2.182 7_Inverse_hyperbolic_functions\7.1bInversehyperboliccosine\7.1.5Inversehyperboliccosinefunctions

Table 184: Breakdown of results for each integral


















































2017.3
2016.2
2015.2
18.02
17.02
16.02
14.0
12.0

























# grade cpu size grade cpu size grade cpu size grade cpu size grade cpu size grade cpu size grade cpu size grade cpu siz

























1 B 0.03 233 B 0.11 233 B 0.02 233 B 0.02 233 B 0.02 233 B 0.02 233 B 0.02 233 B 0. 233

























2 A 0.03 107 A 0.11 107 A 0.02 107 A 0.02 107 A 0.02 107 A 0.02 107 A 0.01 107 A 0.02 107

























3 A 0.11 329 A 0.18 329 A 0.09 329 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























4 A 0.08 207 A 0.16 207 A 0.07 207 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























5 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























6 A 0.05 145 A 0.13 145 A 0.04 145 A 0.03 145 A 0.03 145 A 0.03 145 A 0.03 145 A 0.03 145

























7 B 0.11 791 B 0.17 791 B 0.08 791 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























8 A 0.11 120 A 0.19 120 A 0.08 120 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























9 A 0.24 649 A 0.33 649 A 0.22 649 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























10 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























11 C 2.19 1632 C 1.92 1632 C 2.04 1633 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























12 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























13 B 0.39 461 B 0.6 461 B 0.3 461 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























14 A 0.5 656 A 0.7 656 A 0.42 656 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























15 A 0.94 2116 A 1.13 2116 A 0.85 2116 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























16 A 0.6 877 A 0.8 877 A 0.5 877 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























17 B 0.37 559 B 0.61 559 B 0.34 559 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























18 B 0.03 308 B 0.11 308 B 0.02 308 B 0.02 308 B 0.03 308 B 0.02 308 B 0.02 308 B 0.02 308

























19 B 0.03 207 B 0.11 207 B 0.02 207 B 0.02 207 B 0.02 207 B 0.03 207 B 0.01 207 B 0.02 207

























20 A 0.03 120 A 0.11 120 A 0.02 120 A 0.02 120 A 0.01 120 A 0.02 120 A 0.01 120 A 0.02 120

























21 A 0.06 132 A 0.12 132 A 0.04 132 A 0.03 132 A 0.03 132 A 0.03 132 A 0.03 132 A 0.03 132

























22 A 0.02 111 A 0.1 111 A 0.01 111 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























23 A 0.02 120 A 0.1 120 A 0.01 120 A 0.01 120 A 0.02 120 A 0.02 120 A 0. 120 A 0.02 120

























24 A 0.08 263 A 0.32 263 A 0.04 263 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























25 B 0.02 194 B 0.1 194 B 0.01 194 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























26 A 0.12 602 A 0.2 602 A 0.09 602 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























27 B 0.09 605 B 0.17 605 B 0.06 605 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























28 B 0.15 632 B 0.22 632 B 0.11 632 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























29 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























30 B 0.16 374 B 0.24 374 B 0.13 374 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























31 B 0.35 993 B 0.42 993 B 0.3 993 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























32 A 0.12 254 A 0.2 254 A 0.1 254 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























33 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























34 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























35 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























36 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























37 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























38 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























39 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























40 C 0.08 269 C 0.16 269 C 0.06 269 C 0.05 269 C 0.05 269 C 0.05 269 C 0.04 269 C 0.05 269

























41 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























42 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























43 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























44 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























45 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























46 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























47 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























48 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























49 A 0.03 38 A 0.1 38 A 0.02 38 A 0.01 38 A 0.02 38 A 0.02 38 A 0.01 38 A 0.02 38

























50 A 0.02 91 A 0.1 91 A 0.01 91 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























51 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























52 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























53 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























54 A 0.66 491 A 3.04 491 A 0.36 491 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























55 B 0.04 603 B 0.11 603 B 0.02 603 B 0.02 603 B 0.02 603 B 0.02 603 B 0.02 603 B 0.02 603

























56 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























57 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























58 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0

























59 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0 F 0 0