{"@type":"ReadAction","target":["https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/"]}]},{"@type":"BreadcrumbList","@id":"https:\/\/physigeek.com\/it\/il-moto-circolare-accelera-uniformemente-mcua\/#breadcrumb","itemListElement":[{"@type":"ListItem","position":1,"name":"Casa","item":"https:\/\/physigeek.com\/it\/"},{"@type":"ListItem","position":2,"name":"Moto circolare uniformemente accelerato (mcua)"}]},{"@type":"WebSite","@id":"https:\/\/physigeek.com\/it\/#website","url":"https:\/\/physigeek.com\/it\/","name":"Physigeek","description":"Impara la fisica nel modo pi\u00f9 semplice!","publisher":{"@id":"https:\/\/physigeek.com\/it\/#organization"},"potentialAction":[{"@type":"SearchAction","target":{"@type":"EntryPoint","urlTemplate":"https:\/\/physigeek.com\/it\/?s={search_term_string}"},"query-input":"required name=search_term_string"}],"inLanguage":"it-IT"},{"@type":"Organization","@id":"https:\/\/physigeek.com\/it\/#organization","name":"Physigeek","url":"https:\/\/physigeek.com\/it\/","logo":{"@type":"ImageObject","inLanguage":"it-IT","@id":"https:\/\/physigeek.com\/it\/#\/schema\/logo\/image\/","url":"https:\/\/physigeek.com\/it\/wp-content\/uploads\/2023\/10\/physigeek-logo.png","contentUrl":"https:\/\/physigeek.com\/it\/wp-content\/uploads\/2023\/10\/physigeek-logo.png","width":180,"height":42,"caption":"Physigeek"},"image":{"@id":"https:\/\/physigeek.com\/it\/#\/schema\/logo\/image\/"}},{"@type":"Person","@id":"https:\/\/physigeek.com\/it\/#\/schema\/person\/b9330537c64ba3c583570b08aaecbe8e","name":"Jonathan Reynolds","image":{"@type":"ImageObject","inLanguage":"it-IT","@id":"https:\/\/physigeek.com\/it\/#\/schema\/person\/image\/","url":"http:\/\/physigeek.com\/it\/wp-content\/uploads\/2023\/10\/Jonathan-Reynolds-96x96.jpg","contentUrl":"http:\/\/physigeek.com\/it\/wp-content\/uploads\/2023\/10\/Jonathan-Reynolds-96x96.jpg","caption":"Jonathan Reynolds"},"sameAs":["http:\/\/physigeek.com\/it"]}]}},"yoast_meta":{"yoast_wpseo_title":"","yoast_wpseo_metadesc":"","yoast_wpseo_canonical":""},"_links":{"self":[{"href":"https:\/\/physigeek.com\/it\/wp-json\/wp\/v2\/posts\/400","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/physigeek.com\/it\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/physigeek.com\/it\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/physigeek.com\/it\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/physigeek.com\/it\/wp-json\/wp\/v2\/comments?post=400"}],"version-history":[{"count":0,"href":"https:\/\/physigeek.com\/it\/wp-json\/wp\/v2\/posts\/400\/revisions"}],"wp:attachment":[{"href":"https:\/\/physigeek.com\/it\/wp-json\/wp\/v2\/media?parent=400"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/physigeek.com\/it\/wp-json\/wp\/v2\/categories?post=400"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/physigeek.com\/it\/wp-json\/wp\/v2\/tags?post=400"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}