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. Question 1 Approximate the area under the curve y = > from > = 2 to = = 5 using a Right Endpoint approximation
. Question 1 Approximate the area under the curve y = > from > = 2 to = = 5 using a Right Endpoint approximation with 6 subdivisions. Submit QuestionQuestion 10 If in p(w)dw = 12 4 and 5 p(w)dw = 5.2 2 what does the following integral equal? 2 p(w)dw = Question Help: @ Video Submit Question\f. Question 8 Use the limit definition of the integral to evaluate the integral 10 (2 + 8x ) dx = Submit Question. Question 1" V 'C 3' Evaluate the definite integraL by interpreting it in terms of areas. 7 f {42: 20m: 2 Evaluate the integral below by interpreting it in terms of areas. In other words, draw a picture of the region the integral represents, and find the area using geometry. 32 - x'dx 3 Submit QuestionQuestion 6 21 12 f(x)dx - f(x)dx = f(x) dx 3 3 where a = and b Submit QuestionEstimate the area under the graph of f[:1:} = over the intewal [2,4] using five approximating :1: + 1 rectangles and right endpoints. R. = ::i Repeat the approximation using left endpoints. Ln = I: il Report answers accurate to 4 places. Remember not to round too early in your calculations. Submit Question ' Question 5 v C ) Evaluate the integral by interpreting it in terms of areas. In other words, draw a picture of the region the integral represents, and find the area using geometry. 9 f has 5|d2: I] Evaluate by interpreting in terms of areas: 5+ v4-x2) do = 2 You may enter your answer using exact mathematical notation (e.g., ve + 13*
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