{"id":2660,"date":"2017-09-18T18:05:36","date_gmt":"2017-09-18T22:05:36","guid":{"rendered":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/?post_type=back-matter&#038;p=2660"},"modified":"2019-03-18T14:47:27","modified_gmt":"2019-03-18T18:47:27","slug":"appendix-e-half-lives-for-several-radioactive-isotopes-originally-from-openstax-chemistry","status":"publish","type":"back-matter","link":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/back-matter\/appendix-e-half-lives-for-several-radioactive-isotopes-originally-from-openstax-chemistry\/","title":{"raw":"Appendix E: Half-lives for Several Radioactive Isotopes (Originally from OpenStax Chemistry)","rendered":"Appendix E: Half-lives for Several Radioactive Isotopes (Originally from OpenStax Chemistry)"},"content":{"raw":"<table id=\"fs-idp343615296\" class=\"span-all\" summary=\"This table has three columns. The columns are labeled, \u201cIsotope,\u201d \u201cHalf-Life,\u201d and \u201cType of Emission.\u201d The first isotope listed is C with left subscript 6 and left superscript 14. It has a half-life of 5,730 years and a beta superscript negative sign type of emission. The next is N with left subscript 7, left superscript 13. It has a half-life of 9.97 minutes and a beta superscript plus sign type of emission. The next is F with left subscript 9, left superscript 15. It has a half-life of 4.1 times ten superscript negative 22 seconds and a p type of emission. The next is N a with left subscript 11, left superscript 24. It has a half-life of 15.00 hours and a beta superscript negative sign type of emission. The next is P with left subscript 15, left superscript 32. It has a half-life of 14.29 days and a beta superscript negative sign type of emission. The next is K with left subscript 19, left superscript 40. It has a half-life of 1.27 times ten superscript 9 years and a beta or electron capture type of emission. The next is F e with left subscript 26, left superscript 49. It has a half-life of 0.08 seconds and a beta superscript positive sign type of emission. The next is F e with left subscript 26, left superscript 60. It has a half-life of 2.6 time ten superscript 6 years and a beta superscript negative sign type of emission. The next is C o with left subscript 27, left superscript 60. It has a half-life of 5.27 years and a beta superscript negative sign type of emission. The next is R b with left subscript 37, left superscript 87. It has a half-life of 4.7 times ten superscript 10 years and a beta superscript negative sign type of emission. The next is S r with left subscript 38, left superscript 90. It has a half-life of 29 years and a beta superscript negative sign type of emission. The next is I n with left subscript 49, left superscript 115. It has a half-life of 5.1 times ten superscript fifteen years and a beta superscript negative sign type of emission. The next is I with left subscript 53, left superscript 131. It has a half-life of 8.040 days and a beta superscript negative sign type of emission. The next is C e with left subscript 58, left superscript 142. It has a half-life of 5 times ten superscript 15 years and an emission type of alpha. The next is T l with left subscript 81, left superscript 208. It has a half-life of 3.07 minutes and a beta superscript negative sign type of emission. The next is P b with left subscript 82, left superscript 210. It has a half-life of 22.3 years and a beta superscript negative sign type of emission. The next is P b with left subscript 82, left superscript 212. It has a half-life of 10.6 hours and a beta superscript negative sign type of emission. The next is P b left subscript 82, left superscript 214. It has a half-life of 26.8 minutes and a beta superscript negative sign type of emission. The next is B i with left subscript 83, left superscript 206. It has a half-life of 6.243 days and an electron capture type of emission. The next is U with left subscript 92, left superscript 233. It has a half-life of 1.59 times ten superscript 5 years and an alpha type of emission. The next is U with left subscript 92, left superscript 234. It has a half-life of 2.45 times ten superscript 5 years and an alpha type of emission. The next is U with left subscript 92, left superscript 235. It has a half-life of 7.03 times ten superscript 8 and an alpha type of emission. The next is U with left subscript 92, left superscript 238. It has a half-life of 4.47 times ten superscript 9 years and an alpha type of emission. the next is U with left subscript 92, left superscript 239. It has a half-life of 23.54 minutes and a beta superscript minus sign type of emission. The next is N p with left subscript 93, left superscript 239. It has a half-life of 2.3 days and a beta superscript negative sign type of emission. The next is P u with left subscript 94, left superscript 239. It has a half-life of 2.407 times ten superscript 4 years and an alpha type of emission. The next is P u with left subscript 94, left superscript 240. It has a half-life of 6.54 times ten superscript 3 years and an alpha type of emission. The next is P u with left subscript 94, left superscript 241. It has a half-life of 14.4 years and an alpha or beta superscript negative sign type of emission. The next is A m with left subscript 95, left superscript 241. It has a half-life of 432.2 years and an alpha type of emission. The next is B i with left subscript 83, left superscript 210. It has a half-life of 5.01 days and a beta superscript negative sign type of emission. The next is B i with left subscript 83, left superscript 212. It has a half-life of 60.55 minutes and an alpha or beta superscript negative sign type of emission. The next is P o with left subscript 84, left superscript 210. It has a half-life of 138.4 days and an alpha type of emission. The next is P o with left subscript 84, left superscript 212. It has a half-life of 3 times ten superscript negative seven seconds and an alpha type of emission. The next is P o with left subscript 84, left superscript 216. It has a half-life of 0.15 seconds and an alpha type of emission. The next is P o left subscript 84, left superscript 218. It has a half-life of 3.05 minutes and an alpha type of emission. The next is A t with a left subscript of 85, left superscript 215. It has a half-life of 1.0 times ten superscript negative four seconds and an alpha type of emission. The next is A t with left subscript 85, left superscript 218. It has a half-life of 1.6 seconds and an alpha type of emission. The next is R n with left subscript 86, left superscript 220. It has a half-life of 55.6 seconds and an alpha type of emission. The next is R n with left subscript 86, left superscript 222. It has a half-life of 3.82 days and an alpha type of emission. The next is R a with left subscript 88, left superscript 224. It has a half-life of 3.66 days and an alpha type of emission. The next is R a with left subscript 88, left superscript 226. It has a half-life of 1600 years and an alpha type of emission. The next is R a with left subscript 88, left superscript 228. It has a half-life of 5.75 years and a beta superscript negative sign type of emission. The next is A c with left subscript 89, left superscript 228. It has a half-life of 6.13 hours and a beta superscript negative sign type of emission. The next is T h with left subscript 90, left superscript 228. It has a half-life of 1.913 years and an alpha type of emission. The next is T h with left subscript 90, left superscript 232. It has a half-life of 1.4 times ten superscript 10 years and an alpha type of emission. The next is T h with left subscript 90, left superscript 233. It has a half-life of 22 minutes and a beta superscript negative sign type of emission. The next is T h left subscript 90, left superscript 234. It has a half-life of 24.10 days and a beta superscript negative sign type of emission. The next is P a with left subscript 91, left superscript 233. It has a half-life of 27 days and a beta superscript negative sign type of emission. The next is C m with left subscript 96, left superscript 242. It has a half-life of 162.8 days and an alpha type of emission. The next is B k with left subscript 97, left superscript 243. It has a half-life of 4.5 hours and an alpha or electron capture type of emission. The next is E s with left subscript 99, left superscript 253. It has a half-life of 20.47 days and an alpha type of emission. The next is F m with left subscript 100, left superscript 254. It has a half-life of 3.24 hours and an alpha or spontaneous fission type of emission. The next is F m with left subscript 100, left superscript 255. It has a half-life of 20.1 hours and an alpha type of emission. The next is M d with left subscript 101, left superscript 256. It has a half-life of 76 minutes and an alpha or electron capture type of emission. The next is N o with left subscript 102, left superscript 254. It has a half-life of 55 seconds and an alpha type of emission. The next is L r with left subscript 103, left superscript 257. It has a half-life of 0.65 seconds and an alpha type of emission. The next is H a with left subscript 105, left superscript 260. It has a half-life of 1.5 seconds and an alpha or spontaneous fission type of emission. The last is S g with left subscript 106, left superscript 263. It has a half-life of 0.8 seconds and an alpha or spontaneous fission type of emission.\">\r\n<thead>\r\n<tr valign=\"middle\">\r\n<th colspan=\"6\">Half-Lives for Several Radioactive Isotopes<\/th>\r\n<\/tr>\r\n<tr valign=\"middle\">\r\n<th>Isotope<\/th>\r\n<th>Half-Life[footnote]y = years, d = days, h = hours, m = minutes, s = seconds[\/footnote]<\/th>\r\n<th>Type of Emission[footnote]<em>E.C.<\/em> = electron capture, <em>S.F.<\/em> = Spontaneous fission[\/footnote]<\/th>\r\n<th>Isotope<\/th>\r\n<th>Half-Life[footnote]y = years, d = days, h = hours, m = minutes, s = seconds[\/footnote]<\/th>\r\n<th>Type of Emission[footnote]<em>E.C.<\/em> = electron capture, <em>S.F.<\/em> = Spontaneous fission[\/footnote]<\/th>\r\n<\/tr>\r\n<\/thead>\r\n<tbody>\r\n<tr valign=\"middle\">\r\n<td>$latex _6^{14}\\text{C}$<\/td>\r\n<td>5730 y<\/td>\r\n<td>$latex ({\\beta}-)$<\/td>\r\n<td>$latex _{83}^{210}\\text{Bi}$<\/td>\r\n<td>5.01 d<\/td>\r\n<td>$latex ({\\beta}-)$<\/td>\r\n<\/tr>\r\n<tr valign=\"middle\">\r\n<td>$latex _7^{13}\\text{N}$<\/td>\r\n<td>9.97 m<\/td>\r\n<td>$latex ({\\beta}+)$<\/td>\r\n<td>$latex _{83}^{212}\\text{Bi}$<\/td>\r\n<td>60.55 m<\/td>\r\n<td>$latex ({\\alpha}\\;\\text{or}\\;{\\beta}-)$<\/td>\r\n<\/tr>\r\n<tr valign=\"middle\">\r\n<td>$latex _9^{15}\\text{F}$<\/td>\r\n<td>4.1 \u00d7 10<sup>\u221222<\/sup> s<\/td>\r\n<td>$latex (p)$<\/td>\r\n<td>$latex _{84}^{210}\\text{Po}$<\/td>\r\n<td>138.4 d<\/td>\r\n<td>$latex ({\\alpha})$<\/td>\r\n<\/tr>\r\n<tr valign=\"middle\">\r\n<td>$latex _{11}^{24}\\text{Na}$<\/td>\r\n<td>15.00 h<\/td>\r\n<td>$latex ({\\beta}-)$<\/td>\r\n<td>$latex _{84}^{212}\\text{Po}$<\/td>\r\n<td>3 \u00d7 10<sup>\u22127<\/sup> s<\/td>\r\n<td>$latex ({\\alpha})$<\/td>\r\n<\/tr>\r\n<\/tbody>\r\n<\/table>","rendered":"<table id=\"fs-idp343615296\" class=\"span-all\" summary=\"This table has three columns. The columns are labeled, \u201cIsotope,\u201d \u201cHalf-Life,\u201d and \u201cType of Emission.\u201d The first isotope listed is C with left subscript 6 and left superscript 14. It has a half-life of 5,730 years and a beta superscript negative sign type of emission. The next is N with left subscript 7, left superscript 13. It has a half-life of 9.97 minutes and a beta superscript plus sign type of emission. The next is F with left subscript 9, left superscript 15. It has a half-life of 4.1 times ten superscript negative 22 seconds and a p type of emission. The next is N a with left subscript 11, left superscript 24. It has a half-life of 15.00 hours and a beta superscript negative sign type of emission. The next is P with left subscript 15, left superscript 32. It has a half-life of 14.29 days and a beta superscript negative sign type of emission. The next is K with left subscript 19, left superscript 40. It has a half-life of 1.27 times ten superscript 9 years and a beta or electron capture type of emission. The next is F e with left subscript 26, left superscript 49. It has a half-life of 0.08 seconds and a beta superscript positive sign type of emission. The next is F e with left subscript 26, left superscript 60. It has a half-life of 2.6 time ten superscript 6 years and a beta superscript negative sign type of emission. The next is C o with left subscript 27, left superscript 60. It has a half-life of 5.27 years and a beta superscript negative sign type of emission. The next is R b with left subscript 37, left superscript 87. It has a half-life of 4.7 times ten superscript 10 years and a beta superscript negative sign type of emission. The next is S r with left subscript 38, left superscript 90. It has a half-life of 29 years and a beta superscript negative sign type of emission. The next is I n with left subscript 49, left superscript 115. It has a half-life of 5.1 times ten superscript fifteen years and a beta superscript negative sign type of emission. The next is I with left subscript 53, left superscript 131. It has a half-life of 8.040 days and a beta superscript negative sign type of emission. The next is C e with left subscript 58, left superscript 142. It has a half-life of 5 times ten superscript 15 years and an emission type of alpha. The next is T l with left subscript 81, left superscript 208. It has a half-life of 3.07 minutes and a beta superscript negative sign type of emission. The next is P b with left subscript 82, left superscript 210. It has a half-life of 22.3 years and a beta superscript negative sign type of emission. The next is P b with left subscript 82, left superscript 212. It has a half-life of 10.6 hours and a beta superscript negative sign type of emission. The next is P b left subscript 82, left superscript 214. It has a half-life of 26.8 minutes and a beta superscript negative sign type of emission. The next is B i with left subscript 83, left superscript 206. It has a half-life of 6.243 days and an electron capture type of emission. The next is U with left subscript 92, left superscript 233. It has a half-life of 1.59 times ten superscript 5 years and an alpha type of emission. The next is U with left subscript 92, left superscript 234. It has a half-life of 2.45 times ten superscript 5 years and an alpha type of emission. The next is U with left subscript 92, left superscript 235. It has a half-life of 7.03 times ten superscript 8 and an alpha type of emission. The next is U with left subscript 92, left superscript 238. It has a half-life of 4.47 times ten superscript 9 years and an alpha type of emission. the next is U with left subscript 92, left superscript 239. It has a half-life of 23.54 minutes and a beta superscript minus sign type of emission. The next is N p with left subscript 93, left superscript 239. It has a half-life of 2.3 days and a beta superscript negative sign type of emission. The next is P u with left subscript 94, left superscript 239. It has a half-life of 2.407 times ten superscript 4 years and an alpha type of emission. The next is P u with left subscript 94, left superscript 240. It has a half-life of 6.54 times ten superscript 3 years and an alpha type of emission. The next is P u with left subscript 94, left superscript 241. It has a half-life of 14.4 years and an alpha or beta superscript negative sign type of emission. The next is A m with left subscript 95, left superscript 241. It has a half-life of 432.2 years and an alpha type of emission. The next is B i with left subscript 83, left superscript 210. It has a half-life of 5.01 days and a beta superscript negative sign type of emission. The next is B i with left subscript 83, left superscript 212. It has a half-life of 60.55 minutes and an alpha or beta superscript negative sign type of emission. The next is P o with left subscript 84, left superscript 210. It has a half-life of 138.4 days and an alpha type of emission. The next is P o with left subscript 84, left superscript 212. It has a half-life of 3 times ten superscript negative seven seconds and an alpha type of emission. The next is P o with left subscript 84, left superscript 216. It has a half-life of 0.15 seconds and an alpha type of emission. The next is P o left subscript 84, left superscript 218. It has a half-life of 3.05 minutes and an alpha type of emission. The next is A t with a left subscript of 85, left superscript 215. It has a half-life of 1.0 times ten superscript negative four seconds and an alpha type of emission. The next is A t with left subscript 85, left superscript 218. It has a half-life of 1.6 seconds and an alpha type of emission. The next is R n with left subscript 86, left superscript 220. It has a half-life of 55.6 seconds and an alpha type of emission. The next is R n with left subscript 86, left superscript 222. It has a half-life of 3.82 days and an alpha type of emission. The next is R a with left subscript 88, left superscript 224. It has a half-life of 3.66 days and an alpha type of emission. The next is R a with left subscript 88, left superscript 226. It has a half-life of 1600 years and an alpha type of emission. The next is R a with left subscript 88, left superscript 228. It has a half-life of 5.75 years and a beta superscript negative sign type of emission. The next is A c with left subscript 89, left superscript 228. It has a half-life of 6.13 hours and a beta superscript negative sign type of emission. The next is T h with left subscript 90, left superscript 228. It has a half-life of 1.913 years and an alpha type of emission. The next is T h with left subscript 90, left superscript 232. It has a half-life of 1.4 times ten superscript 10 years and an alpha type of emission. The next is T h with left subscript 90, left superscript 233. It has a half-life of 22 minutes and a beta superscript negative sign type of emission. The next is T h left subscript 90, left superscript 234. It has a half-life of 24.10 days and a beta superscript negative sign type of emission. The next is P a with left subscript 91, left superscript 233. It has a half-life of 27 days and a beta superscript negative sign type of emission. The next is C m with left subscript 96, left superscript 242. It has a half-life of 162.8 days and an alpha type of emission. The next is B k with left subscript 97, left superscript 243. It has a half-life of 4.5 hours and an alpha or electron capture type of emission. The next is E s with left subscript 99, left superscript 253. It has a half-life of 20.47 days and an alpha type of emission. The next is F m with left subscript 100, left superscript 254. It has a half-life of 3.24 hours and an alpha or spontaneous fission type of emission. The next is F m with left subscript 100, left superscript 255. It has a half-life of 20.1 hours and an alpha type of emission. The next is M d with left subscript 101, left superscript 256. It has a half-life of 76 minutes and an alpha or electron capture type of emission. The next is N o with left subscript 102, left superscript 254. It has a half-life of 55 seconds and an alpha type of emission. The next is L r with left subscript 103, left superscript 257. It has a half-life of 0.65 seconds and an alpha type of emission. The next is H a with left subscript 105, left superscript 260. It has a half-life of 1.5 seconds and an alpha or spontaneous fission type of emission. The last is S g with left subscript 106, left superscript 263. It has a half-life of 0.8 seconds and an alpha or spontaneous fission type of emission.\">\n<thead>\n<tr valign=\"middle\">\n<th colspan=\"6\">Half-Lives for Several Radioactive Isotopes<\/th>\n<\/tr>\n<tr valign=\"middle\">\n<th>Isotope<\/th>\n<th>Half-Life<a class=\"footnote\" title=\"y = years, d = days, h = hours, m = minutes, s = seconds\" id=\"return-footnote-2660-1\" href=\"#footnote-2660-1\" aria-label=\"Footnote 1\"><sup class=\"footnote\">[1]<\/sup><\/a><\/th>\n<th>Type of Emission<a class=\"footnote\" title=\"E.C. = electron capture, S.F. = Spontaneous fission\" id=\"return-footnote-2660-2\" href=\"#footnote-2660-2\" aria-label=\"Footnote 2\"><sup class=\"footnote\">[2]<\/sup><\/a><\/th>\n<th>Isotope<\/th>\n<th>Half-Life<a class=\"footnote\" title=\"y = years, d = days, h = hours, m = minutes, s = seconds\" id=\"return-footnote-2660-3\" href=\"#footnote-2660-3\" aria-label=\"Footnote 3\"><sup class=\"footnote\">[3]<\/sup><\/a><\/th>\n<th>Type of Emission<a class=\"footnote\" title=\"E.C. = electron capture, S.F. = Spontaneous fission\" id=\"return-footnote-2660-4\" href=\"#footnote-2660-4\" aria-label=\"Footnote 4\"><sup class=\"footnote\">[4]<\/sup><\/a><\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr valign=\"middle\">\n<td>[latex]_6^{14}\\text{C}[\/latex]<\/td>\n<td>5730 y<\/td>\n<td>[latex]({\\beta}-)[\/latex]<\/td>\n<td>[latex]_{83}^{210}\\text{Bi}[\/latex]<\/td>\n<td>5.01 d<\/td>\n<td>[latex]({\\beta}-)[\/latex]<\/td>\n<\/tr>\n<tr valign=\"middle\">\n<td>[latex]_7^{13}\\text{N}[\/latex]<\/td>\n<td>9.97 m<\/td>\n<td>[latex]({\\beta}+)[\/latex]<\/td>\n<td>[latex]_{83}^{212}\\text{Bi}[\/latex]<\/td>\n<td>60.55 m<\/td>\n<td>[latex]({\\alpha}\\;\\text{or}\\;{\\beta}-)[\/latex]<\/td>\n<\/tr>\n<tr valign=\"middle\">\n<td>[latex]_9^{15}\\text{F}[\/latex]<\/td>\n<td>4.1 \u00d7 10<sup>\u221222<\/sup> s<\/td>\n<td>[latex](p)[\/latex]<\/td>\n<td>[latex]_{84}^{210}\\text{Po}[\/latex]<\/td>\n<td>138.4 d<\/td>\n<td>[latex]({\\alpha})[\/latex]<\/td>\n<\/tr>\n<tr valign=\"middle\">\n<td>[latex]_{11}^{24}\\text{Na}[\/latex]<\/td>\n<td>15.00 h<\/td>\n<td>[latex]({\\beta}-)[\/latex]<\/td>\n<td>[latex]_{84}^{212}\\text{Po}[\/latex]<\/td>\n<td>3 \u00d7 10<sup>\u22127<\/sup> s<\/td>\n<td>[latex]({\\alpha})[\/latex]<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<hr class=\"before-footnotes clear\" \/><div class=\"footnotes\"><ol><li id=\"footnote-2660-1\">y = years, d = days, h = hours, m = minutes, s = seconds <a href=\"#return-footnote-2660-1\" class=\"return-footnote\" aria-label=\"Return to footnote 1\">&crarr;<\/a><\/li><li id=\"footnote-2660-2\"><em>E.C.<\/em> = electron capture, <em>S.F.<\/em> = Spontaneous fission <a href=\"#return-footnote-2660-2\" class=\"return-footnote\" aria-label=\"Return to footnote 2\">&crarr;<\/a><\/li><li id=\"footnote-2660-3\">y = years, d = days, h = hours, m = minutes, s = seconds <a href=\"#return-footnote-2660-3\" class=\"return-footnote\" aria-label=\"Return to footnote 3\">&crarr;<\/a><\/li><li id=\"footnote-2660-4\"><em>E.C.<\/em> = electron capture, <em>S.F.<\/em> = Spontaneous fission <a href=\"#return-footnote-2660-4\" class=\"return-footnote\" aria-label=\"Return to footnote 4\">&crarr;<\/a><\/li><\/ol><\/div>","protected":false},"author":9,"menu_order":5,"template":"","meta":{"pb_show_title":"on","pb_short_title":"","pb_subtitle":"","pb_authors":[],"pb_section_license":""},"back-matter-type":[],"contributor":[],"license":[],"class_list":["post-2660","back-matter","type-back-matter","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/wp-json\/pressbooks\/v2\/back-matter\/2660","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/wp-json\/pressbooks\/v2\/back-matter"}],"about":[{"href":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/wp-json\/wp\/v2\/types\/back-matter"}],"author":[{"embeddable":true,"href":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/wp-json\/wp\/v2\/users\/9"}],"version-history":[{"count":2,"href":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/wp-json\/pressbooks\/v2\/back-matter\/2660\/revisions"}],"predecessor-version":[{"id":2665,"href":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/wp-json\/pressbooks\/v2\/back-matter\/2660\/revisions\/2665"}],"metadata":[{"href":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/wp-json\/pressbooks\/v2\/back-matter\/2660\/metadata\/"}],"wp:attachment":[{"href":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/wp-json\/wp\/v2\/media?parent=2660"}],"wp:term":[{"taxonomy":"back-matter-type","embeddable":true,"href":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/wp-json\/pressbooks\/v2\/back-matter-type?post=2660"},{"taxonomy":"contributor","embeddable":true,"href":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/wp-json\/wp\/v2\/contributor?post=2660"},{"taxonomy":"license","embeddable":true,"href":"https:\/\/pressbooks.bccampus.ca\/introductorygeneralphysics1phys1107\/wp-json\/wp\/v2\/license?post=2660"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}