The velocity, f(t) in ft /sec, of an object at time t seconds is given in the table below. t 1 2 3 4 5 6 f (t) 2 5 6 8 12 15 a. Use the right hand Riemann sum to estimate the distance the object...


The velocity, f(t) in ft /sec, of an object at time t seconds is given in the table below.<br>t<br>1<br>2<br>3<br>4<br>5<br>6<br>f (t)<br>2<br>5<br>6<br>8<br>12<br>15<br>a. Use the right hand Riemann sum to estimate the distance the object traveled from<br>time t =0 to t=6, use At = 2.<br>b. Use the left hand Riemann sum to estimate the distance the object traveled from<br>time t =0 to t = 6, use At = 2.<br>c. Assume the velocity of the object was strictly increasing, give an estimate of how<br>far do you think the object actually traveled over this six second interval of time?<br>Give a specific number for your answer; do not give an interval answer.<br>Give a clear reason for your answer.<br>

Extracted text: The velocity, f(t) in ft /sec, of an object at time t seconds is given in the table below. t 1 2 3 4 5 6 f (t) 2 5 6 8 12 15 a. Use the right hand Riemann sum to estimate the distance the object traveled from time t =0 to t=6, use At = 2. b. Use the left hand Riemann sum to estimate the distance the object traveled from time t =0 to t = 6, use At = 2. c. Assume the velocity of the object was strictly increasing, give an estimate of how far do you think the object actually traveled over this six second interval of time? Give a specific number for your answer; do not give an interval answer. Give a clear reason for your answer.

Jun 03, 2022
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