Question 6 Use the plots to approximate g(t)dt with LEFT(2) and RIGHT(2). Illustrate the rule and compute the approximation to verify the correct answer. O T9(1) g(t) 11 10 9 8 7 6 9(1) dt ~MID(O) = Tos 3 2 1 0 -2 -1 0 1 g(t)dt 9 g(t)dt MID(O) = 36 901 g(t)dt MID(0) = 8 and 32 g(t)dt MID(O) = 20 g(t)dt MID(0)=30 LIT 2 t and and and and arwus 1 3 4 5 6 [9(1) g(t)dt ≈ TRAP(O) = 12 6. g(t)dt TRAP(O) = 28 g(t)dt = TRAP(0) = 34. [20 g(t)dt TRAP(O) = 20 g(t)dt ≈ TRAP(O) = 30 arra TRAP(O) = 26.
Question 6 Use the plots to approximate g(t)dt with LEFT(2) and RIGHT(2). Illustrate the rule and compute the approximation to verify the correct answer. O T9(1) g(t) 11 10 9 8 7 6 9(1) dt ~MID(O) = Tos 3 2 1 0 -2 -1 0 1 g(t)dt 9 g(t)dt MID(O) = 36 901 g(t)dt MID(0) = 8 and 32 g(t)dt MID(O) = 20 g(t)dt MID(0)=30 LIT 2 t and and and and arwus 1 3 4 5 6 [9(1) g(t)dt ≈ TRAP(O) = 12 6. g(t)dt TRAP(O) = 28 g(t)dt = TRAP(0) = 34. [20 g(t)dt TRAP(O) = 20 g(t)dt ≈ TRAP(O) = 30 arra TRAP(O) = 26.
Chapter5: Exponential And Logarithmic Functions
Section: Chapter Questions
Problem 39CT: The population P (in millions) of Texas from 2001 through 2014 can be approximated by the model...
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