b.
Find
c. Since the function s(t) represents the height of the paper clip, what does the first derivative represent?
d. Find the paper clip’s velocity at t = 5.
e. At what time is the paper clip at its maximum height?
f. What is the maximum height that the paper clip travels?
g. After the paper clip is shot up, in how many seconds does the paper clip hit the ground?
2
21
()
3
x
sx
x
+
=
-
7
1
7
yxx
p
=++
()3tan()
sxx
p
=
2
()csc(51)
fxx
=+
3
2
1
-1
-2
-3
-11
3
2
1
-1
-2
-3
-11
()
yfx
=
'()
fx
dy
dx
sin()
yx
=
23
1
xxyy
+-=
2
()642
sttt
=-
ds
dt
2
2
ds
dt
2
()3
fxx
=-+
2
(23)(57)
yxxx
=+-
sin()
yxx
=