A student stands at the edge of a cliff and throws a stone horizontally over the edge with a speed of vi=18m/s. The cliff is h=50m above a body of water as shown in Figure P3.19. g.)How long after being released does the stone strike the water below the cliff?.
A student stands at the edge of a cliff and throws a stone horizontally over the edge with a speed of vi=18m/s. The cliff is h=50m above a body of water as shown in Figure P3.19. g.)How long after being released does the stone strike the water below the cliff?.
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A student stands at the edge of a cliff and throws a stone horizontally over the edge with a speed of vi=18m/s. The cliff is h=50m above a body of water as shown in Figure P3.19.
g.)How long after being released does the stone strike the water below the cliff?.

Transcribed Image Text:b
Figure P3.18
at the edge of
one horizon-
th a speed of
fis h= 50.0 m
ter as shown
What are the
itial position
What are the
initial veloc-
What is the
model for
h
18
900
asoh
slin
a, David Liam
b. B.G. Smith/
7₁
dall
1
I
10 11
aft sine II
02
H
of the stone?
appropriate
he horizontal
e? (e) Write
for the x and
0.01
1
e velocity of the stone as a function
ymbolic equations for the position of
ow long after being
160
I
0.09
Figure P3.19
X
12
directi
metal
smalle
ment
Section
Circular
23. The
alon
of th
max

Transcribed Image Text:b
Figure P3.18
19. GP A student stands at the edge of
a cliff and throws a stone horizon-
tally over the edge with a speed of
v=18.0 m/s. The cliffis h= 50.0 m
above a body of water as shown
in Figure P3.19. (a) What are the
coordinates of the initial position
of the stone? (b) What are the
components of the initial veloc-
ity of the stone? (c) What is the o
appropriate analysis model for
the vertical motion of the stone?
(d) What is the appropriate
analysis model for the horizontal
motion of the stone? (e) Write
symbolic equations for the x and
N
a
y
h
a, David Liam Kyle/NB
b.B.G. Smith/Shutter
di
I
Is
V
Figure P3.19
y components of the velocity of the stone as a function
of time. (f) Write symbolic equations for the position of
the stone as a function of time. (g) How long after being
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