Free-Falling Object In Exercises 37 and 38. use the position function s ( t ) = − 4.9 t 2 + 250 which gives the height (in meters) of an object that has fallen for t seconds from a height of 250 meters. The velocity at time t = a seconds is given by lim t → a s ( a ) − s ( t ) a − t Find the velocity of the object when t = 4 .
Free-Falling Object In Exercises 37 and 38. use the position function s ( t ) = − 4.9 t 2 + 250 which gives the height (in meters) of an object that has fallen for t seconds from a height of 250 meters. The velocity at time t = a seconds is given by lim t → a s ( a ) − s ( t ) a − t Find the velocity of the object when t = 4 .
Free-Falling Object In Exercises 37 and 38. use the position function
s
(
t
)
=
−
4.9
t
2
+
250
which gives the height (in meters) of an object that has fallen for t seconds from a height of 250 meters. The velocity at time
t
=
a
seconds is given by
Which of the functions shown below is differentiable at = 0?
Select the correct answer below:
-7-6-5-4-
-6-5-4-3-21,
-7-6-5-4-3-2
-7-6-5-4-3-2-1
2
4
5
6
-1
correct answer is Acould you please show me how to compute using the residue theorem
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