{"id":46,"date":"2019-06-11T14:48:04","date_gmt":"2019-06-11T14:48:04","guid":{"rendered":"https:\/\/opentextbc.ca\/physicalgeology2ed\/chapter\/1-4-minerals-and-rocks\/"},"modified":"2021-12-07T19:26:35","modified_gmt":"2021-12-07T19:26:35","slug":"1-4-minerals-and-rocks","status":"publish","type":"chapter","link":"https:\/\/opentextbc.ca\/physicalgeology2ed\/chapter\/1-4-minerals-and-rocks\/","title":{"raw":"1.4 Minerals and Rocks","rendered":"1.4 Minerals and Rocks"},"content":{"raw":"The rest of this chapter is devoted to a brief overview of a few of the important aspects of physical geology, starting with minerals and rocks. This is followed by a review of Earth\u2019s internal structure and the processes of plate tectonics, and an explanation of geological time.\r\n\r\nThe Earth is made up of varying proportions of the 90 naturally occurring elements\u2014hydrogen, carbon, oxygen, magnesium, silicon, iron, and so on. In most geological materials, these combine in various ways to make minerals. Minerals will be covered in some detail in Chapter 2, but here we will briefly touch on what minerals are, and how they are related to rocks.\r\n\r\nA mineral is a naturally occurring combination of specific elements that are arranged in a particular repeating three-dimensional structure or [pb_glossary id=\"1342\"]lattice[\/pb_glossary].[footnote]Terms in bold are defined in the glossary at the end of the book.[\/footnote] The mineral [pb_glossary id=\"1344\"]halite[\/pb_glossary] is shown as an example in Figure 1.4.1.\r\n\r\n[caption id=\"attachment_34\" align=\"alignright\" width=\"400\"]<a href=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/What-are-scientific-methods.jpg\"><img class=\"wp-image-34\" src=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/06\/lattice-structure-and-composition-of-the-mineral-halite-1024x865.png\" alt=\"\" width=\"400\" height=\"338\" \/><\/a> Figure 1.4.1 The lattice structure and composition of the mineral halite (common table salt).[\/caption]\r\n\r\nIn this case, atoms of sodium (Na: purple) alternate with atoms of chlorine (Cl: green) in all three dimensions, and the angles between the bonds are all 90\u00b0. Even in a tiny crystal, like the ones in your salt shaker, the lattices extend in all three directions for thousands of repetitions. Halite always has this composition and this structure.\r\n<table style=\"border-collapse: collapse; width: 100%;\" border=\"0\">\r\n<tbody>\r\n<tr>\r\n<td style=\"width: 100%;\"><strong>Note: <\/strong>Element symbols (e.g., Na and Cl) are used extensively in this book. In <a href=\"\/physicalgeology2ed\/back-matter\/appendix-1-list-of-geologically-important-elements-and-the-periodic-table\/\">Appendix 1<\/a>, you will find a list of the symbols and names of the elements common in minerals and a copy of the periodic table. Please use those resources if you are not familiar with the element symbols.<\/td>\r\n<\/tr>\r\n<\/tbody>\r\n<\/table>\r\nThere are thousands of minerals, although only a few dozen are mentioned in this book. In nature, minerals are found in rocks, and the vast majority of rocks are composed of at least a few different minerals. A close-up view of [pb_glossary id=\"1346\"]granite[\/pb_glossary], a common rock, is shown in Figure 1.4.2. Although a hand-sized piece of granite may have thousands of individual mineral crystals in it, there are typically only a few different minerals, as shown here.\r\n\r\n[caption id=\"attachment_35\" align=\"aligncenter\" width=\"700\"]<a href=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/close-up-view-of-the-rock-granite-985x1024.png\"><img class=\"wp-image-35\" src=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/close-up-view-of-the-rock-granite-985x1024.png\" alt=\"Hornblende is black, quartz is white and shiny, and feldspar is white-ish or grey\" width=\"700\" height=\"728\" \/><\/a> Figure 1.4.2 A close-up view of the rock granite and some of the minerals that it typically contains (H = hornblende (amphibole), Q = quartz and F = feldspar). The crystals range from about 0.1 to 3 millimetres (mm) in diameter. Most are irregular in outline, but some are rectangular.[\/caption]\r\n\r\nRocks can form in a variety of ways. Igneous rocks form from [pb_glossary id=\"1348\"]magma[\/pb_glossary] (molten rock) that has either cooled slowly underground (e.g., to produce granite) or cooled quickly at the surface after a volcanic eruption (e.g., [pb_glossary id=\"1350\"]basalt[\/pb_glossary]). Sedimentary rocks, such as [pb_glossary id=\"1352\"]sandstone[\/pb_glossary], form when the weathered products of other rocks accumulate at the surface and are then buried by other sediments. Metamorphic rocks form when either igneous or sedimentary rocks are heated and squeezed to the point where some of their minerals are unstable and new minerals form to create a different type of rock. An example is [pb_glossary id=\"1354\"]schist[\/pb_glossary].\r\n\r\nA critical point to remember is the difference between a mineral and a rock. A mineral is a pure substance with a specific composition and structure, while a rock is typically a mixture of several different minerals (although a few types of rock may include only one type of mineral). Examples of minerals are feldspar, quartz, mica, halite, calcite, and amphibole. Examples of rocks are granite, basalt, sandstone, limestone, and schist.\r\n<div class=\"textbox textbox--key-takeaways\"><header class=\"textbox__header\">\r\n<p class=\"textbox__title\">Key Takeaway: Know the difference between minerals and rocks!<\/p>\r\n\r\n<\/header>\r\n<div class=\"textbox__content\">\r\n\r\nIf you are currently taking a geology course, you'll likely be asked more than once to name a mineral or a rock that has specific characteristics or composition, or was formed in a specific environment. Please make sure that if you're asked for a <strong>rock name<\/strong> that you don't respond with a <strong>mineral name<\/strong>, and <em>vice versa<\/em>. Confusing minerals and rocks is one of the most common mistakes that geology students make.\r\n\r\n<\/div>\r\n<\/div>\r\n<div class=\"textbox textbox--exercises\"><header class=\"textbox__header\">\r\n<p class=\"textbox__title\">Exercise 1.1 Find a piece of granite<\/p>\r\n\r\n<\/header>\r\n<div class=\"textbox__content\">\r\n\r\nThe rock granite is very common in most parts of North America, and unless everything is currently covered with snow where you live, you should have no trouble finding a sample of it near you. The best places to look are pebbly ocean or lake beaches, a gravel bar of a creek or river, a gravel driveway, or somewhere where gravel has been used in landscaping. In Figure 1.4.3, taken on a beach, the granitic pebbles are the ones that are predominantly light-coloured with dark specks. The one in the very centre is a good example.\r\n\r\n[caption id=\"attachment_45\" align=\"aligncenter\" width=\"1024\"]<a href=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/pebbles1.jpg\"><img class=\"wp-image-45 size-large\" src=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/pebbles1-1024x681.jpg\" alt=\"A pile of different coloured rocks. Granite rocks are white with dark specks\" width=\"1024\" height=\"681\" \/><\/a> Figure 1.4.3[\/caption]\r\n\r\nSelect a sample of granite and, referring to Figure 1.4.2, see if you can identify some of the minerals in it. It may help to break it in half with a hammer to see a fresh surface, but be careful to protect your eyes if you do so. You should be able to see glassy-looking quartz, dull white plagioclase feldspar (and maybe pink potassium feldspar), and black hornblende or, in some cases, flaky black biotite mica (or both).\r\n\r\nIn addition to identifying the minerals in your granite, you might also try to describe the texture in terms of the range sizes of the mineral crystals (in millimetres) and the shapes of the crystals (some may be rectangular in outline, most will be irregular). Think about where your granite might have come from and how it got to where you found it.\r\n\r\nSee Appendix 3 for <a href=\"\/physicalgeology2ed\/back-matter\/appendix-3-answers-to-exercises\/#exercisea1.1\">Exercise 1.1 answers<\/a>.\r\n\r\n<\/div>\r\n<\/div>\r\n<h3>Media Attributions<\/h3>\r\n<ul>\r\n \t<li>Figure 1.4.1, 1.4.2, 1.4.3: \u00a9 Steven Earle. CC BY.<\/li>\r\n<\/ul>","rendered":"<p>The rest of this chapter is devoted to a brief overview of a few of the important aspects of physical geology, starting with minerals and rocks. This is followed by a review of Earth\u2019s internal structure and the processes of plate tectonics, and an explanation of geological time.<\/p>\n<p>The Earth is made up of varying proportions of the 90 naturally occurring elements\u2014hydrogen, carbon, oxygen, magnesium, silicon, iron, and so on. In most geological materials, these combine in various ways to make minerals. Minerals will be covered in some detail in Chapter 2, but here we will briefly touch on what minerals are, and how they are related to rocks.<\/p>\n<p>A mineral is a naturally occurring combination of specific elements that are arranged in a particular repeating three-dimensional structure or <a class=\"glossary-term\" aria-haspopup=\"dialog\" aria-describedby=\"definition\" href=\"#term_46_1342\">lattice<\/a>.<a class=\"footnote\" title=\"Terms in bold are defined in the glossary at the end of the book.\" id=\"return-footnote-46-1\" href=\"#footnote-46-1\" aria-label=\"Footnote 1\"><sup class=\"footnote\">[1]<\/sup><\/a> The mineral <a class=\"glossary-term\" aria-haspopup=\"dialog\" aria-describedby=\"definition\" href=\"#term_46_1344\">halite<\/a> is shown as an example in Figure 1.4.1.<\/p>\n<figure id=\"attachment_34\" aria-describedby=\"caption-attachment-34\" style=\"width: 400px\" class=\"wp-caption alignright\"><a href=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/What-are-scientific-methods.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"wp-image-34\" src=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/06\/lattice-structure-and-composition-of-the-mineral-halite-1024x865.png\" alt=\"\" width=\"400\" height=\"338\" \/><\/a><figcaption id=\"caption-attachment-34\" class=\"wp-caption-text\">Figure 1.4.1 The lattice structure and composition of the mineral halite (common table salt).<\/figcaption><\/figure>\n<p>In this case, atoms of sodium (Na: purple) alternate with atoms of chlorine (Cl: green) in all three dimensions, and the angles between the bonds are all 90\u00b0. Even in a tiny crystal, like the ones in your salt shaker, the lattices extend in all three directions for thousands of repetitions. Halite always has this composition and this structure.<\/p>\n<table style=\"border-collapse: collapse; width: 100%;\">\n<tbody>\n<tr>\n<td style=\"width: 100%;\"><strong>Note: <\/strong>Element symbols (e.g., Na and Cl) are used extensively in this book. In <a href=\"\/physicalgeology2ed\/back-matter\/appendix-1-list-of-geologically-important-elements-and-the-periodic-table\/\">Appendix 1<\/a>, you will find a list of the symbols and names of the elements common in minerals and a copy of the periodic table. Please use those resources if you are not familiar with the element symbols.<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>There are thousands of minerals, although only a few dozen are mentioned in this book. In nature, minerals are found in rocks, and the vast majority of rocks are composed of at least a few different minerals. A close-up view of <a class=\"glossary-term\" aria-haspopup=\"dialog\" aria-describedby=\"definition\" href=\"#term_46_1346\">granite<\/a>, a common rock, is shown in Figure 1.4.2. Although a hand-sized piece of granite may have thousands of individual mineral crystals in it, there are typically only a few different minerals, as shown here.<\/p>\n<figure id=\"attachment_35\" aria-describedby=\"caption-attachment-35\" style=\"width: 700px\" class=\"wp-caption aligncenter\"><a href=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/close-up-view-of-the-rock-granite-985x1024.png\"><img loading=\"lazy\" decoding=\"async\" class=\"wp-image-35\" src=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/close-up-view-of-the-rock-granite-985x1024.png\" alt=\"Hornblende is black, quartz is white and shiny, and feldspar is white-ish or grey\" width=\"700\" height=\"728\" \/><\/a><figcaption id=\"caption-attachment-35\" class=\"wp-caption-text\">Figure 1.4.2 A close-up view of the rock granite and some of the minerals that it typically contains (H = hornblende (amphibole), Q = quartz and F = feldspar). The crystals range from about 0.1 to 3 millimetres (mm) in diameter. Most are irregular in outline, but some are rectangular.<\/figcaption><\/figure>\n<p>Rocks can form in a variety of ways. Igneous rocks form from <a class=\"glossary-term\" aria-haspopup=\"dialog\" aria-describedby=\"definition\" href=\"#term_46_1348\">magma<\/a> (molten rock) that has either cooled slowly underground (e.g., to produce granite) or cooled quickly at the surface after a volcanic eruption (e.g., <a class=\"glossary-term\" aria-haspopup=\"dialog\" aria-describedby=\"definition\" href=\"#term_46_1350\">basalt<\/a>). Sedimentary rocks, such as <a class=\"glossary-term\" aria-haspopup=\"dialog\" aria-describedby=\"definition\" href=\"#term_46_1352\">sandstone<\/a>, form when the weathered products of other rocks accumulate at the surface and are then buried by other sediments. Metamorphic rocks form when either igneous or sedimentary rocks are heated and squeezed to the point where some of their minerals are unstable and new minerals form to create a different type of rock. An example is <a class=\"glossary-term\" aria-haspopup=\"dialog\" aria-describedby=\"definition\" href=\"#term_46_1354\">schist<\/a>.<\/p>\n<p>A critical point to remember is the difference between a mineral and a rock. A mineral is a pure substance with a specific composition and structure, while a rock is typically a mixture of several different minerals (although a few types of rock may include only one type of mineral). Examples of minerals are feldspar, quartz, mica, halite, calcite, and amphibole. Examples of rocks are granite, basalt, sandstone, limestone, and schist.<\/p>\n<div class=\"textbox textbox--key-takeaways\">\n<header class=\"textbox__header\">\n<p class=\"textbox__title\">Key Takeaway: Know the difference between minerals and rocks!<\/p>\n<\/header>\n<div class=\"textbox__content\">\n<p>If you are currently taking a geology course, you&#8217;ll likely be asked more than once to name a mineral or a rock that has specific characteristics or composition, or was formed in a specific environment. Please make sure that if you&#8217;re asked for a <strong>rock name<\/strong> that you don&#8217;t respond with a <strong>mineral name<\/strong>, and <em>vice versa<\/em>. Confusing minerals and rocks is one of the most common mistakes that geology students make.<\/p>\n<\/div>\n<\/div>\n<div class=\"textbox textbox--exercises\">\n<header class=\"textbox__header\">\n<p class=\"textbox__title\">Exercise 1.1 Find a piece of granite<\/p>\n<\/header>\n<div class=\"textbox__content\">\n<p>The rock granite is very common in most parts of North America, and unless everything is currently covered with snow where you live, you should have no trouble finding a sample of it near you. The best places to look are pebbly ocean or lake beaches, a gravel bar of a creek or river, a gravel driveway, or somewhere where gravel has been used in landscaping. In Figure 1.4.3, taken on a beach, the granitic pebbles are the ones that are predominantly light-coloured with dark specks. The one in the very centre is a good example.<\/p>\n<figure id=\"attachment_45\" aria-describedby=\"caption-attachment-45\" style=\"width: 1024px\" class=\"wp-caption aligncenter\"><a href=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/pebbles1.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"wp-image-45 size-large\" src=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/pebbles1-1024x681.jpg\" alt=\"A pile of different coloured rocks. Granite rocks are white with dark specks\" width=\"1024\" height=\"681\" srcset=\"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/pebbles1-1024x681.jpg 1024w, https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/pebbles1-300x199.jpg 300w, https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/pebbles1-768x511.jpg 768w, https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/pebbles1-65x43.jpg 65w, https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/pebbles1-225x150.jpg 225w, https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-content\/uploads\/sites\/298\/2019\/08\/pebbles1-350x233.jpg 350w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/><\/a><figcaption id=\"caption-attachment-45\" class=\"wp-caption-text\">Figure 1.4.3<\/figcaption><\/figure>\n<p>Select a sample of granite and, referring to Figure 1.4.2, see if you can identify some of the minerals in it. It may help to break it in half with a hammer to see a fresh surface, but be careful to protect your eyes if you do so. You should be able to see glassy-looking quartz, dull white plagioclase feldspar (and maybe pink potassium feldspar), and black hornblende or, in some cases, flaky black biotite mica (or both).<\/p>\n<p>In addition to identifying the minerals in your granite, you might also try to describe the texture in terms of the range sizes of the mineral crystals (in millimetres) and the shapes of the crystals (some may be rectangular in outline, most will be irregular). Think about where your granite might have come from and how it got to where you found it.<\/p>\n<p>See Appendix 3 for <a href=\"\/physicalgeology2ed\/back-matter\/appendix-3-answers-to-exercises\/#exercisea1.1\">Exercise 1.1 answers<\/a>.<\/p>\n<\/div>\n<\/div>\n<h3>Media Attributions<\/h3>\n<ul>\n<li>Figure 1.4.1, 1.4.2, 1.4.3: \u00a9 Steven Earle. CC BY.<\/li>\n<\/ul>\n<hr class=\"before-footnotes clear\" \/><div class=\"footnotes\"><ol><li id=\"footnote-46-1\">Terms in bold are defined in the glossary at the end of the book. <a href=\"#return-footnote-46-1\" class=\"return-footnote\" aria-label=\"Return to footnote 1\">&crarr;<\/a><\/li><\/ol><\/div><div class=\"glossary\"><span class=\"screen-reader-text\" id=\"definition\">definition<\/span><template id=\"term_46_1342\"><div class=\"glossary__definition\" role=\"dialog\" data-id=\"term_46_1342\"><div tabindex=\"-1\"><p>The regular and repeating three-dimensional structure of a mineral.<\/p>\n<\/div><button><span aria-hidden=\"true\">&times;<\/span><span class=\"screen-reader-text\">Close definition<\/span><\/button><\/div><\/template><template id=\"term_46_1344\"><div class=\"glossary__definition\" role=\"dialog\" data-id=\"term_46_1344\"><div tabindex=\"-1\"><p>NaCl, a halide mineral also known as table salt.<\/p>\n<\/div><button><span aria-hidden=\"true\">&times;<\/span><span class=\"screen-reader-text\">Close definition<\/span><\/button><\/div><\/template><template id=\"term_46_1346\"><div class=\"glossary__definition\" role=\"dialog\" data-id=\"term_46_1346\"><div tabindex=\"-1\"><p>A felsic intrusive igneous rock.<\/p>\n<\/div><button><span aria-hidden=\"true\">&times;<\/span><span class=\"screen-reader-text\">Close definition<\/span><\/button><\/div><\/template><template id=\"term_46_1348\"><div class=\"glossary__definition\" role=\"dialog\" data-id=\"term_46_1348\"><div tabindex=\"-1\"><p>Molten rock typically dominated by silica.<\/p>\n<\/div><button><span aria-hidden=\"true\">&times;<\/span><span class=\"screen-reader-text\">Close definition<\/span><\/button><\/div><\/template><template id=\"term_46_1350\"><div class=\"glossary__definition\" role=\"dialog\" data-id=\"term_46_1350\"><div tabindex=\"-1\"><p>A volcanic rock of mafic composition.<\/p>\n<\/div><button><span aria-hidden=\"true\">&times;<\/span><span class=\"screen-reader-text\">Close definition<\/span><\/button><\/div><\/template><template id=\"term_46_1352\"><div class=\"glossary__definition\" role=\"dialog\" data-id=\"term_46_1352\"><div tabindex=\"-1\"><p>A rock that is primarily comprised of sand-sized particles.<\/p>\n<\/div><button><span aria-hidden=\"true\">&times;<\/span><span class=\"screen-reader-text\">Close definition<\/span><\/button><\/div><\/template><template id=\"term_46_1354\"><div class=\"glossary__definition\" role=\"dialog\" data-id=\"term_46_1354\"><div tabindex=\"-1\"><p>A metamorphic rock with visible aligned mica crystals.<\/p>\n<\/div><button><span aria-hidden=\"true\">&times;<\/span><span class=\"screen-reader-text\">Close definition<\/span><\/button><\/div><\/template><\/div>","protected":false},"author":90,"menu_order":4,"template":"","meta":{"pb_show_title":"on","pb_short_title":"","pb_subtitle":"","pb_authors":[],"pb_section_license":"cc-by"},"chapter-type":[],"contributor":[],"license":[52],"class_list":["post-46","chapter","type-chapter","status-publish","hentry","license-cc-by"],"part":31,"_links":{"self":[{"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/pressbooks\/v2\/chapters\/46","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/pressbooks\/v2\/chapters"}],"about":[{"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/wp\/v2\/types\/chapter"}],"author":[{"embeddable":true,"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/wp\/v2\/users\/90"}],"version-history":[{"count":6,"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/pressbooks\/v2\/chapters\/46\/revisions"}],"predecessor-version":[{"id":2259,"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/pressbooks\/v2\/chapters\/46\/revisions\/2259"}],"part":[{"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/pressbooks\/v2\/parts\/31"}],"metadata":[{"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/pressbooks\/v2\/chapters\/46\/metadata\/"}],"wp:attachment":[{"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/wp\/v2\/media?parent=46"}],"wp:term":[{"taxonomy":"chapter-type","embeddable":true,"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/pressbooks\/v2\/chapter-type?post=46"},{"taxonomy":"contributor","embeddable":true,"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/wp\/v2\/contributor?post=46"},{"taxonomy":"license","embeddable":true,"href":"https:\/\/opentextbc.ca\/physicalgeology2ed\/wp-json\/wp\/v2\/license?post=46"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}