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authorAndres Rey <[email protected]>2016-12-08 15:44:37 +0000
committerAndres Rey <[email protected]>2016-12-08 15:44:37 +0000
commit2b5e1f66f0ceb8b00e1c29dc9e3cb18ce3554bbd (patch)
tree73eb479778c4bdce43cdcd03aea1de0d5df0a0ad /test/test-pages/reordering-paragraphs/expected.html
parentf2c652f680fc9630c3c3235adf3e669d2bd9f1b9 (diff)
Refactored readability.js expected files to match readability.php style
Diffstat (limited to 'test/test-pages/reordering-paragraphs/expected.html')
-rw-r--r--test/test-pages/reordering-paragraphs/expected.html5
1 files changed, 1 insertions, 4 deletions
diff --git a/test/test-pages/reordering-paragraphs/expected.html b/test/test-pages/reordering-paragraphs/expected.html
index 7d15fcc..506f291 100644
--- a/test/test-pages/reordering-paragraphs/expected.html
+++ b/test/test-pages/reordering-paragraphs/expected.html
@@ -1,5 +1,2 @@
-<div id="readability-page-1" class="page">
<p id="first">Regarding item# 11111, under sufficiently extreme conditions, quarks may become deconfined and exist as free particles. In the course of asymptotic freedom, the strong interaction becomes weaker at higher temperatures. Eventually, color confinement would be lost and an extremely hot plasma of freely moving quarks and gluons would be formed. This theoretical phase of matter is called quark-gluon plasma.[81] The exact conditions needed to give rise to this state are unknown and have been the subject of a great deal of speculation and experimentation.</p>
- <p id="second">Regarding item# 22222, under sufficiently extreme conditions, quarks may become deconfined and exist as free particles. In the course of asymptotic freedom, the strong interaction becomes weaker at higher temperatures. Eventually, color confinement would be lost and an extremely hot plasma of freely moving quarks and gluons would be formed. This theoretical phase of matter is called quark-gluon plasma.[81] The exact conditions needed to give rise to this state are unknown and have been the subject of a great deal of speculation and experimentation.</p>
- <p id="third">Regarding item# 33333, under sufficiently extreme conditions, quarks may become deconfined and exist as free particles. In the course of asymptotic freedom, the strong interaction becomes weaker at higher temperatures. Eventually, color confinement would be lost and an extremely hot plasma of freely moving quarks and gluons would be formed. This theoretical phase of matter is called quark-gluon plasma.[81] The exact conditions needed to give rise to this state are unknown and have been the subject of a great deal of speculation and experimentation.</p>
- <br id="br2"/> </div> \ No newline at end of file
+ <p id="second">Regarding item# 22222, under sufficiently extreme conditions, quarks may become deconfined and exist as free particles. In the course of asymptotic freedom, the strong interaction becomes weaker at higher temperatures. Eventually, color confinement would be lost and an extremely hot plasma of freely moving quarks and gluons would be formed. This theoretical phase of matter is called quark-gluon plasma.[81] The exact conditions needed to give rise to this state are unknown and have been the subject of a great deal of speculation and experimentation.</p> \ No newline at end of file