{"id":1033,"date":"2017-01-30T18:54:20","date_gmt":"2017-01-30T18:54:20","guid":{"rendered":"https:\/\/courses.lumenlearning.com\/physicalgeology\/?post_type=chapter&#038;p=1033"},"modified":"2017-01-30T18:54:20","modified_gmt":"2017-01-30T18:54:20","slug":"chapter-22-summary","status":"publish","type":"chapter","link":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/chapter\/chapter-22-summary\/","title":{"raw":"Chapter 22 Summary","rendered":"Chapter 22 Summary"},"content":{"raw":"<p>The topics covered in this chapter can be summarized as follows:\n<\/p><table><tbody><tr><td>22.1<\/td>\n<td>Starting with a Big Bang<\/td>\n<td>The universe began 13.77 billion years ago when energy, matter, and space expanded from a single point. Evidence for the big bang is the cosmic \u201cafterglow\u201d from when the universe was still very dense, and red-shifted light from distant galaxies, which tell us the universe is still expanding.<\/td>\n<\/tr><tr><td>22.2<\/td>\n<td>Forming Planets from the Remnants of Exploding Stars<\/td>\n<td>The big bang produced hydrogen, helium, and lithium, but heavier elements come from nuclear fusion reactions in stars. Large stars make elements such as silicon, iron, and magnesium, which are important in forming terrestrial planets. Large stars explode as supernovae and scatter the elements into space.<\/td>\n<\/tr><tr><td>22.3<\/td>\n<td>How to Build a Solar System<\/td>\n<td>Solar systems begin with the collapse of a cloud of gas and dust. Material drawn to the centre forms a star, and the remainder forms a disk around the star. Material within the disk clumps together to form planets. In our solar system, rocky planets are closer to the Sun, and ice and gas giants are farther away. This is because temperatures near the Sun were too high for ice to form, but silicate minerals and metals could solidify.<\/td>\n<\/tr><tr><td>22.4<\/td>\n<td>Earth\u2019s First 2 Billion Years<\/td>\n<td>Early Earth was heated by radioactive decay, collisions with bodies from space, and gravitational compression. Heating melted Earth, causing molten metal to sink to Earth\u2019s centre and form a core, and silicate melt to float to the surface and form the mantle and crust. A collision with a planet the size of Mars knocked debris into orbit around Earth, and the debris coalesced into the moon. Earth\u2019s atmosphere is the result of volcanic degassing, contributions by comets and meteorites, and photosynthesis.<\/td>\n<\/tr><tr><td>22.5<\/td>\n<td>Are There Other Earths?<\/td>\n<td>The search for exoplanets has identified 12 planets that are similar in size to Earth and within the habitable zone of their stars. These are thought to be rocky worlds like Earth, but the compositions of these planets are not known for certain.<\/td>\n<\/tr><\/tbody><\/table><div class=\"bcc-box bcc-info\">\n<h3>Questions for Review<\/h3>\n1. How can astronomers view events that happened in the universe\u2019s distant past?\n\n2. In this image of three spectra, one is from the Sun, and the other two are from galaxies. One of the galaxies is the Andromeda galaxy. Which spectrum is from Andromeda?\n\n[caption id=\"attachment_1466\" align=\"aligncenter\" width=\"331\"]<a href=\"http:\/\/opentextbc.ca\/geology\/wp-content\/uploads\/sites\/110\/2015\/09\/spectraforsun.png\"><img class=\"size-full wp-image-1466\" alt=\"Spectra for the sun and two galaxies. [KP]\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/1462\/2017\/01\/30185347\/spectraforsun.png\" height=\"235\" width=\"331\"\/><\/a> Spectra for the sun and two galaxies. [KP][\/caption]3. Astronomers looking for some of the earliest stars in the universe were surprised to find a planetary system called HIP 11952, which existed 12.8 billion years ago. This was very early in the universe\u2019s history, when stars still consisted largely of hydrogen and helium. Do you think there were terrestrial planets in this system? Why or why not?4. Summarize the trends in size and composition of objects in the solar system.5. What is the frost line, and what does it help to explain?\n\n5. This cartoon shows three of the same type of solar system object. One goes on an adventure and comes back the worse for wear. What are the objects, and where might they be located?\n\n[caption id=\"attachment_1467\" align=\"aligncenter\" width=\"400\"]<a href=\"http:\/\/opentextbc.ca\/geology\/wp-content\/uploads\/sites\/110\/2015\/09\/denizens.png\"><img class=\"wp-image-1467 size-full\" alt=\"Denizens of the solar system. [Randall Munroe (CC BY-NC 2.5) https:\/\/xkcd.com\/1297\/]\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/1462\/2017\/01\/30185349\/denizens-e1441144102541.png\" height=\"137\" width=\"400\"\/><\/a> Denizens of the solar system. [Randall Munroe (CC BY-NC 2.5) https:\/\/xkcd.com\/1297\/][\/caption]6.\u00a0 Why is Pluto not considered a planet?\n\n7. What is differentiation, and what must happen to a planet or asteroid for differentiation to occur?9. The exoplanet Kepler-452b is within the habitable zone of its star. In our solar system, planets a similar distance from the Sun are terrestrial planets. Why can we not say for certain that Kepler-452b\u2019s distance from its star means it is a terrestrial planet?\n\n8. Of the planetary systems discovered thus far, none are exactly like our solar system. Does this mean our solar system is unique in the universe?\n\n<\/div>\n<div class=\"wp-image-1467 size-full\"\/>","rendered":"<p>The topics covered in this chapter can be summarized as follows:\n<\/p>\n<table>\n<tbody>\n<tr>\n<td>22.1<\/td>\n<td>Starting with a Big Bang<\/td>\n<td>The universe began 13.77 billion years ago when energy, matter, and space expanded from a single point. Evidence for the big bang is the cosmic \u201cafterglow\u201d from when the universe was still very dense, and red-shifted light from distant galaxies, which tell us the universe is still expanding.<\/td>\n<\/tr>\n<tr>\n<td>22.2<\/td>\n<td>Forming Planets from the Remnants of Exploding Stars<\/td>\n<td>The big bang produced hydrogen, helium, and lithium, but heavier elements come from nuclear fusion reactions in stars. Large stars make elements such as silicon, iron, and magnesium, which are important in forming terrestrial planets. Large stars explode as supernovae and scatter the elements into space.<\/td>\n<\/tr>\n<tr>\n<td>22.3<\/td>\n<td>How to Build a Solar System<\/td>\n<td>Solar systems begin with the collapse of a cloud of gas and dust. Material drawn to the centre forms a star, and the remainder forms a disk around the star. Material within the disk clumps together to form planets. In our solar system, rocky planets are closer to the Sun, and ice and gas giants are farther away. This is because temperatures near the Sun were too high for ice to form, but silicate minerals and metals could solidify.<\/td>\n<\/tr>\n<tr>\n<td>22.4<\/td>\n<td>Earth\u2019s First 2 Billion Years<\/td>\n<td>Early Earth was heated by radioactive decay, collisions with bodies from space, and gravitational compression. Heating melted Earth, causing molten metal to sink to Earth\u2019s centre and form a core, and silicate melt to float to the surface and form the mantle and crust. A collision with a planet the size of Mars knocked debris into orbit around Earth, and the debris coalesced into the moon. Earth\u2019s atmosphere is the result of volcanic degassing, contributions by comets and meteorites, and photosynthesis.<\/td>\n<\/tr>\n<tr>\n<td>22.5<\/td>\n<td>Are There Other Earths?<\/td>\n<td>The search for exoplanets has identified 12 planets that are similar in size to Earth and within the habitable zone of their stars. These are thought to be rocky worlds like Earth, but the compositions of these planets are not known for certain.<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<div class=\"bcc-box bcc-info\">\n<h3>Questions for Review<\/h3>\n<p>1. How can astronomers view events that happened in the universe\u2019s distant past?<\/p>\n<p>2. In this image of three spectra, one is from the Sun, and the other two are from galaxies. One of the galaxies is the Andromeda galaxy. Which spectrum is from Andromeda?<\/p>\n<div id=\"attachment_1466\" style=\"width: 341px\" class=\"wp-caption aligncenter\"><a href=\"http:\/\/opentextbc.ca\/geology\/wp-content\/uploads\/sites\/110\/2015\/09\/spectraforsun.png\"><img loading=\"lazy\" decoding=\"async\" aria-describedby=\"caption-attachment-1466\" class=\"size-full wp-image-1466\" alt=\"Spectra for the sun and two galaxies. [KP]\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/1462\/2017\/01\/30185347\/spectraforsun.png\" height=\"235\" width=\"331\" \/><\/a><\/p>\n<p id=\"caption-attachment-1466\" class=\"wp-caption-text\">Spectra for the sun and two galaxies. [KP]<\/p>\n<\/div>\n<p>3. Astronomers looking for some of the earliest stars in the universe were surprised to find a planetary system called HIP 11952, which existed 12.8 billion years ago. This was very early in the universe\u2019s history, when stars still consisted largely of hydrogen and helium. Do you think there were terrestrial planets in this system? Why or why not?4. Summarize the trends in size and composition of objects in the solar system.5. What is the frost line, and what does it help to explain?<\/p>\n<p>5. This cartoon shows three of the same type of solar system object. One goes on an adventure and comes back the worse for wear. What are the objects, and where might they be located?<\/p>\n<div id=\"attachment_1467\" style=\"width: 410px\" class=\"wp-caption aligncenter\"><a href=\"http:\/\/opentextbc.ca\/geology\/wp-content\/uploads\/sites\/110\/2015\/09\/denizens.png\"><img loading=\"lazy\" decoding=\"async\" aria-describedby=\"caption-attachment-1467\" class=\"wp-image-1467 size-full\" alt=\"Denizens of the solar system. [Randall Munroe (CC BY-NC 2.5) https:\/\/xkcd.com\/1297\/]\" src=\"https:\/\/s3-us-west-2.amazonaws.com\/courses-images\/wp-content\/uploads\/sites\/1462\/2017\/01\/30185349\/denizens-e1441144102541.png\" height=\"137\" width=\"400\" \/><\/a><\/p>\n<p id=\"caption-attachment-1467\" class=\"wp-caption-text\">Denizens of the solar system. [Randall Munroe (CC BY-NC 2.5) https:\/\/xkcd.com\/1297\/]<\/p>\n<\/div>\n<p>6.\u00a0 Why is Pluto not considered a planet?<\/p>\n<p>7. What is differentiation, and what must happen to a planet or asteroid for differentiation to occur?9. The exoplanet Kepler-452b is within the habitable zone of its star. In our solar system, planets a similar distance from the Sun are terrestrial planets. Why can we not say for certain that Kepler-452b\u2019s distance from its star means it is a terrestrial planet?<\/p>\n<p>8. Of the planetary systems discovered thus far, none are exactly like our solar system. Does this mean our solar system is unique in the universe?<\/p>\n<\/div>\n<div class=\"wp-image-1467 size-full\"><\/div>\n\n\t\t\t <section class=\"citations-section\" role=\"contentinfo\">\n\t\t\t <h3>Candela Citations<\/h3>\n\t\t\t\t\t <div>\n\t\t\t\t\t\t <div id=\"citation-list-1033\">\n\t\t\t\t\t\t\t <div class=\"licensing\"><div class=\"license-attribution-dropdown-subheading\">CC licensed content, Shared previously<\/div><ul class=\"citation-list\"><li>Physical Geology. <strong>Authored by<\/strong>: Steven Earle. <strong>Provided by<\/strong>: BC Campus. <strong>Located at<\/strong>: <a target=\"_blank\" href=\"https:\/\/opentextbc.ca\/geology\/\">https:\/\/opentextbc.ca\/geology\/<\/a>. <strong>License<\/strong>: <em><a target=\"_blank\" rel=\"license\" href=\"https:\/\/creativecommons.org\/licenses\/by\/4.0\/\">CC BY: Attribution<\/a><\/em><\/li><\/ul><\/div>\n\t\t\t\t\t\t <\/div>\n\t\t\t\t\t <\/div>\n\t\t\t <\/section>","protected":false},"author":17,"menu_order":7,"template":"","meta":{"_candela_citation":"[{\"type\":\"cc\",\"description\":\"Physical Geology\",\"author\":\"Steven Earle\",\"organization\":\"BC Campus\",\"url\":\"https:\/\/opentextbc.ca\/geology\/\",\"project\":\"\",\"license\":\"cc-by\",\"license_terms\":\"\"}]","CANDELA_OUTCOMES_GUID":"","pb_show_title":"on","pb_short_title":"","pb_subtitle":"","pb_authors":["karla-panchuk-department-of-geological-sciences-university-of-saskatchewan"],"pb_section_license":""},"chapter-type":[],"contributor":[53],"license":[],"class_list":["post-1033","chapter","type-chapter","status-publish","hentry","contributor-karla-panchuk-department-of-geological-sciences-university-of-saskatchewan"],"part":800,"_links":{"self":[{"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/pressbooks\/v2\/chapters\/1033","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/pressbooks\/v2\/chapters"}],"about":[{"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/wp\/v2\/types\/chapter"}],"author":[{"embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/wp\/v2\/users\/17"}],"version-history":[{"count":1,"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/pressbooks\/v2\/chapters\/1033\/revisions"}],"predecessor-version":[{"id":1046,"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/pressbooks\/v2\/chapters\/1033\/revisions\/1046"}],"part":[{"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/pressbooks\/v2\/parts\/800"}],"metadata":[{"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/pressbooks\/v2\/chapters\/1033\/metadata\/"}],"wp:attachment":[{"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/wp\/v2\/media?parent=1033"}],"wp:term":[{"taxonomy":"chapter-type","embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/pressbooks\/v2\/chapter-type?post=1033"},{"taxonomy":"contributor","embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/wp\/v2\/contributor?post=1033"},{"taxonomy":"license","embeddable":true,"href":"https:\/\/courses.lumenlearning.com\/suny-purchase-physicalgeology\/wp-json\/wp\/v2\/license?post=1033"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}