{"id":"act_quizme:science:q3:01","source_id":"act_quizme","source_item_id":"science-q3-01","external_id":"38304f351b92e969","program":"ACT","section":"science","category_code":null,"category":null,"subcategory_code":null,"subcategory":null,"form_id":null,"passage_id":"act_quizme:science:q3:passage","position":1,"scored":true,"layout_warning":null,"stem":"Which of the following statements about the relationship between the number of A. percula per tank and the average SGR is consistent with the results of Experiment 2? On average, as the number of A. percula per tank increased, the average SGR:","stimulus":"","stimulus_html":null,"stem_html":"<p>Which of the following statements about the relationship between the number of <em>A.&nbsp;percula</em> per tank and the average SGR is consistent with the results of Experiment&nbsp;2? On average, as the number of <em>A.&nbsp;percula</em> per tank increased, the average SGR:</p>\n","rationale_html":"<p><strong>A.</strong> <strong>Incorrect</strong>. As the number of fish per tank increased, the average SGR decreased only.&nbsp;</p><p><strong>B.</strong> <strong>Correct</strong>. The results of Experiment 2 in Table 2 show that as stocking density, and therefore the number of <em>A. percula</em> per tank, increased, the average SGR decreased only.</p><p><strong>C.</strong> <strong>Incorrect</strong>. As the number of fish per tank increased, the average SGR decreased only.&nbsp;</p><p><strong>D.</strong> <strong>Incorrect</strong>. As the number of fish per tank increased, the average SGR decreased only.&nbsp;</p>","correct_answer":["B"],"equiv_key":"554b2f90051037fbe77ad861","has_media":false,"has_mathml":false,"has_table":false,"section_label":"Science","options":[{"label":"A","content_html":"<p>increased only.</p>","ord":0},{"label":"B","content_html":"<p>decreased only.</p>","ord":1},{"label":"C","content_html":"<p>remained the same.</p>","ord":2},{"label":"D","content_html":"<p>varied with no general trend.</p>","ord":3}],"passage":{"id":"act_quizme:science:q3:passage","source_id":"act_quizme","form_id":null,"section":"science","number":"3","kind":null,"title":"Science Quiz 3","content_html":"<p><em>Amphiprion&nbsp;percula</em>, a species of clownfish, are kept in many home aquariums. Two experiments were conducted to determine how diet and stocking density (number of fish per liter of seawater, fish/L) affect the specific growth rate (SGR;&nbsp;percent increase in length per day, percent/day) in <em>A.&nbsp;percula.</em></p>\n<em>Experiment 1</em>\n<p>Each of 12 identical 15&nbsp;L tanks received 10&nbsp;L of seawater having a salinity of 33&nbsp;parts per thousand&nbsp;(ppt), a temperature of 27<span>°</span><span class=\"visuallyhidden\"> degrees </span>C, and a pH of 8.2. Salinity, temperature, and pH were kept constant over the course of the experiment. <em>A.&nbsp;percula</em> of similar lengths were selected, and their lengths were measured, in cm, with a ruler. Then they were equally distributed among the tanks at a stocking density of 1&nbsp;fish/L. The tanks were then divided equally into 4 groups.</p>\n<p>For 4 months, each group was fed a different diet&nbsp;(Diets&nbsp;<span>Q–T</span><span class=\"visuallyhidden\">Q through T</span>). Each group was fed the same mass of food 3 times daily. At the end of 4 months, the length of each fish was measured, in cm, with a ruler, and the SGR of each fish was calculated. The average SGR was then determined for each group (see Table&nbsp;1).</p>\nTable&nbsp;1\n<table style=\"width: 119.4px; border-collapse: collapse; border-spacing: 0px; border-style: solid; border-width: 1px;\" cellspacing=\"0\">\n<thead>\n<tr>\n<th style=\"width: 22px; text-align: center; vertical-align: bottom; font-weight: normal; border-style: solid; border-width: 1px; padding: 3px;\">Diet</th>\n<th style=\"width: 22px; text-align: center; vertical-align: bottom; font-weight: normal; border-style: solid; border-width: 1px; padding: 3px;\">Average SGR<br>(percent/day)</th>\n</tr>\n</thead>\n<tbody>\n<tr>\n<td style=\"text-align: left; vertical-align: bottom; width: 22px; border-style: solid; border-width: 1px; padding: 3px;\">Q</td>\n<td style=\"text-align: left; vertical-align: bottom; width: 22px; border-style: solid; border-width: 1px; padding: 3px;\">0.30</td>\n</tr>\n<tr>\n<td style=\"text-align: left; vertical-align: bottom; width: 22px; border-style: solid; border-width: 1px; padding: 3px;\">R</td>\n<td style=\"text-align: left; vertical-align: bottom; width: 22px; border-style: solid; border-width: 1px; padding: 3px;\">0.40</td>\n</tr>\n<tr>\n<td style=\"text-align: left; vertical-align: bottom; width: 22px; border-style: solid; border-width: 1px; padding: 3px;\">S</td>\n<td style=\"text-align: left; vertical-align: bottom; width: 22px; border-style: solid; border-width: 1px; padding: 3px;\">0.50</td>\n</tr>\n<tr>\n<td style=\"text-align: left; vertical-align: bottom; width: 22px; border-style: solid; border-width: 1px; padding: 3px;\">T</td>\n<td style=\"text-align: left; vertical-align: bottom; width: 22px; border-style: solid; border-width: 1px; padding: 3px;\">0.35</td>\n</tr>\n</tbody>\n</table>\n<em>Experiment&nbsp;2</em>\n<p>The procedures for Experiment&nbsp;1 were repeated except that each group was kept at a different stocking density, 0.5&nbsp;fish/L, 1&nbsp;fish/L, 2&nbsp;fish/L, or 3&nbsp;fish/L, and all fish were fed Diet&nbsp;T. At the end of 4&nbsp;months, the average SGR was determined for each group (see Table&nbsp;2).</p>\nTable&nbsp;2\n<table style=\"width: 152.8px; border-collapse: collapse; border-spacing: 0px; border-style: solid; border-width: 1px;\" cellspacing=\"0\">\n<thead>\n<tr>\n<th style=\"width: 55px; text-align: center; vertical-align: bottom; font-weight: normal; border-style: solid; border-width: 1px; padding: 3px;\">Stocking density<br>(fish/L)</th>\n<th style=\"width: 55px; text-align: center; vertical-align: bottom; font-weight: normal; border-style: solid; border-width: 1px; padding: 3px;\">Average SGR<br>(percent/day)</th>\n</tr>\n</thead>\n<tbody>\n<tr>\n<td style=\"text-align: left; vertical-align: bottom; width: 55px; border-style: solid; border-width: 1px; padding: 3px;\">0.5</td>\n<td style=\"text-align: left; vertical-align: bottom; width: 55px; border-style: solid; border-width: 1px; padding: 3px;\">0.50</td>\n</tr>\n<tr>\n<td style=\"text-align: left; vertical-align: bottom; width: 55px; border-style: solid; border-width: 1px; padding: 3px;\">1</td>\n<td style=\"text-align: left; vertical-align: bottom; width: 55px; border-style: solid; border-width: 1px; padding: 3px;\">0.35</td>\n</tr>\n<tr>\n<td style=\"text-align: left; vertical-align: bottom; width: 55px; border-style: solid; border-width: 1px; padding: 3px;\">2</td>\n<td style=\"text-align: left; vertical-align: bottom; width: 55px; border-style: solid; border-width: 1px; padding: 3px;\">0.25</td>\n</tr>\n<tr>\n<td style=\"text-align: left; vertical-align: bottom; width: 55px; border-style: solid; border-width: 1px; padding: 3px;\">3</td>\n<td style=\"text-align: left; vertical-align: bottom; width: 55px; border-style: solid; border-width: 1px; padding: 3px;\">0.20</td>\n</tr>\n</tbody>\n</table>\n<p class=\"caption\">Tables adapted from João Chambel et al., “Effect of Stocking Density and Different Diets on Growth of Percula Clownfish, <em>Amphiprion percula</em> (Lacepede, 1802).” ©2015 by Springer.</p>","ord":3},"attribution":{"source_id":"act_quizme","source_name":"ACT QuizMe official practice questions","rights_holder":"ACT Education Corp.","canonical_url":"https://quizme.act.org/","retrieved_from":"https://quizme.act.org/","attribution":"Official ACT practice questions © ACT Education Corp., from the QuizMe practice quizzes at quizme.act.org.","disclaimer":"ACT® is a registered trademark of ACT Education Corp., which is not affiliated with, does not sponsor, and does not endorse this project.","license":"ACT Education Corp. copyright. Published free on the public web; not licensed for redistribution.","redistributable":false,"item_count":78},"equivalents":[{"id":"act_practice_pdf:pt1:science:012","source_id":"act_practice_pdf","source_item_id":"pt1-science-012","external_id":null,"program":"ACT","section":"science","category_code":"EMI","category":"Evaluation of Models, Inferences & Experimental Results","subcategory_code":null,"subcategory":null,"form_id":"act_practice_pdf:pt1","passage_id":"act_practice_pdf:pt1:science:p3","position":12,"scored":true,"layout_warning":null,"stem":"Which of the following statements about the relationship between the number of A. percula per tank and the average SGR is consistent with the results of Experiment 2? On average, as the number of A. percula per tank increased, the average SGR:","stimulus":"","stimulus_html":null,"stem_html":"<p>Which of the following statements about the relationship between the number of A. percula per tank and the average SGR is consistent with the results of Experiment 2? On average, as the number of A. percula per tank increased, the average SGR:</p>","rationale_html":null,"correct_answer":["G"],"equiv_key":"554b2f90051037fbe77ad861","has_media":false,"has_mathml":false,"has_table":false,"section_label":"Science","attribution":{"source_id":"act_practice_pdf","source_name":"Official ACT full-length practice tests (PDF)","rights_holder":"ACT Education Corp.","canonical_url":"https://www.act.org/content/act/en/products-and-services/the-act/test-preparation.html","retrieved_from":"https://www.act.org/content/act/en/products-and-services/the-act/test-preparation.html","attribution":"Full-length ACT practice tests © ACT Education Corp., published free at act.org. Questions are retired items from previous ACT administrations.","disclaimer":"Extracted from a print-layout PDF: equations, figures and charts do not survive as text. Use the original PDF for anything that renders poorly. ACT® is a registered trademark of ACT Education Corp., which is not affiliated with, does not sponsor, and does not endorse this project.","license":"ACT Education Corp. copyright. Published free for personal test preparation; not licensed for redistribution.","redistributable":false,"item_count":342}}]}