{"id":455,"date":"2023-06-17T07:41:59","date_gmt":"2023-06-17T07:41:59","guid":{"rendered":"https:\/\/physigeek.com\/it\/indice-di-rifrazione\/"},"modified":"2023-06-17T07:41:59","modified_gmt":"2023-06-17T07:41:59","slug":"indice-di-rifrazione","status":"publish","type":"post","link":"https:\/\/physigeek.com\/it\/indice-di-rifrazione\/","title":{"rendered":"Indice di rifrazione"},"content":{"rendered":"<p>Questo articolo spiega cos&#8217;\u00e8 l&#8217;indice di rifrazione in fisica. Troverai quindi la definizione dell&#8217;indice di rifrazione, come calcolare l&#8217;indice di rifrazione e, inoltre, una tabella con i valori degli indici di rifrazione dei diversi materiali. <\/p>\n<h2 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"%C2%BFQue-es-el-indice-de-refraccion\"><\/span> Cos&#8217;\u00e8 l&#8217;indice di rifrazione?<span class=\"ez-toc-section-end\"><\/span><\/h2>\n<p> L&#8217; <strong>indice di rifrazione<\/strong> di un mezzo \u00e8 un coefficiente che indica di quanto viene ridotta la velocit\u00e0 della luce (o di altre onde) rispetto al vuoto nel mezzo. L&#8217;indice di rifrazione viene utilizzato anche per determinare la misura in cui il percorso della luce viene deviato o rifratto mentre passa da un mezzo all&#8217;altro.<\/p>\n<p> Allo stesso modo, l&#8217;indice di rifrazione permette di calcolare la variazione di lunghezza d&#8217;onda quando un&#8217;onda entra in un mezzo diverso, poich\u00e9 le caratteristiche del mezzo attraverso il quale si propaga un&#8217;onda influenzano non solo la sua velocit\u00e0, ma anche la sua atmosfera.<\/p>\n<p> Tuttavia la frequenza di un&#8217;onda non viene alterata dal mezzo in cui si propaga. L&#8217;indice di rifrazione determina quindi la velocit\u00e0 e la lunghezza dell&#8217;onda, ma non la sua frequenza.<\/p>\n<h2 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"Formula-del-indice-de-refraccion\"><\/span> Formula dell&#8217;indice di rifrazione<span class=\"ez-toc-section-end\"><\/span><\/h2>\n<p> L&#8217;indice di rifrazione \u00e8 definito come il quoziente tra la velocit\u00e0 della luce nel vuoto (c = 3,10 <sup>8<\/sup> m\/s) e la velocit\u00e0 della luce nel mezzo (v). Pertanto, per calcolare l&#8217;indice di rifrazione, \u00e8 necessario dividere la velocit\u00e0 della luce nel vuoto per la velocit\u00e0 della luce nel mezzo (n=c\/v).<\/p>\n<p> La <strong>formula per calcolare l\u2019indice di rifrazione<\/strong> \u00e8 quindi 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-3272ab4bb86af78aa312738841e2663f_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"n=\\cfrac{c}{v}\" title=\"Rendered by QuickLaTeX.com\" height=\"34\" width=\"46\" 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-ec4217f4fa5fcd92a9edceba0e708cf7_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"n\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"11\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 l&#8217;indice di rifrazione del mezzo. <\/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-276a76eafbebc4494deafceec7cc4ddd_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"c\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"8\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 la velocit\u00e0 della luce nel vuoto (3\u00b710 <sup>8<\/sup> m\/s). <\/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 della luce nel mezzo in cui viene calcolato l&#8217;indice di rifrazione.<\/span><\/li>\n<\/ul>\n<p> Allo stesso modo, l&#8217;indice di rifrazione di un mezzo pu\u00f2 essere determinato anche calcolando la radice quadrata del prodotto tra la permettivit\u00e0 relativa del materiale e la permeabilit\u00e0 elettromagnetica relativa:<\/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-36cde3d0a7da81363ce37b0d21e7f614_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"n=\\sqrt{\\epsilon_r\\cdot \\mu_r}\" title=\"Rendered by QuickLaTeX.com\" height=\"18\" width=\"95\" style=\"vertical-align: -6px;\"><\/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-ec4217f4fa5fcd92a9edceba0e708cf7_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"n\" title=\"Rendered by QuickLaTeX.com\" height=\"8\" width=\"11\" style=\"vertical-align: 0px;\"><\/p>\n<p> \u00e8 l&#8217;indice di rifrazione del mezzo. <\/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-0dd66f7ec870823a7b3bda176c79b765_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\epsilon_r\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"13\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 la permettivit\u00e0 relativa del materiale. <\/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-ec23adbe53e526a8cd793f23e0960d75_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\mu_r\" title=\"Rendered by QuickLaTeX.com\" height=\"12\" width=\"17\" style=\"vertical-align: -4px;\"><\/p>\n<p> permeabilit\u00e0 elettromagnetica relativa. <\/span><\/li>\n<\/ul>\n<h2 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"Tabla-de-valores-del-indice-de-refraccion\"><\/span> Tabella dei valori dell&#8217;indice di rifrazione<span class=\"ez-toc-section-end\"><\/span><\/h2>\n<p> Nella tabella seguente potete vedere i valori dell&#8217;indice di rifrazione dei diversi media:<\/p>\n<figure class=\"wp-block-table aligncenter is-style-stripes\">\n<table>\n<thead>\n<tr>\n<th> Materiale<\/th>\n<th class=\"has-text-align-center\" data-align=\"center\"> Indice di rifrazione<\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr>\n<td> Vuoto<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1<\/td>\n<\/tr>\n<tr>\n<td> Aria (0 \u00baC e 1 bar)<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1 0002926<\/td>\n<\/tr>\n<tr>\n<td> Metanolo (20\u00baC)<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.329<\/td>\n<\/tr>\n<tr>\n<td> Acqua<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.3330<\/td>\n<\/tr>\n<tr>\n<td> Acetaldeide<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.35<\/td>\n<\/tr>\n<tr>\n<td> Soluzione di zucchero (30%)<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.38<\/td>\n<\/tr>\n<tr>\n<td> 1-butanolo (20 \u00baC)<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.399<\/td>\n<\/tr>\n<tr>\n<td> Eptanolo (25\u00baC)<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.423<\/td>\n<\/tr>\n<tr>\n<td> Bicchiere<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1,45<\/td>\n<\/tr>\n<tr>\n<td> Glicerina<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.473<\/td>\n<\/tr>\n<tr>\n<td> Benzene (20\u00baC)<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.501<\/td>\n<\/tr>\n<tr>\n<td> Soluzione di zucchero (80%)<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.52<\/td>\n<\/tr>\n<tr>\n<td> Quarzo<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.544<\/td>\n<\/tr>\n<tr>\n<td> Cloruro di sodio<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.544<\/td>\n<\/tr>\n<tr>\n<td> Disolfuro di carbonio<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 1.6295<\/td>\n<\/tr>\n<tr>\n<td> diamante<\/td>\n<td class=\"has-text-align-center\" data-align=\"center\"> 2.42 <\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/figure>\n<h2 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"El-indice-de-refraccion-y-la-ley-de-Snell\"><\/span> L&#8217;indice di rifrazione e la legge di Snell<span class=\"ez-toc-section-end\"><\/span><\/h2>\n<p> <strong>La legge di Snell<\/strong> \u00e8 una legge fisica che mette in relazione l&#8217;indice di rifrazione di due mezzi diversi con l&#8217;angolo di incidenza e l&#8217;angolo di rifrazione. Pertanto, la legge di Snell viene utilizzata per calcolare l&#8217;angolo di rifrazione della luce quando attraversa una superficie che separa due mezzi con diverso indice di rifrazione.<\/p>\n<p> La formula della legge di Snell \u00e8:<\/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-8a1f4d5f2f8822bea42090853efba478_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"n_1\\cdot \\text{sin}(\\theta_1)=n_2\\cdot \\text{sin}(\\theta_2)\" title=\"Rendered by QuickLaTeX.com\" height=\"19\" width=\"188\" style=\"vertical-align: -5px;\"><\/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-cebc0a013985f2695aeb53ded9e7afb1_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"n_1\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"17\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 l&#8217;indice di rifrazione del mezzo su cui cade la luce. <\/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-7919ba3460fc884772bb5c3cc9ad1a8d_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\theta_1\" title=\"Rendered by QuickLaTeX.com\" height=\"15\" width=\"14\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 l&#8217;angolo formato dal raggio luminoso con la normale del mezzo su cui cade la luce. <\/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-bf1e42c248eee22a0911c24c95fe28f0_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"n_2\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"18\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 l&#8217;indice di rifrazione del mezzo in cui viene rifratta la luce. <\/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-462ac736d8fb9984136e11039f9a0da4_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\theta_2\" title=\"Rendered by QuickLaTeX.com\" height=\"15\" width=\"15\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 l&#8217;angolo formato dal raggio luminoso con la normale del mezzo in cui viene rifratta la luce. <\/span><\/li>\n<\/ul>\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\/loi-de-snell.png\" alt=\"Legge di Snell, indice di rifrazione\" class=\"wp-image-9140\" width=\"314\" height=\"430\" srcset=\"https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/loi-de-snell-219x300.png 219w, https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/loi-de-snell.png 733w\" sizes=\"auto, (max-width: 219px) 100vw, 219px\"><\/figure>\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\/legge-di-snell\/\">Legge di Snell<\/a> <\/div>\n<h2 class=\"wp-block-heading\"><span class=\"ez-toc-section\" id=\"El-indice-de-refraccion-y-la-reflexion-interna-total\"><\/span> Indice di rifrazione e riflessione interna totale<span class=\"ez-toc-section-end\"><\/span><\/h2>\n<p> In fisica l&#8217; <strong>angolo critico (o angolo limite)<\/strong> \u00e8 l&#8217;angolo ottenuto calcolando l&#8217;inverso del seno del quoziente tra l&#8217;indice di rifrazione del mezzo in cui cade il raggio luminoso e l&#8217;indice di rifrazione del mezzo in cui viene rifratto . .il raggio di luce<\/p>\n<p> Quindi, la formula per l&#8217;angolo critico \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-d578646ea492b5cd851e7eba3578044f_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\text{sin}(\\theta_c)=\\cfrac{n_2}{n_1}\" title=\"Rendered by QuickLaTeX.com\" height=\"37\" width=\"95\" style=\"vertical-align: -15px;\"><\/p>\n<\/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-61c0e88486e5cad80d5109d1f67c31e1_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\displaystyle \\theta_c=\\text{arcsen}\\left(\\frac{n_2}{n_1}\\right)\" title=\"Rendered by QuickLaTeX.com\" height=\"43\" width=\"135\" style=\"vertical-align: -17px;\"><\/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-ec1ef70052f126c1e3f54bfcb4e7ac25_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"\\theta_c\" title=\"Rendered by QuickLaTeX.com\" height=\"15\" width=\"14\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 l&#8217;angolo critico. <\/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-cebc0a013985f2695aeb53ded9e7afb1_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"n_1\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"17\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 l&#8217;indice di rifrazione del mezzo in cui cade la luce. <\/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-bf1e42c248eee22a0911c24c95fe28f0_l3.png\" class=\"ql-img-inline-formula quicklatex-auto-format\" alt=\"n_2\" title=\"Rendered by QuickLaTeX.com\" height=\"11\" width=\"18\" style=\"vertical-align: -3px;\"><\/p>\n<p> \u00e8 l&#8217;indice di rifrazione del mezzo in cui viene rifratta la luce.<\/span><\/li>\n<\/ul>\n<p> Pertanto, quando l&#8217;angolo di incidenza \u03b8 <sub>1<\/sub> \u00e8 maggiore dell&#8217;angolo critico, il raggio luminoso viene riflesso completamente all&#8217;interno del mezzo che colpisce. In altre parole, se l&#8217;angolo di incidenza \u03b8 <sub>1<\/sub> \u00e8 maggiore dell&#8217;angolo critico, la luce non viene rifratta ma bens\u00ec riflessa e quindi, invece di passare nell&#8217;altro mezzo, rimane all&#8217;interno dello stesso ambiente. <\/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\/reflexion-interne-totale.png\" alt=\"riflessione interna totale\" class=\"wp-image-9154\" width=\"515\" height=\"314\" srcset=\"https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/reflexion-interne-totale-300x184.png 300w, https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/reflexion-interne-totale-768x472.png 768w, https:\/\/physigeek.com\/wp-content\/uploads\/2023\/09\/reflexion-interne-totale.png 807w\" sizes=\"auto, (max-width: 300px) 100vw, 300px\"><\/figure>\n<p> Questo fenomeno fisico si chiama <strong>riflessione interna totale<\/strong> e si verifica quando l&#8217;angolo di incidenza del raggio luminoso \u00e8 maggiore dell&#8217;angolo critico, che si pu\u00f2 calcolare con<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Questo articolo spiega cos&#8217;\u00e8 l&#8217;indice di rifrazione in fisica. Troverai quindi la definizione dell&#8217;indice di rifrazione, come calcolare l&#8217;indice di rifrazione e, inoltre, una tabella con i valori degli indici di rifrazione dei diversi materiali. Cos&#8217;\u00e8 l&#8217;indice di rifrazione? L&#8217; indice di rifrazione di un mezzo \u00e8 un coefficiente che indica di quanto viene ridotta &hellip;<\/p>\n<p class=\"read-more\"> <a class=\"\" href=\"https:\/\/physigeek.com\/it\/indice-di-rifrazione\/\"> <span class=\"screen-reader-text\">Indice di rifrazione<\/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":[13],"tags":[],"class_list":["post-455","post","type-post","status-publish","format-standard","hentry","category-ottico"],"yoast_head":"<!-- This site is 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