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4. (06, 10 MC) Which resulting system of equations will need to be solved in order to complete the integration using the partial fraction method
4. (06, 10 MC) Which resulting system of equations will need to be solved in order to complete the integration using the partial fraction method for ) _2_4 * +1 -dx ? (1 point) A+B+C+D=1 A+8 - 2C+ 20 =0 4A -48- C - D = 1 4A - 48 + 20 - 20 =0 A + B + C+D=0 A+8 - 20+ 20 = 1 44-48-C-D=0 4A - 48 + 2C - 20 = 1 A+B+C+D=1 -A+8 - 2C + 20 =0 -4A - 48-C- D = 1 4A - 48+ 20 - 20 = 0 A+ B +C+D=Q -A +B - 20 + 20 =1 -4A - 48-C- D=0 4A - 48 + 20 - 20 = 1 5. (06.10 LC) Determine the partial fraction decomposition for *+2 dx. (1 point) O -2 3 X X - 1 2 X x - 1 -3 2 X x - 1 O - 2 x x- 13. (06.10 MC) Let the position of an object be defined as p(!) = ( 7 + 3 di, where t 2 0 seconds and p is measured in meters. Find the total distance traveled by the object between 2 and 4 seconds to the nearest tenth of a meter. (1 point) 0.1 m O 4.6 m 0.9 m O 5.1 m1. (06.10 HC) Evaluate [ 10x - 9 (2x + 1)(x - 3) -dx. (1 point) O 2In/ 2x + 1 - 3In/x-3|+ C O 1 In 2x + 1 + -In/ x - 3/ + C 1in 2x + 1 - Lin/ x - 31 + C 2In/ 2x + 1 + 310/x -3+ C 2. (06.10 MC) What is the partial fraction decomposition for J. 4x +7 x ? (1 point) 2x2+7x-4 O 4x - dx + -dx 2x - 1 x+4 7 -dx + 1 4x - dx 2x - 1 x+4 O dx + 1 -2 dx 2x -1 x+4 O 2 -dx + 2x - 1 x+4 dx 1 (06. 10 MC)
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