Question: Calculate the middle rectangle approximation of ( 3x da using five subintervals. O M5 = 0.624 O Ms = 0.99 O M5 = 1.21 O

 Calculate the middle rectangle approximation of ( 3x da using fivesubintervals. O M5 = 0.624 O Ms = 0.99 O M5 =1.21 O Ms = 1.32Which formula would be used to calculate theright rectangle approximation of 4x2da using five subintervals? O R5 = (0.2)[4(0.0)+ 4(0.2) + 4(0.4) + 4(0.6) + 4(0.8)] O RS = (0.2)[4(0.2)2+ 4(0.4)2 + 4(0.6)2 + 4(0.8)2 + 4(1.0)2]. O R5 = (0.2)[4(0.0)2+ 4(0.2)2 + 4(0.4)2 + 4(0.6)2 + 4(0.8)2] O R5 = (0.2)[4(0.1)2 + 4(0.3)2 + 4(0.5)2 + 4(0.7)2 + 4(0.9)2]Calculate the middle rectangleapproximation of , Ida using five subintervals. O Ms = 1.260 OM5 = 0.746 O M5 = 0.692 O M5 = 0.646Calculate the

left rectangle approximation of Truvada using five subintervals. O L5 = 0.624O L5 = 1.177 O L5 = 1.219 O L5 = 1.260Calculatethe trapezoid approximation of fo da using four subintervals. O T5=8.75 OT5 =9.25 O T5=10.00 O T5 =10.50Which formula would be used tocalculate the right rectangle approximation of 4xda using five subintervals? O R5= (0.2)[4(0.1) + 4(0.3) + 4(0.5) + 4(0.7) + 4(0.9)] O R5= (0.1)[4(0.0) + 4(0.2) + 4(0.4) + 4(0.6) + 4(0.8)] O R5= (0.2)[4(0.2) + 4(0.4) + 4(0.6) + 4(0.8) + 4(1.0)] O R5= (0.2)[4(0.0) + 4(0.2) + 4(0.4) + 4(0.6) + 4(0.8)]\fCalculate the trapezoidapproximation of , x da using four subintervals. O T5 =16.75 O

Calculate the middle rectangle approximation of ( 3x da using five subintervals. O M5 = 0.624 O Ms = 0.99 O M5 = 1.21 O Ms = 1.32Which formula would be used to calculate the right rectangle approximation of 4x2da using five subintervals? O R5 = (0.2)[4(0.0) + 4(0.2) + 4(0.4) + 4(0.6) + 4(0.8)] O RS = (0.2)[4(0.2)2 + 4(0.4)2 + 4(0.6)2 + 4(0.8)2 + 4(1.0)2]. O R5 = (0.2)[4(0.0)2 + 4(0.2)2 + 4(0.4)2 + 4(0.6)2 + 4(0.8)2] O R5 = (0.2) [4(0.1)2 + 4(0.3)2 + 4(0.5)2 + 4(0.7)2 + 4(0.9)2]Calculate the middle rectangle approximation of , Ida using five subintervals. O Ms = 1.260 O M5 = 0.746 O M5 = 0.692 O M5 = 0.646Calculate the left rectangle approximation of Truvada using five subintervals. O L5 = 0.624 O L5 = 1.177 O L5 = 1.219 O L5 = 1.260Calculate the trapezoid approximation of fo da using four subintervals. O T5=8.75 O T5 =9.25 O T5=10.00 O T5 =10.50Which formula would be used to calculate the right rectangle approximation of 4xda using five subintervals? O R5 = (0.2)[4(0.1) + 4(0.3) + 4(0.5) + 4(0.7) + 4(0.9)] O R5 = (0.1)[4(0.0) + 4(0.2) + 4(0.4) + 4(0.6) + 4(0.8)] O R5 = (0.2)[4(0.2) + 4(0.4) + 4(0.6) + 4(0.8) + 4(1.0)] O R5 = (0.2)[4(0.0) + 4(0.2) + 4(0.4) + 4(0.6) + 4(0.8)]\fCalculate the trapezoid approximation of , x da using four subintervals. O T5 =16.75 O T5 =18.75 O T5 =20.75 O T5 =22.75Which formula would be used to calculate the trapezoid approximation of f 4x dac using five subintervals? O T5 = 02 [4(0.0)2 + (4)(0.2)2 + (4)(0.4)2 +(4)(0.6)2 + (4)(0.8)2 + 4(1.0)2] O T5=0.2[4(0.0)22 + 2(4)(0.2)2 + 2(4)(0.4)2 + 2(4)(0.6)2 + 2(4)(0.8)2 + 4(1.0)2] O T5 = 02 [4(0.0)2 + 2(4)(0.2)2 + 2(4)(0.4)2 + 2(4)(0.6)2 + 2(4)(0.8)2 + 4(1.0)2] O T5 = 0-2 [2(0.0)2 + 2(2)(0.2)2 + 2(2)(0.4)2 + 2(2)(0.6)2 + 2(2)(0.8)2 + 2(1.0)2]

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