If an athlete throws a shot-put at an angle of 45° to the horizontal with an initial speed of 43 ft/s . The shot-put leaves his hand 7 feet above the ground. Write parametric equations for the trajectory of the shot-put:use g = 32 ft/s² . y(t)=(initial height)+v, sin(a)t–? 2 x(t)=v, cos(a)t and Answer the following and please provide decimal approximations rounded to the nearest tenth ...

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d) What is the impact velocity of the shot-put?

Answer the following and please provide decimal approximations rounded to the
nearest tenth ...
a)
Where is the shot-put when t=2?
b)
What is the maximum height of the shot-put's trajectory and at what
time does it get there?
c)
Where and when does the shot-put land?
d)
What is the impact velocity of the shot-put?
e) Sketch a graph of the parametric curve and label the points found
in parts a-d ...
Transcribed Image Text:Answer the following and please provide decimal approximations rounded to the nearest tenth ... a) Where is the shot-put when t=2? b) What is the maximum height of the shot-put's trajectory and at what time does it get there? c) Where and when does the shot-put land? d) What is the impact velocity of the shot-put? e) Sketch a graph of the parametric curve and label the points found in parts a-d ...
If an athlete throws a shot-put at an angle of 45°
initial speed of 43 ft/s. The shot-put leaves his hand 7 feet above the
to the horizontal with an
ground.
Write parametric equations for the trajectory of the shot-put:use g =
2 32 ft/s² .
x(t)=v, cos(a)t
y(t)=(initial height)+v, sin(æ)t-t²
12
and
Answer the following and please provide decimal approximations rounded to the
nearest tenth
Transcribed Image Text:If an athlete throws a shot-put at an angle of 45° initial speed of 43 ft/s. The shot-put leaves his hand 7 feet above the to the horizontal with an ground. Write parametric equations for the trajectory of the shot-put:use g = 2 32 ft/s² . x(t)=v, cos(a)t y(t)=(initial height)+v, sin(æ)t-t² 12 and Answer the following and please provide decimal approximations rounded to the nearest tenth
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