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- Simpson’s Rule with n = 4 subintervals to estimate the integral of the squre root of x dx with upper bounds of 9 and lower bounds of 1 is 14.2302. Use the error made using this estimatearrow_forwardthe integral of the squre root of x dx with upper bounds of 9 and lower bounds of 1 is 14.2302 but exactly 18. Use the Error Bound to find the bound for the error.arrow_forwardSimpson’s Rule with n = 4 subintervals to estimate the integral of the squre root of x dx with upper bounds of 9 nd lower bounds of 1 is 14.2302 but exactly 18.arrow_forward
- Simpson’s Rule with n = 4 subintervals to estimate the integral of the square root of x dx upper bound of 9 and lower bound of 1 is 14.2302 but exactly 18.arrow_forwardThe integral of x2 dx with upper bounds of 2 and lower bounds of 0 is 8/3. The error bound is <4/3.arrow_forwardThe integral of x2 dx with upper bounds of 2 and lower bounds of 0 is 8/3. Use the Error Bound to find the bound for the error.arrow_forward
- Use the Error Bound Formula for the trapezoid Rule to determine N so that if the integreal of e-2x dx with upper bound of 10 and ler bound of 0 is approximated using the Trapzoid Rule with N subintervals, the error is guaranteed to be less that 10-4arrow_forwardUse Simpson's Rule with n= 4 subintervals to estimate the integral of the square root of x dx with upper bound of 9 and a lower bound of 1. Compute the integral exactlyarrow_forwardEstimate the integral of lnx dx with upper bounds of 5 and lower bounds of 1 sing the Trapezoidal Rule with n = 6 subintervals.arrow_forward
- Use Simpson's Rule with n= 4 subintervals to estimate the integral of the square root of x dx with upper bound of 9 and a lower bound of 1.arrow_forwardUse Simpson's Rule with n= 4 subintervals to estimate the integral of the square root of x dx with upper bound of 9 and a lower bound of 1arrow_forwardThe integral of x2 dx with upper bounds of 2 and lower bounds of 0. Compute the integral exactlyarrow_forward